所受教育
1998-2002 淮北煤炭師範學院(淮北師範大學)化學教育 理學學士
2002-2005 安徽師範大學 分析化學 理學碩士
2008-2012 上海交通大學 套用化學 工學博士
職稱職位
主持項目
基於稀土摻雜的光學生物標記納米材料的製備及其在螢光共振能量轉移體系中的套用研究 國家自然科學青年基金(20905003)
近紅外發光上轉換納米材料的製備及其在生物分析、生物成像中的套用研究 國家自然科學主任基金(21245008)
紅區/近紅外區發光上轉換納米材料-金納米棒FRET的構建及套用研究 安徽自然科學基金 (1408085QB40)
研究領域
講授課程
分析化學(I)
無機及分析化學
普通化學(I)
基礎/綜合化學實驗
獲獎情況
在精品課程建設中切實強化本科生實踐能力與創新意識的培養(2008031-3)2008年 安徽省教學成果一等獎 (排名第三)
有機納米粒子的製備及其在分析中的套用(2007-3-R2)2007年 安徽省科學技術獎三等獎 (排名第二)
朱敬文特等獎學金 2005年 安徽師範大學
代表性論文
27. Hongqi Chen*, Ruoxin Wang, Juanjuan Cheng, Lun Wang, Hua He*. A ratiometric upconversion nanoprobe enables super-resolution imaging sensing of biothiols in living cells, Chemical Communications, 2024, DOI: 10.1039/D3CC06242B.
26. Xinhong Ye, Ruoxin Wang, Hongqi Chen*, Yufeng Wen*, Lun Wang*. Quantitative image analysis and cell imaging of peroxynitrite based on an upconversion luminescence total internal reflection single particle imaging platform, Sensors &Actuators: B. Chemical, 2022, 369: 132308.
25. Hongqi Chen*, Wei Tang, Yunchun Liu, Lun Wang*. Quantitative image analysis method for detection of nitrite with cyanine dye-NaYF4:Yb,Tm@NaYF4 upconversion nanoparticles composite luminescent probe, Food Chemistry, 2022, 367: 130660.
24. Wei Tang, Ruo Mi, Lun Wang*, Hongqi Chen*. Quantitative image analysis for sensing HIV DNAs based on NaGdF4:Yb,Er@NaYF4 upconversion luminescent probe and magnetic beads, Sensors &Actuators: B. Chemical, 2021, 340: 129969.
23. Yunchun Liu*, Wanru Zhu, Xinru Wei, Lun Wang, Hongqi Chen*. Cyanine dye-assembled composite upconversion nanoparticles for the sensing and cell imaging of nitrite based on a single particle imaging method, Analyst, 2022, 147: 2793-2801.
22. Hongqi Chen*, Wanying Xia, Qian Gao, Lun Wang*. Sensitive quantitative image analysis of bisulfite based on near-infrared upconversion luminescence total internal reflection platform, Talanta, 2021, 224: 121928.
21. Wanying Xia, Bo Ling, Lun Wang, Feng Gao*, Hongqi Chen*. A near-infrared upconversion luminescence total internal reflection platform for quantitative image analysis. Chemical Communications, 2020, 56, 8440-8443.
20. Hongqi Chen, Xueping Yang, Yunchun Liu*, Lun Wang *. Turn-on detection of glutathione S-transferase based on luminescence resonance energy transfer between near-infrared to near-infrared core-shell upconversion nanoparticles and organic dye, Analytical and Bioanalytical Chemistry, 2020, 412: 5843–5851.
19. Huihui Wang, Yunyun Lu, Lun Wang*, Hongqi Chen*. Detection of tyramine and tyrosinase activity using red region emission NaGdF4:Yb,Er@NaYF4 upconversion nanoparticles. Talanta, 2019, 197, 558-566.
18. Wen Wang,Mingying Zhao, Lun Wang*, Hongqi Chen*. Core-shell upconversion nanoparticles of type NaGdF4:Yb,Er@NaGdF4:Nd,Yb and sensitized with a NIR dye are a viable probe for luminescence determination of the fraction of water in organic solvents. Microchimica Acta, 2019, 186(9), 630.
17. Yunyun Lu, Lun Wang*, Hongqi Chen*. Turn-on detection of MicroRNA155 based on simple UCNPs-DNA-AuNPs luminescence energy transfer probe and duplex-specific nuclease signal amplification. Spectrochimica Acta Part A, 2019, 223, 117345.
16. Yaoyao Zhou, Bo Ling, Hongqi Chen*, Lun Wang*. Mn-doped NaYF4:Yb,Er upconversion nanoparticles for detection of uric acid based on the Fenton reaction. Talanta, 2018, 180, 120-126.
15. Ni Gao, Bo Ling, Zhongling Gao, Lun Wang*, Hongqi Chen*. Near-infrared-emitting NaYF4:Yb,Tm/Mn upconverting nanoparticle gold nanorod electrochemiluminescence resonance energy transfer system for sensitive prostate-specific antigen detection. Analytical and Bioanalytical Chemistry, 2017, 409, 2675–2683.
14. Keyi Cheng, Jianguo Zhang, Liping Zhang, Lun Wang*, Hongqi Chen*. Aptamer biosensor for Salmonella typhimurium detection based on luminescence energy transfer from Mn-doped NaYF4:Yb, Tm upconverting nanoparticles to gold nanorods. Spectrochimica Acta Part A, 2017, 171, 168–173.
13. Liping Zhang, Bo Ling, Lun Wang*, Hongqi Chen*. A near-infrared luminescent Mn-doped NaYF4:Yb,Tm/Fe upconversion nanoparticles redox reaction system for the detection of GSH/Cys/AA. Talanta, 2017, 172, 95–101.
12. Jianguo Zhang, Shaozhen Wang, Ni Gao, Dexiang Feng, Lun Wang*, Hongqi Chen*. Luminescence energy transfer detection of PSA in red region based on Mn-enhanced NaYF4:Yb,Er upconversion nanorods. Biosensors and Bioelectronics, 2015, 72, 282-287.
11. Fei Yuan, Hongqi Chen*, Juan Xu, YiYan Zhang, Yong Wu, Lun Wang*. Aptamer-based Luminescence Energy Transfer from Near-infrared-to-Near-infrared Upconverting Nanoparticles to Gold Nanorods and its application for the Detection of Thrombin, Chemistry A European Journal, 2014, 20, 2888–2894.
10. Hongqi Chen*, Yingying Guan, Shaozhen Wang, Yuan Ji, Mengqi Gong, Lun Wang*. Turn-On detection of a cancer marker based on near-infrared luminescence energy transfer from NaYF4:Yb,Tm/NaGdF4 core/shell upconverting nanoparticles to gold nanorods. Langmuir, 2014, 30 (43), 13085–13091.
9. Hongqi Chen, Fei Yuan, Shaozhen Wang, Juan Xu, YiYan Zhang, Hongqi Chen*. Aptamer-based sensing for thrombin in red region via Fluorescence Resonant Energy Transfer between NaYF4:Yb,Er upconversion nanoparticles and gold nanorods, Biosensors Bioelectronics, 2013, 48, 19–25.
8. Hongqi Chen, Fei Yuan, Shao-Zhen Wang, Juan Xu, Yi-Yan Zhang, Lun Wang*. Near-infrared to Near-infrared Upconverting NaYF4:Yb,TmNanoparticles-Aptamer-Au nanorods Light Resonance Energy Transfer System for the Detection of Mercuric(II) Ions in solution, Analyst, 2013,138, 2392-2397.
7. Hongqi Chen, Juan Xu, Fei Yuan, Yong Wu, Yiyan Zhang, Lun Wang*, A “turn-off” luminescence resonance energy transfer aptamer sensor based on near-infrared upconverting NaYF4:Yb,Tm nanoparticles as donors and gold nanorods as acceptors, Chinese Chemical Letters, 2013, 24(1), 79-81.
6. Hongqi Chen, Yong Wu, Fei Yuan, Juan Xu, Yiyang Zhang, Lun Wang*.Inner filter effect of gold nanoparticles on the fluorescence of rare-earth phosphate nanocrystals and its application for determination of biological aminothiols, Journal of Luminescence, 2013, 141, 33-37.
5. Hongqi Chen, Jicun Ren*. Selective detection of Fe by combination of CePO4:Tb nanocrystal–H2O2 hybrid system with synchronous fluorescence scan technique. Analyst, 2012, 137, 1899-1903.
4. Hongqi Chen, Jicun Ren*. Sensitive determination of chromium (VI) based on the inner filter effect of upconversion luminescent nanoparticles (NaYF4:Yb, Er), Talanta, 2012, 99, 404-408.
3. Hongqi Chen, Cailing Zhou,Lun Wang*, Jingguo Chen, Bo Ling, Jie Fu. Terbium (III) chelate complexes as fluorescence energy transfer donor in the determination of formaldehyde in aqueous solutions. Spectrochimica Acta Part A, 2011, 78, 371–374.
2. Hongqi Chen, Jie Fu, Lun Wang*, Bo Lin, Binbin Qian, Jingguo Chen, Cailing Zhou. Ultrasensitive mercury(II) ion detection by europium(III)-doped cadmium sulde composite nanoparticles. Talanta, 2010, 83, 139–144.
1. Hongqi Chen, Ani Liang, Lun Wang*, Yan Liu, Binbin Qian. Ultrasensitive determination of Cu by synchronous fluorescence spectroscopy with functional nanoparticles. Microchimica Acta, 2009, 164, 453–458.