2024
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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
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.
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.
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.
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.
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.
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.
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.
Editorial for Special Issue “Plasmon Assisted Near-Field Manipulation and Photocatalysis” Zhenglong Zhang Nanomaterials, 2023,13(8):1427.
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.
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.
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.
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
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.
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.
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.
2021
2020
2018
111.Baobao Zhang, Jiajia Meng, Xiaohu Mi, Changjian Zhang, Zhenglong Zhang* and Hairong Zheng*, Enhanced upconversion fluorescent probe of single NaYF4:Yb3+/Er3+/Zn2+ nanoparticles for copper ion detection, RSC Adv., 2018, 8, 37618
107.张成云, 张正龙, 韩庆艳, 杨超, 王鹏, 弥小虎, 郑海荣,SiO2包覆的银纳米颗粒及其团簇的表面增强荧光效应, 中国科学: 物理学力学天文学,2018, 48(4):044202
2017
2016
2015
2014
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
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
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]
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.
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)
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).