云南大学化学科学与工程学院
李灿鹏 (博士、教授,博士生导师)
一. 基本情况
李灿鹏,男,白族,博士、教授,博士生导师,硕士、博士毕业于日本国立鹿儿岛大学,主要从事分析化学、材料化学和食品及生物安全检测方面的研究工作。目前为止,在 Nanoscale; Chem. Commun.; Biosens. Bioelectron.; ACS Appl. Mater. Interfaces; Anal. Chim. Acta.; Analyst; Sens. Actuator B-Chem.; J. Agric. Food Chem.; Food Chem.等国际刊物上发表80多篇SCI论文, 其中第1或通讯作者60篇,中科院JCR1区论文27篇,IF>5的论文23篇,高被引论1篇,单篇最高IF=10.25,总影响因子超过200。论文被引用1400多次,H-指数为25。同时,在国家级出版社出版了3部教材,其中主编2部,副主编1部。授权发明专利20多项。主持4项国家自然科学基金,1项国家科技支撑计划项目子课题,1项云南省重点研发计划、1项云南省自然科学基金重点项目、和多项省级项目和横向项目。现为云南省中青年学术与技术带头人、昆明市中青年学术带头人、云南大学东陆学者、云南大学第三批青年英才培育对象、云南大学青年骨干教师。2016年获得云南大学 第二十届伍达观教育基金优秀教师奖、云南大学红云园丁奖优秀教师奖和 “云南启迪杯”第二届云南省“互联网+”大学生创新创业大赛优秀创新创业导师奖。成功开发了系列新冠病毒、诺如病毒、食品安全有害成分的超敏光/电化学传感器。
担任 Biosens. Bioelectro.; Oncotarget; Anal. Chim. Acta; J. Hazard. Mater.; Electrochim. Acta.; ACS Sensors; J. Mater. Chem. C; Int. J. Environ. Anal. Chem.; RSC Adv.; J. Agric. Food Chem.; Food Chem.; Food Rev. Int.; Food Res. Int.; J. Food Sci. & Technol.; Molecu. Nutri. Food Res.; Biotechnol. Progr.等20多种SCI刊物的审稿人。
办公室 :呈贡校区工程中心5425
电子邮箱: lcppp1974@sina.com
二. 受教育情况及工作经历
1. 受教育情况:
1995.09-1999.07: 云南农业大学食品科学部 本科
2000.04-2005.03: 日本国立鹿儿岛大学农学研究科 硕士、博士
2. 工作经历:
1999.09-1999.12: 云南农业大学食品科学部 助教
2005.04-2006.03: 日本国立鹿儿岛大学农学部 研究助手
2006.04-2006.09: 日本京都PharmaFoods International Co., Ltd公司 研究组长2006.10-至今 : 云南大学化学科学与工程学院 教授
三. 研究领域和兴趣
[1]. 功能纳米材料(纳米酶)的合成及其生物医药应用研究(抗菌、抗炎、抗癌等)
[2]. 基因编辑与功能纳米材料的联用的药物递送策略及疾病治疗研究
[3]. 光/电化学传感器、生物标志检测研究
[4]. 超疏水材料的合成及其应用
四. 工作业绩
1、科研论文(*通讯作者)
[1] Zhao, H.,# Liu, F.,# Xie, W.,# Zhou, T.-C.,# Ouyang, J., Jin, L., Li, H., Zhao, C., Zhang, L., Wei, J.,* Zhang, Y.-P.,* Li, C.-P.* Ultrasensitive supersandwich-type electrochemical sensor for SARS-CoV-2 from the infected COVID-19 patients using a smartphone. Sens. Actuators B: Chem., 2021, 327, 128899. (SCI, IF= 9.221, JCR1区) (高被引论文,热点论文)
[2] Liang, H., Xu, H., Zhao, Y., Zheng, Zhao, H., Li, G., Li, C. P. ,* Ultrasensitive electrochemical sensor for prostate specific antigen detection with phosphorene platform and magnetic covalent organic framework signal amplifier. Biosens. Bioelectron., 2019, 144, 111691. (SCI, IF=10.16, JCR 1区)
[3] Zhao, H., Zheng, J., Liang, H., Liu, H., Liu, F., Zhang, Y.-P.,* and Li, C.-P.,*
Electrochemical/colorimetric dual-mode sensing strategy for cardiac troponin I detection based on zirconium nitride functionalized covalent organic frameworks. Sens. Actuators B: Chem., 2023, Accepted (SCI, IF= 9.221, JCR1区)
[4] Xu, H., Zheng, J., Liang, H., C. P. Li* Electrochemical sensor for cancer cell detection using calix[8]arene/polydopamine/phosphorene nanocomposite based on host−guest recognition. Sens. Actuators B: Chem., 2020, 317, 128193. (SCI, IF= 7.460, JCR1区)
[5] Li, C. P., Lu, Y. X., Zi, C. T., Zhao, Y. T., Zhao, H.,* Zhang, Y. P.* Cationic pillar[6]arene induces cell apoptosis by inhibiting protein tyrosine phosphorylation via host–guest recognition. Int. J. Mol. Sci., 2020, 21, 4979. (SCI, IF= 5.924, JCR 2区)
[6] Liang, H., Liu, H., Lin, H., Ning, G., Lu, X., Ma, S., Liu, F., Zhao, H.,* Li, C.-P.,* Electrochemical and colorimetric dual-signal detection of Staphylococcus aureus enterotoxin B based on AuPt bimetallic nanoparticles loaded Fe-N-C single atom nanocomposite. Food Science and Human Wellness. 2023, (SCI, JCR1区, IF=8.022)
[7] Lu, X., Qi, T., Guo, L., Xiao, L. Xu, H., Ning, G., Zhao, H.* and Li C.-P.,* A novel fluorescence sensor for milk clotting enzyme chymosin using peptide as substrate and covalent organic framework nanosheet as fluorescence quencher. Food Science and Human Wellness. 2023, Accepted, (SCI, JCR1区, IF=8.022)
[8] Ning, G., Duan, Q., Ning, G., Liang, H., Liu, H., Zhou, M., Chen, C., Zhang, C.,* Zhao,* H., Li, C. P.* One stone two birds: electrochemical and colorimetric dual-mode sensor based on copper peroxide/covalent organic framework nanocomposite for ultrasensentive norovirus detection. Food Sci. Wellness, In press, (SCI, IF= 8.022, JCR1区)
[9] Hu, X., Liu, N., Yang, H. Wu, F., Chen, X., Li, C. P. ,* Chen. X.,* A reversible ion transportation switch of ON-OFF-ON type by a ligand-gated calix[6]arene channel. Chem. Commun., 2019, 55, 3008-3011. (SCI, IF= 5.996, JCR1区, Nature Index)
[10] Zhao, H., Liu, F., Lu Y., Jin, L., Tang, S., Zhang, Y.*, C.-P. Li,* Ultrasensitive electrochemical detection of alternative cleavage and polyadenylation of CCND2 gene at the single-cell level. Sens. Actuators B: Chem., 2019, 285, 553-561. (SCI, IF= 7.1, JCR1区)
[11] Yang, L., Ran, X., Cai, L., Li, Y., and Zhao, H.,* and Li, C. P.* Calix[8]arene functionalized single-walled carbon nanohorns for dual-signalling electrochemical sensing of aconitine based on competitive host-guest recognition.Biosens. Bioelectron., 2016, 83, 347-352. (SCI, IF=7.8)
[12] Yang, L., Xie, X., Cai, L., Ran, X., Li, Y., Yin, T., and Zhao, H.,* and Li, C.P.* p-Sulfonated calix[8]arene functionalized graphene as a "turn on" fluorescent sensing platform for aconitine determination. Biosens. Bioelectron., 2016, 82, 146-154. (SCI, IF=7.8)
[13] Zhao, H., Liu, F., Wu, S., Yang, L.,* Zhang, Y.*, and Li, C. P.* Ultrasensitive electrochemical detection of Dicer1 3’UTR for the fast analysis of alternative cleavage and polyadenylation. Nanoscale, 2017, 9, 4272-4282. (SCI, IF=7.233)
[14] Zhao, G., Yang, L., Wu, S., Zhao, H.,* Tang, E*, and Li, C. P.* The synthesis of amphiphilic pillar[5]arene functionalized reduced graphene oxide and its application as novel fluorescence sensing platform for the determination of acetaminophen. Biosens. Bioelectron., 2017, 91, 863-869. (SCI, IF=8.173)
[15] Zhao, H., Yang, L., Li, Y., Ran, X., Ye, H., Zhao, G. Zhang, Y., Liu, F., and Li, C. P.* A comparison study of macrocyclic hosts functionalized reduced graphene oxide for electrochemical recognition of tadalafil. Biosens. Bioelectron., 2017, 89, 361-369. (SCI, IF=8.173)
[16] Yang, L., Zhao, H., Li, Y., Zhang, Y., Ye, H., Zhao, G. Ran, X., Liu, F., and Li, C. P.* Insights into the recognition of dimethomorph by disulfide bridged β–cyclodextrin and its high selective fluorescence sensing based on indicator displacement assay. Biosens. Bioelectron., 2017, 87, 737-744. (SCI, IF=8.173)
[17] Liang, H., Zhao, Y., Ye, H., C.-P. Li ∗. Ultrasensitive and ultrawide range electrochemical determination of bisphenol A based on PtPd bimetallic nanoparticles and cationic pillar[5]arene decorated graphene. J. Electroanal. Chem., 2019, 855, 113487. (SCI, IF=3.807)
[18] Li, C. P.*, Tan, S., Ye, H., Cao, J., Zhao, H.* A novel fluorescence assay for resveratrol determination in red wine based on competitive host-guest recognition. Food Chem., 2019, 283, 191-198. (SCI, IF= 6.306)
[19] Liang, H., Chen, C., Zeng, J., Zhou, M., Wang, L., Ning, G., Duan, Q., Han, R., Liu, H., Zhao, H.,* Li, C. P.* Dual-signal electrochemical biosensor for neutrophil gelatinase-associated lipocalin based on MXene-polyaniline and Cu-MOF/ single-walled carbon nanohorn nanostructures. ACS Appl. Nano Mater., 2022, 5, 11, 16774-16783, (SCI, IF=6.140, JCR2区)
[20] Liu, F., Peng, J., Lei, Y., Liu, R., Jin, L., Liang, H., Liu, H., Ma, S., Zhang, X., Zhang, Y.-P.,* Li, C.P.,* Zhao, H*. Electrochemical detection of ctDNA mutation in non-small cell lung cancer. Sens. Actuators B: Chem., 2022, 362, 131807. (SCI, IF= 9.221, JCR1区)
[21] Yang, L., Zhao, H., Li, Y., Ran, X., Deng, G., Xie, X., and Li, C. P.* Fluorescent detection of tadalafil based on competitive host–guest interaction using p-sulfonated calix[6]arene functionalized graphene. ACS Appl. Mater. Interfaces, 2015, 7, 26557-26565. (SCI, IF=7.504)
[22] Liu, H., Ma, S., Ning, G., Zhang, R., Liang, H., Liu, F., Xiao, L., Guo, L., Zhang, Y.P.,* Li, C.-P.,* Zhao, H.* A “peptide-target-aptamer” electrochemical biosensor for norovirus detection using a black phosphorous nanosheet@Ti3C2-Mxene nanohybrid and magnetic covalent organic framework. Talanta, 2023, 258, 124433. (SCI, IF= 6.556, JCR1区)
[23] Zheng, J., Zhao, H., Ning, G., Sun, W., Wang, L., Liang, H., Xu, H., He, C., Zhao, H., Li, C. P.* A novel affinity peptide–antibody sandwich electrochemical biosensor for PSA based on the signal amplification of MnO2-functionalized covalent organic framework. Talanta, 2021, 133, 122520. (SCI, IF= 6.556, JCR2区)
[24] Zhao, H.,# Xie, W.,# Zhang, R.,# Wang, X., Liu, H., Li, J., Sha, T., Guo, X., Li, J., Sun, Q.,* Zhang, Y.-P.,* Li, C.-P.* Electrochemical sensor for human norovirus based on covalent organic framework/pillararene heterosupramolecular nanocomposites. Talanta, 2022, 237, 122896. (SCI, IF= 6.556, JCR2区)
[25] Xu, H., Liang, H., Zheng, J., Wang, L., Zeng, J. Zhao, H., Li, C. P.* Ultrahigh stable lead halide perovskite nanocrystals as bright fluorescent label for the visualization of latent fingerprints. Nanotechnology, 2021, 32, 375601−375610. (SCI, IF=3.953, JCR2区)
[26] Liang, H.,# Ning, G.,# Wang, L., Li, C., Zheng, J., Zhao, H.,* Li, C. P.* Covalent framework particles modified with MnO2 nanosheets and Au nanoparticles as electrochemical immunosensors for human chorionic gonadotropin. ACS Appl. Nano Mater., 2021, 4, 4593−4601. (SCI, IF=6.140)
[27] Li, C. P.,* Liu, F., Zheng, J., Zhao, H.,* A novel electrochemical assay for chymosin determination using a label-free peptide as a substrate. J. Dairy Sci., 2021, 3, 2511-2519. (SCI, IF=4.225, JCR1区)
[28] Tan, S., Han, R., Wu S., Liang H., Zhao, Y., Zhao, H.,*and Li, C. P.* A novel fluorescent sensing platform for insulin detection based on competitive recognition of cationic pillar[6]arene. Talanta, 2019, 197, 130-137. (SCI, IF= 5.339)
[29] Wu, S., Zhang, Y., Yang, L., and Li, C. P.* A label-free fluorescent determination of Sunset Yellow in soft drinks based on an indicator displacement assay. J. Food Qual. Volume 2018 (2018), doi.org/10.1155/2018/6302345 (SCI, IF=1.360)
[30] Wu, S., Fan, S., Tan, S., Wang, J., and Li, C. P.* A new strategy for sensitive electrochemical determination of nitrophenol isomers using b-cyclodextrin derivatives functionalized silicon carbide. RSC Adv. 2018, 8, 775-784. (SCI, IF=3.049)
[31] Yang, L., Zhao, H., Li, Y., Ran, X., Deng, G., Zhang, Y., Ye, H., Zhao, G., and Li, C. P.* Indicator displacement assay for cholesterol electrochemical sensing using calix[6]arene functionalized graphene-modified electrode. Analyst, 2016, 141, 270-278. (SCI, IF=3.9) (Back Cover)
[32] Yang, L., Fan, S., Deng, G., Li, Y., Ran, X., and Zhao, H.,* and Li, C. P.* Bridged β-cyclodextrin-functionalized MWCNT with higher supramolecular recognition capability: The simultaneous electrochemical determination of three phenols. Biosens. Bioelectron., 2015, 68, 617-625. (SCI, IF=7.5)
[33] Yang, L., Zhao, H., Li, C. P.,* Fan, S., and Li, B. Dual β-cyclodextrin functionalized Au@SiC nanohybrids for the electrochemical determination of tadalafil in the presence of acetonitrile. Biosens. Bioelectron., 2015, 64, 126-130. (SCI, IF=7.5)
[34] Yang, L., Zhao, H., Fan, S., Deng, S., Lv, Q., Lin, J., and Li, C. P.* Label-free electrochemical immunosensor based on gold-silicon carbide nanocomposites for sensitive detection of human chorionic gonadotrophin. Biosens. Bioelectron., 2014, 57, 199-206. (SCI, IF=6.4)
[35] Ye, H., Yang, L., Zhao, G., Zhang, Y., Ran, X., Wu, S., Zou, S., Xie, X.,* Zhao, H.,* and Li, C. P.* A FRET-based fluorescent approach for labetalol sensing using calix[6]arene functionalized MnO2@graphene as a receptor. RSC Adv., 2016, 6, 79350-79360. (SCI, IF=3.1)
[36] Ran, X., Yang, L., Zhang, J., Deng, G., Li, Y., Xie, X., Zhao, H.,* and Li, C. P.* Highly sensitive electrochemical sensor based on β-cyclodextrin-gold@3, 4, 9, 10-perylene tetracarboxylic acid functionalized single-walled carbon nanohorns for simultaneous determination of myricetin and rutin. Anal. Chim. Acta, 2015, 892, 85-94. (SCI, IF=4.7)
[37] Yang, L., Zhao, H., Li, Y., and Li, C. P.* Electrochemical simultaneous determination of hydroquinone and p-nitrophenol based on host-guest molecular recognition capability of dual β-cyclodextrin functionalized Au@graphene nanohybrids. Sens. Actuators B: Chem, 2015, 207, 1–8. (SCI, IF=4.8)
[38] Yang, L., Zhao, H., Deng, G., Ran, X., Li, Y. and Li, C. P.* Immunosensor for prostate-specific antigen using Au/Pd@flower-like SnO2 as platform and Au@mesoporous carbon as signal amplification. RSC Adv., 2015, 5, 74046-74053. (SCI, IF=3.3)
[39] Yang, L., Zhao, H., Fan, S., Zhao, G., Ran, X., and Li, C. P.* Electrochemical detection of cholesterol based on competitive host–guest recognition using a β-cyclodextrin/poly(N-acetylaniline)/ graphene-modified electrode. RSC Adv., 2015, 5, 64146-64155. (SCI, IF=3.3)
[40] Ran, X., Yang, L., Zhao, G., Ye, H., Zhang, Y., Fan, S., Xie, X.,* Zhao, H.,* and Li, C. P.* Simultaneous determination of two flavonoids based on disulfide linked β-cyclodextrin dimer and Pd cluster functionalized graphene-modified electrode. RSC Adv., 2015, 5, 60775-60785. (SCI, IF=3.3)
[41] Yang, L., Zhao, H., Fan, S., Li, B. and Li, C. P.* A highly sensitive electrochemical sensor for simultaneous determination of hydroquinone and bisphenol A based on the ultrafine Pd nanoparticle@TiO2 functionalized SiC. Anal. Chim. Acta, 2014, 852, 28–36. (SCI, IF=4.5)
[42] Li, C. P.,*He, Z., Wang, X., Yang, L., Yin, C., Zhang, N., Lin, J., and Zhao, H.* Selenization of ovalbumin by dry-heating in the presence of selenite: effect on protein structure and antioxidant activity.Food Chem., 2014, 148, 209-217. (SCI, IF=3.3)
[43] Yin, C., Yang, L., Zhao, H., and Li, C. P.* Improvement of antioxidant activity of egg white protein by phosphorylation and conjugation of epigallocatechin gallate. Food Res. Int., 2014, 64, 855-863. (SCI, IF=2.8)
[44] Li, C. P.,* Fan, S., Yin, C., Zhang, N., Du, S., and Zhao, H. Carboxylic silica nanosheets-platinum nanoparticles modified glass carbon electrode for pesticides detection. Anal. Methods, 2014, 6, 1914-1921. (SCI, IF=1.8)
[45] Zhao, J., Zhao, H., Wang, X., Huang, R., Enomoto, H., He, Z., and Li, C. P.* Characteristics and enhanced antioxidant activity of egg white protein selenized by dry-heating in the presence of selenite. J. Agric. Food Chem., 2013, 61, 3131-3139. (SCI, IF=2.9)
[46] Huang, R., Li, C. P.*, Chen, D., Zhao, G., Cheng, W., Zhang, Y., and Zhao, H.* Preparation of phosphorylated starch by dry-heating in the presence of pyrophosphate and its calcium-phosphate solubilizing ability. J. Food Sci. & Technol., 2013, 50, 561-566. (SCI, IF=2.0)
[47] Li, C. P.,* Peng, J. L., Zhu, G. H., and Li, C. Micellar calcium phosphate-cross- linkage in donkey casein micelles. Milchwissenschaft, 2010, 65, 274-276. (SCI)
[48] Li, C. P.,* Chen, D., Peng, J., Enomoto, H., Hayashi, Y., Li, C., Ou, L., and Aoki, T. Improvement of functional properties of whey soy protein by phosphorylation by dry-heating in the presence of pyrophosphate. LWT-Food Sci. & Technol., 2010, 43, 919-925. (SCI, IF=2.2)
[49] Li, C. P.,* Enomoto, H., Hayashi, Y., Zhao, H., and Aoki, T. Recent advances in phosphorylation of food protein: A review. LWT-Food Sci. & Technol., 2010, 43, 1295-1300. (SCI, IF=2.2)
[50] Li , C. P.,* Hayashi, Y., Enomoto, H, Hu , F., Sawano, Y., Tanokura, M. and Aoki, T. Phosphorylation of proteins by dry-heating in the presence of pyrophosphate and some characteristics of introduced phosphate groups. Food Chem., 2009, 114, 1036-1041. (SCI, IF=3.1)
[51] Li, C. P., Hayashi, Y., Shinohara, H., Ibrahim, H. R., Sugimoto, Y., Kurawaki, J., Matsudomi, N., and Aoki, T. Phosphorylation of ovalbumin by dry-heating in the presence of pyrophosphate: effect on protein structure and some properties. J. Agric. Food Chem., 2005, 53, 4962-4967. (SCI, IF=2.5)
[52] Li, C. P., Enomoto, H., Ohki, S., Ohtomo, H., and Aoki, T. Improvement of functional properties of whey protein isolate through glycation and phosphorylation by dry-heating. J. Dairy Sci., 2005, 88, 4137-4145. (SCI, IF=2.2)
[53] Li, C. P., Ibrahim H. R., Sugimoto, Y., Hatta, H., and Aoki, T. Improvement of functional properties of egg white protein through phosphorylation by dry-heating in the presence of pyrophosphate. J. Agric. Food Chem., 2004, 52, 5752-5758. (SCI, IF=2.3)
[54] Li, C. P., Salvador, A. S., Ibrahim H. R., Sugimoto, Y., and Aoki, T. Phosphorylation of egg white proteins by dry-heating in the presence of phosphate. J. Agric. Food Chem., 2003, 51, 6808-6815. (SCI, IF=2.1)
[55] Deng, G. and Li, C. P.,* Heat-induced aggregation inhibition properties of phosphorylated ovalbumin through its molecular chaperone-like properties. Food Sci., 2017, 38, 66-73. (EI)
[56] Enomoto, H., Li, C. P., Morizane, K., Ibrahim H. R., Sugimoto, Y., Ohki, S., Ohtomo, H. and Aoki, T. Glycation and phosphorylation of b-lactoglobumin by dry-heating:effect on protein structure and some properties. J. Agric. Food Chem., 2007, 55, 2392-2398. (SCI, IF=2.5)
[57] Enomoto, H., Hayashi, Y., Li, C. P., Ohki, S., Ohtomo, H., Shiokawa, M.,Aoki, T. Glycation and phosphorylation of alpha-lactalbumin by dry heating: effect on protein structure and physiological functions. J. Dairy Sci., 2009, 92, 3057-3068. (SCI, IF=2.3)
[58] Enomoto, H., Ishimaru, T., Li, C. P., Hayashi, Y., Matsudomi, N., Aoki, T. Phosphorylation of ovalbumin by dry-heating in the presence of pyrophosphate: Effect of carbohydrate chain on the phosphorylation level and heat stability. Food Chem., 2010, 122, 526-532. (SCI, IF=3.1)
[59] 殷春雁,张男,林洁*,李灿鹏*. 硒酸化乳清分离蛋白抗前列腺癌细胞活性, 食品科学,已接收,(EI收录)
[60] 卢宇勋, 李灿鹏, 赵卉. 基于电化学生物传感器的核酸肿瘤标志物检测研究进展. 中国科学: 生命科学, 2019, 49, doi: 10.1360/SSV-2019-0088.
[61] 李灿鹏*,陈德义,赵逸云,青木孝良. 食品蛋白质磷酸化改性的研究进展. 食品科学,2009, 30, 252-255.
[62] 和智坤,赵改红,李梦婷,王晓燕,李灿鹏*. 魔芋葡甘露寡糖的干燥加热硒酸化及其产物的抗氧化性. 食品科学, 2013, 5, 5-9.
2、出版教材
[1] 李灿鹏,吴子健 主编. 蛋品科学与技术,北京:中国质检出版社,中国标准出版社,2013.
[2] 张志胜,李灿鹏,毛学英 主编. 乳与乳制品工艺学,北京:中国质检出版社,中国标准出版社,2014.
[3] 刘红英,高瑞昌,戚向阳 主编. 食品化学,北京:中国质检出版社,中国标准出版社,2013. (李灿鹏 副主编)
3、专利
[1] 李灿鹏、吴石莲、谭双。一种荧光传感器的制备方法及应用,中国发明专利,专利号:ZL 201811166651.2
[2] 李灿鹏、赵宇婷。一种改善牛血清蛋白热稳定性的方法,以及一种透明蛋白胶体及其制备方法,中国发明专利,专利号:ZL 201911107914.7
[3] 李灿鹏、谭双、吴石莲、赵卉。基于竞争性识别的荧光传感器的构建方法及应用,中国发明专利,专利号:ZL 201811256374.4
[4] 李灿鹏、谭双、赵 卉。一种检测马兜铃酸A荧光传感器的制备方法,中国发明专利,专利号:ZL 201811532085.2
[5] 李灿鹏、赵 卉、张亚平、刘凤、谢伟。一种新型冠状病毒2019-nCoV的电化学检测方法,中国发明专利,专利号:ZL 202010108629.3
[6] 李灿鹏、曾祥慧、赵 卉、朱光辉、李聪、欧灵澄。一种硒酸化多糖的制备方法。中国发明专利,专利号:ZL 200910094679.2
[7] 李灿鹏、赵宇婷。食品蛋白的磷酸化方法及其磷酸化蛋白,中国发明专利,专利号:ZL 201911102097.6
[8] 李灿鹏、徐韩斌。纳米复合材料、其加工方法及在肿瘤细胞检测中的应用,中国发明专利,专利号:ZL 201911269609.8
[9] 李灿鹏。一种检测前列腺特异性抗原的夹心型电化学免疫传感器的制备及使用方法,中国发明专利,专利号:ZL 202010033287.3
[10] 李灿鹏、赵宇婷。一种磷酸化卵白蛋白及其对大豆苷元功能特性改善的研究方法,中国发明专利,专利号:ZL 2020100338738
[11] 李灿鹏、徐韩斌。一种潜指纹显影剂的制备方法及其可视化方法,中国发明专利,专利号:ZL 202011444470.9
[12] 李灿鹏、赵卉、郑净。一种基于肽和抗体疾病蛋白标志物的检测试剂盒及其应用,中国发明专利,专利号:ZL 202111346805.8
[13] 李灿鹏、曾靖、赵卉。一种过氧化铜/氢键有机骨架纳米材料及其探针、一种检测脂质运载蛋白-2试剂盒,中国发明专利,专利号:ZL 202111578371.4
[14] 李灿鹏、王犁、赵卉。一种检测银环蛇毒检测探针及生物免疫传感器和基于比例型信号的银环蛇毒的方法,中国发明专利,专利号:ZL 202111371507.4
[15] 李灿鹏、周敏、赵卉。金属有机框架纳米酶生物探针和ELISA试剂盒,中国发明专利,专利号:ZL 202111562911.X
[16] 李灿鹏、段权镁、赵卉、李文辉。一种β银环蛇毒检测用生物材料,一种非诊断目的的检测β银环蛇毒的方法,中国发明专利,专利号:ZL 202111574038.6
[17] 李灿鹏、赵卉、徐韩斌、周敏。金掺杂共价有机框架材料及制备方法和应用、共价有机框架纳米酶生物探针及应用、试剂盒,中国发明专利,专利号:ZL 202210201270.3
[18] 李灿鹏、陈春兰、赵卉。一种纳米模拟酶材料及其制备方法和应用、检测卵类粘蛋白的方法。中国发明专利,专利号:ZL 2021116385574
[19] 赵卉、李灿鹏、张亚平、刘凤. 非编码RNA的电化学传感器的制备方法及其应用. 中国发明专利,专利号:ZL 201880003841.4
[20] 赵卉、李灿鹏、张亚平、谢伟.GII.4诺如病毒的检测材料、合成方法、检测方法,中国发明专利. 专利号:ZL 202011553159.8
[21] 赵卉、李灿鹏、张亚平、刘会芳. 一种诺如病毒的检测方法,中国发明专利. 专利号:ZL 2021110298146.9
[22] 赵卉、李灿鹏、张亚平、刘会芳. 一种具有过氧化物酶催化活性的磁性纳米酶材料及其检测诺如病毒的试剂盒和应用,中国发明专利. 专利号:ZL 2021110598036.4
[23] 赵卉、李灿鹏、张亚平、刘凤. 一种生物传感器及其制备方法和应用、检测ctDNA的电化学系统. 专利类型:中国发明专利. 专利号:ZL 202111414807.6.
4、入选人才培养情况
[1] 2010年11月,入选云南省第十三批中青年学术与技术带头人后备人选
[2] 2010年09月,入选昆明市第八批中青年学术与技术带头人后备人选
[3] 2010年12月,入选云南大学第三批中青年骨干教师培养计划
[4] 2016年05月,入选云南大学第三批青年英才教师培养计划
[5] 2017年11月,入选云南大学第二批东陆学者支持计划
5、获奖情况
[1] 2022.5, 云南省自然科学奖二等奖,获奖项目名称:食品安全检测的大环超分子识别理论和传感器研究,2022年,排名第一。
[2] 2016.06,获得“云南启迪杯”第二届云南省“互联网+”大学生创新创业大赛优秀创新创业导师奖。
[3] 2016.11,获得云南大学 第二十届伍达观教育基金优秀教师奖。
[4] 2023.01, 获得云南大学 “红云园丁奖”优秀教师奖。
五.主持和参加的项目
[1] 国家自然科学基金“基于柱芳烃/共价有机框架纳米复合材料和“肽-DNA"异种适配体的诺如病毒电化学传感器研究”(32160597),执行时间:2022.1-2025.12。(主持)
[2] 国家自然科学基金“茶多酚功能化柱芳烃超分子自组装体的构建及其对β淀粉样蛋白纤维化的抑制作用”(21764005),执行时间:2018.1-2021.12。(主持)
[3] 国家自然科学基金“基于超分子主体/鳞片状MnO2纳米复合材料的电化学生物传感器的构建及其在新型肿瘤标志物检测中的应用”(21565029),执行时间:2016.1-2019.12。(主持,已结题)
[4] 国家自然科学基金“基于硒酸化的蛋清蛋白功能特性改善及其机理研究” (31160334),执行时间:2012.1-2015.12。(主持,已结题)
[5] 云南省重点研发计划项目“食品安全快速检测共性关键技术研究与示范推广”,(202202AE090085),执行时间:2023.1-2025.12。(主持)(总经费700万元)
[6] 云南省基础研究重点项目“基于超分子主体/金属氧化物纳米复合体系的生物传感器的构建及其在癌症非编码RNA检测中的应用”(2018FA005),执行时间:2018.1- 2021.12。(主持,已结题)(总经费50万元)
[7] 国家重点研发计划项目“重大野生动物疫病跨境传播机制及监测技术研究”子课题(2022YFC2601604)执行时间:2022.11- 2024.12。(参加)(总经费370万元)
[8] 云南省重大科技专项计划“云南特色预制调理食品规模化加工关键技术研究与集成应用”子课题“云南特色小吃预制调理食品加工关键技术集成应用”。(202002AE32005),执行时间:2022.1-2024.12。(参加),(云大经费40万元)
[9] 云南省重点研发计划项目“食品安全快速检测关键技术研究及装备开发”(2018BC005),执行时间:2018.1-2021.12。(参加)(总经费600万元,其中云大经费60万元)
[10] 云南省科技计划项目重大专项项目“农产品绿色生产及质量安全控制关键技术研究与示范应用”子课题“农产品全链条质量安全快速检测技术与装备开发”。(202002AE32005),执行时间:2020.1-2022.12。(参加),(云大经费40万元)
[11] 云南中烟工业有限责任公司委托研究项目“肽美拉德反应终产物的可控制备、分离纯化与特征成分分析”,(2019539200370012),执行时间:2019-2021年。44万元(主持)
[12] 国家科技支撑计划项目“云南天然橡胶产业关键技术研究与集成示范”子项目“橡胶籽油、复混肥、食用菌的研究与开发及低蛋白浓缩天然胶乳生产关键技术集成与产业化开发”(2011BAD30B00),执行时间:2011-2014年。(主持,已结题)
[13] 云南大学国家杰出青年基金培育项目“循环肿瘤DNA的超敏电化学液体活检研究”,(2018YDJQ006), 执行时间:2018-2020年。(主持,已结题)
[14] 云南省自然科学基金“基于硒酸化的乳源肽抗氧化性的增强及其机理研究(2012FB112),执行时间:2012-2015年。(主持,已结题)
[15] 云南省科技创新强省计划项目“云南天然橡胶产业提升关键技术集成与应用子课题”. ( 2009AB001),执行时间:2009-2012年。(主持,已结题)
[16] 云南省自然科学基金 “螺旋藻蛋白和多糖的磷酸化及多功能化研究”. (2007C155M),
执行时间:2007-2010年。(主持,已结题)
[17] 云南省教育厅基础科学研究基金重大专项项目“魔芋葡甘聚糖的硒酸化及其抗癌、抗氧化研究”. (ZD2009002),执行时间:2010-2011年。(主持,已结题)
[18] 中华全国供销总社合作社昆明食用菌研究所委托研究项目“低氟砖茶的研制(横向)”,执行时间:2009-2011年。(主持)
[19] 云南省热带作物研究所委托研究项目“辣木叶中辣木碱(Moringine)的定量方法研究”(横向),2011年(主持)
[20] 河口橡胶股份有限公司合作研究项目 “低蛋白浓缩胶乳的中试生产线建设”。 执行时间: 2013-2014年。(主持)
[21] 云南省社会发展科技计划项目“新型金属-碳纳米生物传感器的制备及其在有机磷和氨基甲酸酯类农残检测中的应用”(2014RA022). 执行时间:2014.6-2017.6年。(参加,已结题)
[22] 昆明市科技重大项目:寻甸牛干巴清真月饼的关键技术研究及其产业化开发,2015- 2016年 (技术负责人)
[23] 昆明市科技重大项目: 寻甸“伊乐”牌牛干巴及其软包装牛肉清真熟食系列技术研究及产业化开发,2016-2017年。(技术负责人)
六、参加的学术会议
[1]. International Symposium on Analytical Biosensors – Changsha, Hunan, Nov 3, 2015
(Poster)
[2]. 第九届食品科学国际年会 辽宁沈阳 2016.7(参会)
[3]. 第十八届大环化学暨第十届超分子化学学术讨论会, 湖南长沙, 2016.8. (分会场报告)
[4]. 第三届食品科学与人类健康国际研讨会,吉林长春, 2017.8 (特邀嘉宾,分会场报告)
[5]. 云南省食品安全风险分析报告专家研讨会, 云南昆明, 2017.8 (特邀嘉宾,大会报告)
[6]. 2017年中国农业工程学会农产品加工及贮藏工程分会学术年会, 云南昆明,2017.8 (特
邀嘉宾,分会场报告)
[7]. 第四届食品质量与安全学术研讨会,福建厦门,2018.7. (特邀嘉宾,分会场报告)
[8]. 第13届全国分析化学年会, 陕西西安, 2018.6 (参会)
[9]. 第19届大环化学及超分子会议, 内蒙古呼伦贝尔, 2018.8 (参会)
[10]. 第1届全国食品生物技术大会,广东广州,2019.11 (特邀嘉宾,分会场报告)
[11]. 2019年天津食品科技创新发展论坛暨《食品研究与开发》创刊40周年大会,天津,2019.11, (特邀嘉宾,大会报告)
七、社会兼职
[1] 《食品研究与开发》 杂志编委
[2] 云南省预防医学会第二届食品安全风险监测评估专家委员会 委员
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