2024

 

180

Femtosecond-Pulse Controlled Plasmon Decay in Ag-GrapheneSystem
Sichen Huang, Yuhui Song, Kaichao Li, Ruilin Ma, Tingting Wang, Huan Chen, Jinping Li, Zhengkun Fu, Lei Yan*, Zhenglong Zhang*
The Journal of Physical Chemistry C , 2024, 128, 17689-17595.

 

179

Photon avalanche effect and spectral control of single LiYF4:Yb3+/Pr3+microparticle
Yujun Wang, Wenxuan Han, Zeyu Sun, Wenzhen Diao, Xin Xie, Guoqiao Li, Zhenglong Zhang, Zhengkun Fu, Hairong Zheng
Journal of Luminescence , 2025, 277, 120893.

 

178

Quasi-bound states in the continuum enhanced tunable second-harmonic generation of dimer dielectric metasurfaces
Yankun Du, Bowen Kang, Yuhua Shi, Yue Dou, Huan Chen, Zhengkun Fu, and Hairong Zheng
Optics Continuum , 2024, 3(9), 1644-1651.

 

177

Tip-Enhanced Upconversion Luminescence of Single Sub-10 nm Rare-Earth Ion-Doped Nanoparticle
Chengxiang Gou, Bowen Kang, Yue Dou, Jinyu Li, Sihan Wang, Huan Chen, Zhengkun Fu, Zhenglong Zhang*, Hairong Zheng*
Journal of Physical Chemistry C , 2024, 128, 13190-13198.

 

176

Tip-enhanced Raman scattering
Christiane Höppener, Javier Aizpurua, Huan Chen, Stefanie Gräfe, Ado Jorio, Stephan Kupfer, Zhenglong Zhang, Volker Deckert*
Nature Reviews Methods Primers , 2024, 4, 47.

 

175

Thermal-effect dominated plasmonic catalysis on silver nanoislands
Ting Kong, Bowen Kang, Wei Wang, Tanja Deckert-Gaudig, Zhenglong Zhang*, Volker Deckert*
Nanoscale , 2024, 16, 10745-10750.

 

174

Plasmon-assisted mode selection lasing in a lanthanide-based microcavity
Lei Guo, Min Ji, Bowen Kang, Min Zhang, Xin Xie, Zihao Wu, Huan Chen,* Volker Deckert, Zhenglong Zhang,*
Advanced Photonics , 2024, 6, 3, 035001.

 

173

Interfacial second-harmonic generation via superposition of symmetries in a double-resonance-enhanced plasmonic nanocavity
Huan Chen, Zihe Jiang, Bowen Kang, Lei Guo, Lei Yan, Zhengkun Fu, and Zhenglong Zhang,*
Journal of Physical Chemistry Letters , 2024,15, 5008-5015.

 

172

Polarization-directed nanophotonic routers based on two-dimensional inorganic molecular crystals
Jiacheng Yao, Xin Feng, Tingting Zhang, Fangqi Chen, Zhenglong Zhang, Hairong Zheng, Tianyou Zhai, Tao Ding,*
InfoMat , 2024,e12548.

 

171

Silver ions induced growth of plasmonic Au hexagonal star plates
Lingbo Tong, Xinlei Zhang, Huan Chen,* Xiaohu Mi,* Jinping Li, Zhenglong Zhang,
Journal of Materials Chemistry C , 2024, 12, 6443.

 

 

170

Plasmon-induced nonlinear response on gold nanoclusters
Yuhui Song, Yifei Cao, Sichen Huang, Kaichao Li, Ruhai Du, Lei Yan,* Zhengkun Fu, Zhenglong Zhang,*
Chinese Physics B , 2024, 33, 044204.

 

169

Microscopic mechanism of plasmon-mediated photocatalytic H2 splitting on Ag-Au alloy chain
Yuhui Song, Yirui Lu, Axin Guo, Yifei Cao, Jinping Li, Zhengkun Fu, Lei Yan,* Zhenglong Zhang,*
Chinese Physics B , 2024, 33, 033101.

 

168

Thermo-plasmonic assisted structural optimization of micro/nanocrystals based on single-particle spectroscopy
Chengyun Zhang, Xilin Zhou, Ting Kong, Lei Xi, Ruobin Zhang, Baobao Zhang, Huan Chen, Zhengkun Fu, Zhenglong Zhang,*
Journal of Materials Chemistry C , 2024, 12, 2849-2858.

 

2023

 

167

中国光学十大进展:亚50ns超快稀土掺杂上转换发光
康博雯, 陈环*,张正龙,郑海荣
激光与光电子学进展 , 2023, 60, 2300002.

 

166

Determining the internal temperature of an optically levitated nanoparticle in vacuum by doped-Er3+-ion luminescence
Baobao Zhang, Xiaojun Guo, Xudong Yu, Yanzhen Xiao, Zhengkun Fu*, Zhenglong Zhang*, Hairong Zheng
Physical Review A , 2023, 108, 033503.

 

165

Size-tunable energy gaps of hydrogen-terminated biphenylene segments
Yirui Lu, Lei Yan*, Huixia Fu, Yuhui Song, Yifei Cao, Sen Li, Ruhai Du, Jinping Li, Zhengkun Fu, Zhenglong Zhang*,
Physical Chemistry Chemical Physics , 2023, 25, 23879.

 

164

Localized vibrational characteristics of biphenylene strips resulting in length-dependent Raman spectra
Yirui Lu, Lei Yan*, Sichen Huang, Xilin Zhou, Min Zhang, Ruhai Du, Zhenglong Zhang*
Physical Chemistry Chemical Physics , 2023, 25, 22505.

 

163

Surface plasmon assisted preparation of X1-type Y2SiO5:Eu3+-Au luminescent crystals
Lei Xi, Chengyun Zhang, Hairegu Tuxun, Baobao Zhang, Min Ji, Xilin Zhou, Wanqiu Liang, Jinyu Li, Huan Chen, Jinping Li*, Zhengkun Fu*, Zhenglong Zhang, Hairong Zheng
Nanoscale , 2023, 15, 12333.

 

162

Plasmon-Mediated Hydrogen Dissociation with Symmetry Tunability
X Axin Guo, Yirui Lu, Yuhui Song, Yifei Cao, Ruhai Du, Jinping Li, Zhengkun Fu, Lei Yan*, Zhenglong Zhang*
Journal of Physical Chemistry Letters , 2023, 14, 5748-5753.

 

161

Engineering the inter-island plasmonic coupling in homometallic Au-Aun core–satellite structures
Xiaoying Wu, Xiaoli Tian, Zihe Jiang, Yun Wang, Tingting Jiang, Yuhua Feng*, Zhenglong Zhang*, Hongyu Chen*
Nano Research,2023.

 

160

Editorial for Special Issue “Plasmon Assisted Near-Field Manipulation and Photocatalysis”
Zhenglong Zhang
Nanomaterials, 2023,13(8):1427.

 

159

Plasmon-enhanced upconversion luminescence on horizontally aligned gold nanorod arrays with self-contained spacer
Chengyun Zhang, Yuyang Wang, Xiaohu Mi, Dazhong Wang, Huan Chen, Jinping Li*, Zhengkun Fu*, Zhenglong Zhang
Journal of Alloys and Compounds,2023,948:169537.

 

158

Plasmon Driven Nanocrystal Transformation by Aluminum Nano-Islands with an Alumina Layer
Xilin Zhou, Huan Chen, Baobao Zhang, Chengyun Zhang*, Min Zhang, Lei Xi, Jinyu Li, Zhengkun Fu* and Hairong Zheng
Nanomaterials,2023,13(5):07.

 

157

Surface-Ligand-Modified CdSe/CdS Nanorods for High-Performance Light-Emitting Diodes
Hui Zhang, Xiaohu Mi, Bowen Kang, Yunkai Wu, Tingting Zhang, Pai Liu*, Xiao WeiSun, Zhenglong Zhang*,Ning Liu*,Hongxing Xu*
ACS Omega,2023, 8(4):3762–3767.

 

156

Plasmon-Assisted Self-Encrypted All-Optical Memory
Chengyun Zhang, Min Ji, Xilin Zhou, Xiaohu Mi, Huan Chen, Baobao Zhang, Zhengkun Fu, Zhenglong Zhang*, Hairong Zheng*
Advanced Functional Materials,2022,33(2):2208561.

 

2022

 

155

Selective Raman Enhancement with Electronic Sensitivity in TipEnhanced Raman Spectroscopy
Yirui Lu, Lei Yan, Xiangtai Xi, Wenli Fan, Ruhai Du, Jinping Li, Zhengkun Fu, and Zhenglong Zhang*
The Journal of Physical Chemistry A,2022,126:9147−9153.

 

154

Plasmon driven nanocrystal transformation in low temperature environments
Baobao Zhang, Ting Kong, Chengyun Zhang, Xiaohu Mi, Huan Chen, Xiaojun Guo, Xilin Zhou, Min Ji, Zhengkun Fu, Zhenglong Zhang* and Hairong Zheng*
Nanoscale,2022,14(43):16314-16320.

 

153.Xiaohua Wang, Chengyun Zhang, Xilin Zhou, Zhengkun Fu, Lei Yan, Jinping Li, Zhenglong Zhang, and Hairong Zheng.Plasmonic Effect of Ag/Au Composite Structures on the Material Transition ,Nanomaterials,2022,12(17):2927.

152.Shali Lin, Xiaohu Mi, Lei Xi, Jinping Li, Lei Yan, Zhengkun Fu, and Hairong Zheng.Efficient Reduction Photocatalyst of 4-Nitrophenol Based on Ag-Nanoparticles-Doped Porous ZnO Heterostructure ,Nanomaterials,2022,12(16):2863.

151.Huan Chen, Zihe Jiang, Huatian Hu, Bowen Kang, Baobao Zhang, Xiaohu Mi, Lei Guo, Chengyun Zhang, Jinping Li, Jiangbo Lu, Lei Yan, Zhengkun Fu, Zhenglong Zhang, Hairong Zheng, and Hongxing Xu.Sub-50-ns ultrafast upconversion luminescence of a rare-earth-doped nanoparticle ,Nature Photonics,2022,16(9):651–657.

150.Baobao Zhang, Xiaojun Guo, Zhenglong Zhang, Zhengkun Fu, and Hairong Zheng. Luminescence thermometry with rare earth doped nanoparticles: Status and challenges ,Journal of Luminescence,2022,250:119110.

149.Xiaohu Mi, Xin Zhao, Min Ji, Zihe Jiang, Baobao Zhang, Huan Chen, Zeyu Sun, Jinping Li*, Zhenglong Zhang*, Hairong Zheng*, Twinned-Au-Tip-Induced Growth of Plasmonic Au–Cu Janus Nanojellyfish and Application in Upconversion Luminescence Enhancement ,Journal of Colloid and Interface Science,2022, 624:196–203.

148.Sun, Meijuan, Huan Chen, Lei Guo, Baobao Zhang, Xiaohu Mi, Bowen Kang, Zihe Jiang, Xudong Yu, Zhengkun Fu, Zhenglong Zhang*, and Hairong Zheng**, Manipulating the Upconversion Luminescence of Yb3+/Er3+ Doped Nanoparticles by the Sheet-Shaped Nanocavity ,Journal of Luminescence,2022,248:118944.

147.樊佳伟,李金萍,付正坤*,郑海荣,稀土掺杂微纳光波导的发光特性综述,《陕西师范大学学报(自然科学版)》,2022,50(1):75–85.

146.芦一瑞,严蕾*,张成云,孔婷,张正龙,局域表面等离激元诱导的光催化机制,《陕西师范大学学报(自然科学版)》,2022,50(1):32–42.

145.郭晓君,陈环,郭蕾,张正龙*,郑海荣,等离激元纳米光腔增强光与物质的相互作用,《陕西师范大学学报(自然科学版)》,2022,50(1):21–31.

144.Zhiguang Sun, Huan Chen, Zhenglong Zhang, Lujun Pan, Yiming Yang, Bin Dong*, Yurui Fang*, 2D Wavelength-Polarization Dispersive Microspectroscope Based on a Hybrid Plasmonic Helical Nanostructure,Advanced Materials Technologies,2022,7(9):2101552.

143.Hui Zhang, Huan Chen, Tingting Zhang, Xiaohu Mi, Zihe Jiang, Ziming Zhou, Lei Guo, Min Zhang, Zhenglong Zhang,* Ning Liu,* Hongxing Xu*, Plasmon enhanced light–matter interaction of rice-like nanorods by a cube-plate nanocavity,Nanoscale Advances,2022,4(4):1145–1150.

142.Yirui Lu, Lei Yan*, Shafqat Hussain, Mengtao Sun, Zhenglong Zhang*, Hairong Zheng, Interlayer Coulomb interaction in twisted bilayer graphene nanofragments characterized by the vibrational mode of Gr+ band, Applied Physics Letters,2022,120(8):083103.

141.Bowen Kang, Tingting Zhang, Lei Yan*, Chengxiang Gou, Zihe Jiang, Min Ji, Li Chen*, Zhenglong Zhang*, Hairong Zheng and Hongxing Xu, Local controllability of hot electron and thermal effects enabled by chiral plasmonic nanostructures,Nanophotonics,2022,11(6):1195–1202.

140.Hairegu Tuxun, Zefeng Cai, Min Ji, Baobao Zhang, Chengyun Zhang, Jinping Li, Xudong Yu, Zhengkun Fu*, Zhenglong Zhang and Hairong Zheng*, Controlling and probing heat generation in an optical heater system, Nanophotonics,2022,11(5):979–986.

2021

 

139.Zhou, R.; Chen, L.; Kong, T.; Chen, H.; Zhang, Z.; Shen, H.; Zheng, H., The vector beam assisted “hot-spot” optimization in tip-enhanced Raman spectroscopy. J. Raman Spectrosc. 2021, 52 (10), 1698-1704.

138.Xiaohu Mi†,Tingting Zhang†, Baobao Zhang, Min Ji, Bowen Kang, Chao Kang, Zhengkun Fu*,Zhenglong Zhang* and Hairong Zheng, Binary Surfactant–Mediated Tunable Nanotip Growth on Gold Nanoparticles and Applications in Photothermal Catalysis, Frontiers in Chemistry,2021,7,9,2296-2646.

137.Jingang Li, Zhihan Chen, Yaoran Liu, Pavana Kollipara, Yichao Feng, Zhenglong Zhang, Yuebing Zheng*, Opto-refrigerative tweezers, Science Advances,2021,7,eabh1101.

136.Xi Wang, Changxu Liu, Congcong Gao, Kaili Yao, Seyed Masouleh, Rodrigo Berté, Haoran Ren, Leonardo Menezes, Emiliano Cortés, Isobel Bicket, Haiyu Wang, Ning Li, Zhenglong Zhang, Ming Li, Wei Xie, Yifu Yu, Yurui Fang, Shunping Zhang, Hongxing Xu, Alberto Vomiero, Yongchang Liu, Gianluigi A. Botton,Stefan A. Maier, Hongyan Liang, Self-Constructed Multiple Plasmonic Hotspots on an Individual Fractal to Amplify Broadband Hot Electron Generation, ACS Nano,2021,15,6,10553-10564.

135.Huan Chen, Meijuan Sun, Jie Ma, Baobao Zhang, Chi Wang, Lei Guo, Tao Ding, Zhenglong Zhang,*Hairong Zheng,* and Hongxing Xu*,Multiplasmons-Pumped Excited-State Absorption and Energy Transfer Upconversion of Rare-Earth-Doped Luminescence beyond the Diffraction Limit,ACS Photonics,2021,8,5,1335−1343.

134.Liang Dong,Chengyun Zhang,Lei Yan,* Baobao Zhang,Huan Chen,Xiaohu Mi,Zhengkun Fu,Zhenglong Zhang,* Hairong Zheng, Quantifying plasmon resonance and interband transition contributions in photocatalysis of gold nanoparticle, Chinese Physics B,2021,30,7,077301.

133.Ting Kong,Chengyun Zhang,Jiangbo Lu,Bowen Kang,Zhengkun Fu,Jinping Li,Lei Yan,Zhenglong Zhang,* Hairong Zheng* and Hongxing Xu,An enhanced plasmonic photothermal effect for crystal transformation by a heat-trapping structure, Nanoscale,2021,13,4585-4591.

2020

132.Xiaohu Mi , Tingting Zhang , Chengyun Zhang , Yuyang Wang , Huan Chen , Jinping Li ,Zhengkun Fu , Zhenglong Zhang *, Hairong Zheng **,Plasmonic sensing of Cu²⁺ via shell-etching of Au@Ag nanorods,Materials Chemistry and Physics,2021,259,124036.

131.Changjian Zhang, Chengyun Zhang, Zhenglong Zhang*, Tao He, Xiaohu Mi, Ting Kong, Zhengkun Fu, Hairong Zheng*, Hongxing Xu*,Self-suspended rare-earth doped up-conversion luminescent waveguide: propa-gating and directional radiation, Opto-Electron Advances,2020,3,190045.

130.Ting Kong, Chengyun Zhang, Xuetao Gan, Fajun Xiao, Jinping Li, Zhengkun Fu, Zhenglong Zhang*, Hairong Zheng*, Fast transformation of Rare-earth doped luminescent sub-microcrystal via plasmonic nanoislands, J.Mater.Chem.C,2020,8,4338-4342.

129.Chengyun Zhang, Ting Kong, Zhengkun Fu, Zhenglong Zhang*, Hairong Zheng,* Hot electron and thermal effects in plasmonic catalysis of nanocrystal transformation, Nanoscale,2020,12,8768-8774.

128.Xuwei Li, Tingting Zhang, Zhengkun Fu*, Bowen Kang, Xiaohu Mi, Meijuan Sun, Chengyun Zhang, Zhenglong Zhang*, Hairong Zheng*, Plasmonic Nanocavity Enhanced Vibration of Graphene by Radially Polarized Optical Field, Nanophotonics,2020,9,7,2017–2023.

127.Yuyang Wang, Tingting Zhang, Jinping Li*, Chi Wang, Xuwei Li, Meijuan Sun, Zhengkun Fu, Zhenglong Zhang*, Hairong Zheng*, Multi-plasmon Resonances Enhanced Two-photon Coherent Anti-Stokes Raman Scattering by nanorods, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy,2020,231,118117.

126.Pushkar Singh, Tanja Deckert-Gaudig, Zhenglong Zhang, Volker Deckert*, Plasmon induced deprotonation of 2-mercaptopyridine, Analyst,2020,145,2106-2110.

125.Shafqat Hussain, Huan Chen, Zhenglong Zhang*, Hairong Zheng*, Vibrational spectra and chemical imaging of cyclo[18]carbon by tip enhanced Raman spectroscopy, Chem. Comm., 2020, 56, 2336-2339.

2019

124. Nana Jin, Chengyun Zhang, Zhengkun Fu*, Zhenglong Zhang, Hairong Zheng*, Au nanoparticle controlled luminescence emission of single NaYF4:Eu3+ particle, Proc.SPIE,2019,11194,1119409.

123. Bowen Ma, Jinping Li*, Chengyun Zhang, Zhenglong Zhang, Zhengkun Fu, Hairong Zheng*, Synthesis and luminescence properties of rare-earth doped NaLaF4 nanoparticles, Proc.SPIE,2019,11194,111940J.

122. Zhenglong Zhang, R Meyer, Volker Deckert, Reactivity and bio samples probed by tip-enhanced Raman spectroscopy, Plasmonics in Chemistry and Biology. 2019. (Chapter)

121.Shaozuo Huang, Huan Chen, Tao He, Changjian Zhang, Chengyun Zhang, Zhengkun Fu, Zhenglong Zhang*, Hairong Zheng*, High-performance upconversion luminescent waveguide using a rare-earth doped microtube with beveled ends, J.Mater.Chem.C, 2019,7,12704-12708

120.Chengyun Zhang, Tingting Zhang, Zhenglong Zhang*, Hairong Zheng*, Plasmon Enhanced Fluorescence and Raman Scattering by [Au-Ag Alloy NP Cluster]@SiO2 Core-Shell Nanostructure, Front.Chem, 2019, 7, 647

119.Tingting Zhang, Chi Wang, Huan Chen, Chengyun Zhang, Zhenglong Zhang*, Yurui Fang*, Hairong Zheng*, Controlled Multichannel Surface Plasmon Polaritons Transmission on Atomic Smooth Silver Triangular Waveguide, Adv. Opt. Mater,2019,7,1900930

118.Zhenglong Zhang, Chengyun Zhang, Hairong Zheng, Hongxing Xu*, Plasmon-Driven Catalysis on Molecules and Nanomaterials, Acc. Chem. Res,2019,52,2506-25015. [Cover]

117.Chengyun Zhang, Jiangbo Lu, Nana Jin, Liang Dong, Zhengkun Fu, Zhenglong Zhang*, Hairong Zheng*, Plasmon-Driven Rapid In Situ Formation of Luminescence Single Crystal Nanoparticle, Small,2019,1901286.

116.Chi Wang, Tingting Zhang, Zhenglong Zhang*, Hairong Zheng*, Investigation on Fano resonance and energy transfer of Hyper Ring–Loop nanostructure, Opt.Comm,2018,452,434-439

115.Xiaohu Mi, Yuyang Wang, Rui Li, Mengtao Sun, Zhenglong Zhang*, Hairong Zheng*, Multiple surface plasmon resonances enhanced nonlinear optical microscopy, Nanophotonics,2019,8,3,487–493

114.张宝宝,张成云,张正龙*,郑海荣*,表面等离激元调控化学反应,物理学报,2019, 68(14):147102.

113.Jiajia Meng, Zhenglong Zhang,* Baobao Zhang, Ye Gao, Guian Li, Zhengkun Fu, Hairong Zheng*, Preparation and spectroscopic study of a water-soluble NaYF4:Yb3+/Er3+@NaGdF4 crystal particle and its application in bioimaging, New J. Chem., 2019, 43, 1770-1774

112.Xiangyu Zhang, Zhenglong Zhang, Zhihui Liu, Chengyun Zhang, Baobao Zhang, Xiaohu Mi, Hairong Zheng, Engineering the color output in a single upconversion microtube via intervention of the electronic population, Journal of Luminescence, 2019, 205, 374-379

2016

 

102. "Tuning Upconversion Emission of Beta-Nagdf4:Yb3+/Ho3+ Nanorods through Yb3+.";Gao, F. Q., W. Gao, R. B. Wang, L. X. Yan, J. P. Li and Hairong Zheng*. Journal of Nanoscience and Nanotechnology 16, no. 4 (2016): 3754-3758.

101. "Ag-Au Alloy Nanoparticles: Synthesis and in Situ Monitoring Sers of Plasmonic Catalysis."Han, Q. Y., C. Y. Zhang, W. Gao, Z. H. Han, T. Z. Liu, C. X. Li, Z. J. Wang, E. J. He and Hairong Zheng*. Sensors and Actuators B-Chemical 231, (2016): 609-614.

100. "Ag@Sio2/Laf3:Eu3+ Composite Nanostructure and Its Surface Enhanced Luminescence Effect."Han, Q. Y., Y. Q. Zhang, Z. B. Ren, Z. J. Wang, W. Gao, E. J. He and Hairong Zheng*. Journal of Nanoscience and Nanotechnology 16, no. 4 (2016): 3759-3762.

99. "Investigation on Optical Properties of Ag–Au Alloy Nanoparticles." Li, Caixia, Chi Wang, Qingyan Han, Yanni Wu and Hairong Zheng*. Plasmonics, (2016).

98. "Investigations of High Order Plasmonic Resonance Features of the Nano Hyper Ring."Wang, C., C. X. Li, Y. N. Wu, Z. J. Wang, Q. Y. Han, Hairong Zheng* and J. Dong. Journal of Physics-Condensed Matter 28, no. 35 (2016).

97. "Influence of Sio2 Layer on the Plasmon Quenched Upconversion Luminescence Emission of Core-Shell Nayf4:Yb,Er@Sio2@Ag Nanocomposites."Wang, Z. J., W. Gao, R. B. Wang, J. Shao, Q. Y. Han, C. Wang, J. Zhang, T. T. Zhang, J. Dong and Hairong Zheng*. Materials Research Bulletin 83, (2016): 515-521.

96. "Metal-Enhanced Fluorescence of Single Shell-Isolated Alloy Metal Nanoparticle."Zhang, C. Y., Q. Y. Han, C. X. Li, M. D. Zhang, L. X. Yan and Hairong Zheng*. Applied Optics 55, no. 32 (2016): 9131-9136.

95. "Tunable Ultrahigh Order Surface Plasmonic Resonance in Multi-Ring Plasmonic Nanocavities."Zhang, Mingdi, Caixia Li, Chi Wang, Tiankun Wang, Tingting Zhang and Hairong Zheng*. Plasmonics, (2016).

94. "Investigation on the Enhanced Fluorescence Emission from Self-Assembled Au Nanorod Film."Zhang, Mingdi, Zebin Ren, Jun Dong, Zhaojin Wang, Qinyan Han, Chenyun Zhang and Hairong Zheng*. Plasmonics, (2016).

2015

 

93. "Investigation on YF 3: Eu3+ architectures and their luminescence properties[J]."Longxiang Yan, Wei Gao, Qinyan Han, Xiaoyi Li, Ruibo Wang, Chengyun Zhang, Mingdi Zhang, Linxiao Wang, Hairong Zheng*. CrystEngComm, 2015, 17(43): 8242-8247.

92. Solution-based metal enhanced fluorescence with gold and gold/silver core–shell nanorods[J].Zebin Ren, Xiaoyi Li, Jingxia Guo, Ruibo Wang, Yanni Wu, Mingdi Zhang, Caixia Li, Qingyan Han, Jun Dong, Hairong Zheng*. Optics Communications, 2015, 357: 156-160.

91. "Generation of High-Order Resonance Modes in Visible and Near-Infrared Range from Square Ring-Disk System[J]."Chi Wan, Yanni Wu, Hairong Zheng*, Caixia Li, Junna Li, Jun Dong. Plasmonics, 2015, 10(6): 1915-1920.

90. "Generation and manipulation of ultrahigh order plasmon resonances in visible and near-infrared region[J]." Yanni Wu, Hairong Zheng*, Junna Li, Chi Wang, Caixia Li and Jun Dong.Optics express, 2015, 23(8): 10836-10846.

89. "Tuning Red Upconversion Emission in Single LiYF4: Yb3+/Ho3+ Microparticle[J]." Wei Gao, Ruibo Wang, Qingyan Han, Jun Dong, Longxiang Yan, Hairong Zheng*. The Journal of Physical Chemistry C, 2015, 119(5): 2349-2355.

88. "Tuning upconversion emission of β-NaGdf4: Yb3+/ Ho3+ nanorods through Yb3+."Fangqi Gao, Wei Gao, Ruibo Wang, Longxiang Yan, Jinping Li, Hairong Zheng?. J. Nanosci. Nanotechnol, Vol. 15, 1–5, 2015.

87. "Ag@SiO2/LaF3:Eu3+ Composite Nanostructure and Its Surface Enhanced Luminescence." EQingyan Han, Yaqiong Zhang, Zebin Ren, Zhaojin Wang, Wei Gao, Enjie He, Hairong Zheng?.ffect. J. Nanosci. Nanotechnol, Vol. 15, 1–4, 2015.

2014

 

86. "Enhanced red upconversion luminescence by codoping Ce3+ in β-NaY(Gd0.4)F4:Yb3+/Ho3+."Wei Gao, Hairong Zheng*, Qingyan Han, Enjie He, Fangqi Gao, Ruibo Wang, nanocrystals, Journal of Materials Chemistry C. 2014,2:5327-5334

85. "Unusual upconversion emission from single NaYF4:Yb3+/Ho3+ microrod with NIR excitation."Wei Gao, Hairong Zheng*, Qingyan Han, Enjie He, Ruibo Wang, CrystEngComm. 2014, 16:6697-6706 S

84. "Luminescence investigation of Yb3+/Er3+ codoped single LiYF4 microparticle."Wei Gao, Hairong Zheng*, Enjie He, Ying Lu, Fangqi Gao. Journal of Luminescence. 2014, 152:44-48.

83. "Pr3+/Yb3+ co-doped β-Phase NaYF4 microprisms: controlled synthesis and upconversion luminescence."Wei Gao, Hairong Zheng*, Dangli Gao, Enjie He, Jiao Li, and Yinxun Tu, J. Nanosci. Nanotechnol. 2014,14(6): 4308-4312.

82. "Facile fabrication and upconversion luminescence enhancement of LaF3:Yb3+/Ln3+(Ln= Er, Tm) nanostructures decorated with Ag nanoparticles @SiO2."Enjie He, Hairong Zheng*, Jun Dong, Wei Gao, et.al. Nanotechnology. 2014, 25: 045603

81. "Enhance-ment and regulation of fluorescence emission from NaYF4:Yb3+/Er3+ nanocrystals by codoping Mn2+ ions."Enjie He, Hairong Zheng*, Wei Gao, Yinxun Tu, Ying Lu, Huani Tian, Guian Li, J. Nanosci. Nanotechnol. 2014, 16: 4139-44146.

80. "Higher Order Fano Resonances and Electric Field Enhancements in Disk-Ring Plasmonic Nanostructures with Double Symmetry Breaking."Junna Li, Tingzhuo Liu, Hairong Zheng*, Jun Dong, Enjie He, Wei Gao, Qingyan Han, Chi Wang, Yanni Wu, Plasmonics. (2014) 9:1439–1445.

79. "Higher Order Fano Resonances and Electric Field Enhancements in Disk-Ring Plasmonic Nanostructures with Double Symmetry Breaking." Junna Li, Tingzhuo Liu, Hairong Zheng* , Jun Dong, Enjie He, Wei Gao, Qingyan Han, Chi Wang,Yanni Wu. Plasmonics, DOI 10.1007/s11468-014-9761-9

78. "Molecular Resonant Dissociation of Surface-Adsorbed Molecules by Plasmonic Nanoscissors." Zhenglong Zhang, Mengtao Sun, Shaoxiang Sheng, Hairong Zheng, Hongxing Xu, Nanoscale, 6, (9)(2014).

77. "High-Vacuum tip enhanced Raman spectroscopy." Zhenglong Zhang, Li Chen, Shaoxiang Sheng, Mengtao Sun, Hairong Zheng, Keqiu Chen, Hongxing Xu, Front. Phys. 8, 1(17-24) 2014. [Cover]

76. Enhanced red upconversion luminescence by codoping Ce3+ in β-NaY(Gd0.4)F4: Yb3+/Ho3+ nanocrystals, Wei Gao, Hairong Zheng*, Qingyan Han, Enjie He, Fangqi Gao, Ruibo Wang. Journal of Materials Chemistry C, 2(5327-5334) (2014).

75. Unusual Upconversion Emission from Single NaYF4: Yb3+/Ho3+ Microrod with NIR Excitation, Wei Gao, Hairong Zheng*, Qingyan Han, Enjie He, Ruibo Wang, CrystEngComm, 16(6697-6706)( 2014).

74. Facile fabrication and upconversion luminescence enhancement of LaF3:Yb3+/Ln3+(Ln= Er, Tm) nanostructures decorated with Ag nanoparticles @SiO2. Enjie He, Hairong Zheng*, Jun Dong, Wei Gao, Qingyan Han,Junna Li, Le Hui, Ying Lu and Huani Tian. Nanotechnology. 25 (045603)(2014) .

73. Luminescence Investigation of Yb3+/Er3+ Codoped Single LiYF4 Microparticle. Wei Gao, Hairong Zheng*, Enjie He, Ying Lu, Fangqi Gao. Journal Luminescence. 152(44-48) (2014)

72. He.Enjie; Zheng.Hairong*, Gao,Wei, Tu,Yinxun; Lu,Ying; Tian,Huani; Li,Guian,Enhancem-ent and regulation of fluorescence emission from NaYF4:Yb3+, Er3+ nanocrystals by codoping Mn2+ ions. J. Nanosci. Nanotechnol, 16(4139-44146)(2014)

71. Pr3+/Yb3+ Co-Doped β-Phase NaYF4 Microprisms: Controlled Synthesis and Upconversion Luminescence, Wei Gao, Hairong Zheng*, Dangli Gao, Enjie He, Jiao Li, and Yinxun Tu, J. Nanosci. Nanotechnol. 14, 6(4308-4312)(2014).

2012

 

66. In-situ plasmon-driven chemical reactions revealed by high vacuum tip-enhanced Raman spectroscopy, Mengtao Sun, Zhenglong Zhang, Hairong Zheng, and Hongxing Xu, Scientific Report, 2 (647) (2012).

65. Surface enhanced fluorescence by porous alumina with nanohole arrays, Zhang Zhenglong, Zheng Hairong*, Dong Jun, Yan Xiaoqing, Sun Yu and Xu Hongxing, Sci China-Phys Mech. Astron, 55, 5(767-771)(2012).

64. Ficaton of flower-like silver nanostructure on the Al substrate for surface enhanced fluorescence. Jun Dong, Hairong Zheng*, Xiaoqing Yan , Yu Sun, Zhenglong Zhang. Appl. Phys. Lett. 100, 051112(1-3) (2012).

63. 多孔阵列氧化铝薄膜的荧光增强效应,张正龙,郑海荣*,董军,严晓庆,孙瑜,徐红星,中国科学:物理学力学与天文,55,9(5767-771)(2012).

62. 四方相LiY(Yb)F4:Yb3+/Er3+晶体颗粒的合成及上转换荧光光谱. 李娇, 郑海荣*, 高伟, 何恩节, 高当丽, 田宇. 科学通报. 2012, 57( 2).

61. Pr3+/Yb3+共掺氟化物微米晶体的上转换荧光研究. 高伟, 郑海荣*, 李娇, 高当丽, 何恩节, 涂银勋. 中国科学: 物理学 力学 天文学. 2012 42 (10): 1-9

60. 多孔氧化铝膜调制的银纳米颗粒的表面增强荧光效应. 阎晓庆, 孙瑜, 杜亚冰, 董军, 张正龙, 霍义萍, 郑海荣*,中国科学: 物理学 力学 天文学. 2012, 42(9): 907-913

59. Tip-Enha nced Ultrasens itive Stokes and Anti-Stok es Raman: Spectroscopy in High Vacuum. Zheng long Zhang, Xiaorui Tian, Hairong Zheng*, Hongxing Xu, Mengtao Sun. Plasmonics. 2012, DOI: 10.1007/s11468-012-9426-5

58. Fabrication of flower-like silver nanostructure on the Al substrate for surface enhanced fluorescence,Jun Dong,Hairong Zheng*,Xiaoqing Yan,Yu Sun,Zhenglong Zhang,APPLIED PHYSICS LETTERS 100, 051112 (2012)

57. Surface enhanced fluorescence on three dimensional silver nanostructure substrate,Jun Dong,Shixian Qu,Zhenglong Zhang, Meicen Liu,Gaining Liu, Xiaoqing Yan, Hairong Zheng*, JOURNAL OF APPLIED PHYSICS 111, 093101 (2012)

56. 稀土掺杂纳米晶体荧光发射性质的调控(约稿), 郑海荣*,高当丽,高伟,李娇,何恩节,涂银勋, 发光学报, 第33卷 第2期.2012年2月 .

2011

 

55. Surface enhanced fluorescence of physically polished nanostructured metal surface: The effect of the native oxide layer, Jun Dong, Hairong Zheng*, Hongmin Shao, Zhenglong Zhang, Gaining Liu, Shixian Qu, Journal of Nanoscience and Nanotechnology, 11,9626-9630(2011).

54. Surface-enhanced fluorescence from silver fractallike nanostructures decorated with silver nanoparticles, Jun Dong, Hairong Zheng*, Xuqiang Li, Xiaoqing Yan, Yu sun, and Zhenglong Zhang, APPLIED OPTICS / Vol. 50, No. 31 / , 1 November 2011

53. Surface-Enhanced Fluorescence of Rhodamine 6G on the Assembled Silver Nanostructures, Gaining Liu, Hairong Zheng*, Meicen Liu, Zhenglong Zhang, Jun Dong, Xiaoqing Yan, Xuqiang Li, Journal of Nanoscience and Nanotechnology, 11,9523-9527(2011).

52. Fluorescence enhancement of modified silver nanoparticles, Meicen Liu, Zhenglong Zhang, Gaining Liu, Jun Dong, Yu Sun,Hairong Zheng*, Guian Li, Journal of Nanoscience and Nanotechnology, 11,9721-9724(2011).

51. Surface enhanced fluorescence of Rh6G with gold nanohole arrays, Zhenglong Zhang, Hairong Zheng*, Meicen Liu, Han Zhang, Baoyin Yin, Hongjun Zhang, Journal of Nanoscience and Nanotechnology,11,9803-9807( 2011).

50. Spectroscopic study of Eu3+doped LaF3 nanoparticles prepared with different PH values, Yu Tian, Hairong Zheng*, Min Cui, Zhengxing Fu, Dangli Gao, Wei Gao, Journal of Nanoscience and Nanotechnology, 11,9808-9812(2011).

49. The influence of synthesizing processes on the spectroscopic property of tetragonal LaOF :Eu3+ nanoparticles, Min Cui, Hairong Zheng*, Yu Tian, Enjie He, Dangli Gao, Jiao Li, Huiji Yue, Journal of Nanoscience and Nanotechnology,11,9621-9625( 2011).

48. Enhancement of red emission by codopant Ln3+ ions in Eu3+:LaOF nanoparticles, Zhenxing Fu, Hairong Zheng*, Yu Tian, Min Cui , Gaodang Li, Guian Li, Erkang Wang, Journal of Nanoscience and Nanotechnology , 2011.

47. Luminescence enhancement and quenching by codopant ions in lanthanide doped fluoride nanocrystals,Dangli Gao, Hairong Zheng*, Xiangyu Zhang, Wei Gao,Yu Tian, Jiao Li and Min Cui,Nanotechnology 22 (2011) 175702 (5pp).doi:10.1088/09574484/22/17/175702.

46. Fluorescence enhancement of Ln3+ doped nanoparticles,Hairong Zheng*, Dangli Gao, Zhenxing Fu, Erkang Wang, Yu Lei, Yu Tuan, Min Cui,Journal of Luminescence 131 (2011) 423–428.

45. Efficient fluorescence emission and photon conversion of LaOF:Eu3+ nanocrystals,Dangli Gao, Hairong Zheng*, Xiangyu Zhang,2 Zhenxing Fu, Zhenglong Zhang, Yu Tian, and Min Cui, APPLIED PHYSICS LETTERS 98, 011907, 2011.

Past period

 

44. Strong Photoluminescence Through Up and Down Conversion in Tm3+/Ho3+:LaOF Nanoparticles, Dangli Gao, Hairong Zheng*, Yu Tian, Min Cui, Yu Lei, Enjie He, and Xisheng Zhang, Journal of Nanoscience and Nanotechnology, Vol. 10, 7694–7697, 2010, 2010年11月,ISSN 1533-4880

43. Influence of excitation light on the frequency up conversion of trivalent lanthanide ions Zhenxing Fu, Hairong Zheng*, YuTian, Zhenglong Zhang, MinCui,Physica B 405 (2010) 4706–4712, 2010年11月, ISSN 0921-4526

42. Fluorescence enhancement of acridine orange in a water solution by Au nanoparticles,ZHENG HaiRong*, XU LiangMin, ZHANG ZhengLong, DONG Jun, CHEN ShuTang, ZHANG XiaoLing,SCIENCE CHINA Physics, Mechanics & Astronomy, 53(10), 1799-1804(2010). 2010年10月, ISSN1674-7348

41. 夹层构型抛光金属衬底表面的吖啶橙荧光增强效应,张正龙 郑海荣* 徐良敏 刘美岑 刘改宁 屈世显,中国科学 G,40(3), 280-286(2010), 2010年3月, ISSN 1674-7275

40. Tm3+和Ln3+( Ln3+ = Yb3+, Er3+, Pr3+, Ho3+, Eu3+)共掺氟化物纳米晶体的光谱学性质,高当丽,郑海荣*,田宇,雷瑜,崔敏,何恩杰,张喜生,中国科学 G, 40(3), 287-295(2010), 2010年3月,ISSN 1674-7275

39. 四方相LaOF:Eu3+红色纳米荧光粉的水热—烧结法制备及其荧光属性,,何恩节,郑海荣*,高当丽,田宇,雷瑜, 屈世显, 中国科学 G,40(1), 60-68(2010),2010年1月,ISSN 1674-7275

38. “Investigation of radiative and nonradiative relaxation by two-photon resonant excitation in Tm3+ doped LaF3 Particles”,Zhenxing Fu, Hairong Zheng*, Yu Lei, Enjie He, Xisheng Zhang, Zhenglong Zhang, and Liangmin Xu,Journal of Nanoscience and Nanotechnology, Vol. 10,No3, 2238-2242 (2010), 2010年3月, ISSN 1533-4880

37. “Influence of crystal structure on the fluorescence emission of Eu3+:LaOF nanocrystals”,Enjie He, Hairong Zheng*, Zhenglong Zhang, Xisheng Zhang, Liangmin Xu, Zhenxing Fu, and Yu Lei,Journal of Nanoscience and Nanotechnology,Vol. 10, No3,1908-1912 (2010) 2010年3月 ISSN 1533-4880

36. Local-field effect on the fluorescence relaxation of Tm3+:LaF3 nanocrystals immersed in liquid medium, Enjie He, Hairong Zheng*, Xisheng Zhang and Shixian Qu, Luminescence,2010,25:66-70,2010年1月, ISSN1522-7243

35. Tm3+/Yb3+:LaF3 纳米体系中掺杂Yb3+ 离子对Tm3+离子荧光发射的影响, 安莹,姚程,乔晓粉,高当丽,田宇,崔敏,郑海荣*光子学报,Vol.39, No3, 508-512(2010),2010 ,ISSN:1004-4213,CN:61-1235/O4.

34. Pr3+/Tm3+共掺LaOF纳米体系中能量转移的光谱学研究,张喜生,雷瑜,何恩节,朱刚强,伏振兴,郑海荣*,陕西师范大学学报,第 38卷第 3期,24-29,2010 年,ISSN 1672-4291

32. 单掺杂和共掺杂氟化物纳米晶体的发光特性,雷 瑜,田 宇,高当丽,何恩节,张喜生,朱刚强,郑海荣*,发光学报,第31 卷 第 4期549-554,2010-8, ISSN: 1000-7032, 国内刊号CN 22-1116/O4

31. 氟化物纳米晶体中 Tm3+对Eu3+的荧光增强效应,雷瑜, 郑海荣*, 田宇, 崔敏, 高当丽, 何恩节, 张喜生,科学通报,第 55 卷 第11期:978 ~ 983,2010, ISSN0023-074X/CN11-1784/N.

30. 调控声子能量提高Tm3+掺杂体系的频率上转换荧光,高当丽, 张翔宇, 蔡晓燕,张正龙,雷瑜,郑海荣*,物理学报,2009,58(90),6108-6112

29. 局域环境对Tm3+掺杂透明氟氧化物玻璃陶瓷荧光光谱温度特性的影响,科学通报,高当丽, 李贵安, 张翔宇, 郑海荣, 2009, 54(15),2183-2187

28. 玻璃基质和其中的纳米颗粒的相互影响,张翔宇, 李林, 高当丽, 郑海荣*,光谱学与光谱分析,2009 29 (10): 2738-2742 ISSN: 1000-0593 CN: 11-2200/O4

27. 原位法常压干燥制备疏水SiO2气凝胶及其热稳定性,李贵安, 朱庭良, 叶录元, 邓仲勋, 张亚娟, 焦飞, 郑海荣,物理化学学报,2009,25(09):1811-1815]

26. Pr3+/Tm3+共掺LaF3纳米体系中能量转移效应的光谱学研究,张喜生,郑海荣*,何恩节,蔡晓燕,朱刚强,高当丽,屈世显,科学通报,2009 年 第 54 卷 第 9 期: 1222 – 1227.

25. 机械抛光金属表面对Rh6G的 荧光增强效应,蔡晓燕,徐良敏,张正龙,伏振兴,郑海荣*,陕西师范大学学报,2009,37(2)25-30.

24. 金属表面荧光增强的物理增强机制,徐良敏,张正龙,蔡晓燕,郑海荣*,发光学报, 2009 ,30(3)8-12.

23. “Spectroscopic study of thulium doped in transparent glass ceramics”, ZHANG Xiangyu, ZHENG Hairong*, GAO Dangli, Chinese Physics ,17(11), 4328-4332(2008).

22. “A novel time-integral type laser energy meter based on anisotropic Seebeck effect”,Guo Yong Zhang, Peng Xiang Zhang, Hai Rong Zheng, Xiang Yu Zhang,Dang Li Gao, Hui Zhang, Li Pi, Wing Kee Lee, Optics & Laser Technology 40 (2008) 844–849.

21. “Investigations of rare earth doped LaF3 by professor YEN and his ccollaborators-from bulk crystal to transparent glass ceramics containing LaF3 nanocrystals”, Zheng Hairong*, Chinese journal of luminescence,29(4),641-645(2008).

20. Fluorescence of thulium ion with different local environments under selective excitation, Hairong Zheng*, Dangli Gao, Xiangyu Zhang, Enjie He and Xisheng Zhang, Journal of Applied Physics, 104, 013506(2008)

19. “Optical dephasing of triply ionized rare earths in transparent glass ceramics containing LaF3 nanocrystals”,Hairong Zheng*, Xiangyu Zhang, and Dangli Gao, Journal of Nanoscience and Nanotechnology.8(3), 1214(2008).

18. 单晶β-Ga2O3纳米线的原位生长及其光致发光性能,刘瑞妮,赵桦,陈晓波,焦华,张建英,郑海荣,张喜生,杨合情,《陕西师范大学学报(自然科学版)》,2008年36(6)

17. “GaN 纳米带、纳米环和Z 字结构纳米线在金属镓颗粒上的原位生长及其发光性质”,张瑞刚, 杨合情, 董红星, 李丽, 焦华, 陈晓波, 张建英, 郑海荣,中国科学 B 辑:化学 38(3), 205-217(2008).

16. “Spectroscopic study of Local Thermal Effect in Transparent glass ceramics containing nanoparticles”,Gao Dangli, Zhang Xiangyu, Zheng Hairong*, Chinese Physics ,16(10), 3134(2007).

15. “表面增强荧光研究进展”,吕凤婷,郑海荣,房 喻,化学进展 19,256(2007).

14. Non-radiative relaxation of rare earth ions in YPO4 crystal, Hairong Zheng and R. S. Meltzer, Journal of Luminescence, 122-123, 478-480(2007).

13. Pressure dependence of the 3P0-3H4 and 1D2-3H4 emission in Pr3+:YAG,R. Turos-Matysiak, H.R. Zheng, J.W. Wang, W.M. Yenc, R.S. Meltzer, T. ?ukasiewicz, M. S′ wirkowiczd M. Grinberg, Journal of Luminescence, 122-123, 322-324(2007)

12. Dynamical processes of Ln3+ ions doped in LaF3 nanocrystals embedded in transparent oxyfluoride glass, Hairong Zheng, Xiao-jun Wang, Shi-xian Qu, M. J. Dejneka, and R. S. Meltzer, Journal of Luminescence, 119-120, 153-160(2006).

11. Pressure Dependence of the 4f15d1→4f2 Emission of Pr3+:YAG Using Excited State Absorption, R.S. Meltzer, Hairong Zheng, J.W. Wang, W.M. Yen, and M Grinberg, Physica Status Solidi (c) 2(1), 284( 2005).

10. Photo echo studies of LaF3:Pr3+ nanocrystals in glass, R. S. Meltzer, Hairong Zheng, and M.J. Dejneka, Journal of Luminescence 107, 166(2004).

9. Up-converted emission in Pr3+ doped fluoride nanocrystals-based oxyfluoride glass ceramics, Hairong Zheng, Xiao-jun Wang, W. M. Yen, M. J. Dejneka, and R. S. Meltzer, Journal of Luminescence 108, 395 (2004).

8. Spectroscopy of different sites in Pr3+-doped oxyfluoride glass ceramics, X.J.Wang, Hairong Zheng, D.Jia, S.H.Huang, R.S.Meltzer, M.J.Dejneka, and W.M.Yen, Microelectronics Journal 34, 549 (2003).

7. Relaxation between closely spaced electronic levels of rare earth ions doped in nanocrystals embedded in glass, R. S. Meltzer, W. M. Yen, Hairong Zheng, S. P. Feofilov, and M. J. Dejneka, Phys. Rev. B. 66, 224202 (2002).

6. Evidence for long-range interactions between rare-earth impurity ions in nanocrystals embedded in amorphous matrices with the two-level systems of the matrix,R. S. Meltzer, W. M. Yen, and Hairong Zheng, S. P. Feofilov, M. J. Dejneka, B. M. Tissue and H. B. Yuan, Phys. Rev. B. 64, 100201(R) (2001).

5. Effect of the matrix on the radiative lifetimes of rare earth doped nanoparticles embedded in matrices, R. S. Meltzer, W. M. Yen, Hairong Zheng, S. P. Feofilov, M. J. Dejneka, B. Tissue and H. B. Yuan, Journal of Luminescence. 94-95, 217-220 (2001).

4. Interaction of rare earth ions doped in nanocrystals embedded in amorphous matrices with two-level systems of the matrix, R. S. Meltzer, W. M. Yen, Hairong Zheng, S. P. Feofilov, M. J. Dejneka, B. Tissue and H. B. Yuan, Journal of Luminescence. 94-95, 221-224 (2001).

3. Multifractal phase transition in the Davidson-Cole relaxation process,Shi-Xian Qu, Hairong Zheng, Alfonso Barrientos and Alexander Leyderman, Physics Letters A. 268(4-6), 360-365 (2000).

2. Evolution of structure and photosensitive defects in sol-gel derived TEOS and doped glasses, Alexander Leyderman, Hairong Zheng, Daniel Arcos, and Benjamin G. Penn, Sol-Gel Optics V, Proceedings of SPIE. 3943, 243-248 (2000).

1. Influence of Al ion on photochemical conversion in germania-silica sol-gel glass, Alexander Leyderman and Hairong Zheng, Journal of Luminescence. 83-84, 447-451 (1999).

Designed by Zhou Rong and conducted by Haoyang Chen.
Copyright 激光光谱实验室 邮编:710119