Prof. Li Baoxin
Tel: +86-29-85310338 E-mail: libaoxin@snnu.edu.cn |  |
Educations and Work Experiences:
Visiting Scholar, Cardiff University (UK), (2004.09-2006.01)
Ph. D., Southwest University (1999.09-2002.07)
M.S. degree, Shaanxi Normal University (1995.09-1998.07)
B.S. degree, Shaanxi Normal University (1991.09-1995.07)
Prof. Shaanxi Normal University (2003.07-1998.07)
Research interests:
Luminescence Analysis and Biosensing
Awards and Honors:
Member of the Teaching Guidance Committee of the Ministry of Education, 2026
Second Prize in Science and Technology of Shaanxi Province, 2015
Leader of Key Science and Technology Innovation Team in Shaanxi Province, 2014
First Prize in Science and Technology of Shaanxi Province, 2005
Outstanding Talents of the Ministry of Education in the New Century, 2004
Nominated for the National Hundred Outstanding Doctoral Dissertations Award, 2004
Second Prize in Science and Technology of Shaanxi Province, 2003
Huo Yingdong Youth Teacher Fund, 2002
Research Projects as Principal Investigator:
1. General Project of National Natural Science Foundation of China, Grant No. 22274094, "Chemiluminescence Method for Quantifying Surface Oxygen Vacancies on Photocatalytic Materials", January 2023 -December 2026, RMB 0.63 million.
2. General Project of National Natural Science Foundation of China, Grant No. 21974082, "Chiral Seensing New Method Based on the Intrinsic Chirality of Noble Metal Nanoparticles", January 2020 -December 2023, RMB 0.54 million.
Representative Publications:
(1) Asymmetric Sulfur Vacancy-Engineered Cu-Co9S8 Nanozyme: A High-Performance Signal Label for Chemiluminescence Immunoassay. Ling Zhan, Yan Jin, Baoxin Li, Anal. Chem. 2026, 98, 13516−13525.
(2) Cryogenic Synthesis of Homochiral Gold Nanoparticles in the Absence of Chiral Ligands and Their Performance in Enantiomer Recognition. Qingyuan Liu, Miao Zhang, Chenxin Sun, Chunli Xu and Baoxin Li, Inorg. Chem. 2025, 64, 12635-12643.
(3) Facile Estimation of Surface Oxygen Vacancies in Co3O4 Catalysts with a Colorimetric Method. Mei Li, Ling Zhang, Wei Liu, Yan Jin and Baoxin Li, Anal. Chem. 2024, 96, 8999-9006.
(4) Surface Oxygen Vacancy-Rich Co3O4 Nanowires as an Effective Catalyst of Luminol–H2O2 Chemiluminescence for Sensitive Immunoassay. Jing Lei, Ling Zhang, Mei Li, Wei Liu, Yan Jin and Baoxin Li, Anal. Chem. 2023, 95, 48, 17937–17944.
(5) Uncovering Origin of Chirality of Gold Nanoparticles Prepared through the Conventional Citrate Reduction Method. Guiping Zhang, Qingyuan Liu, Chunli Xu and Baoxin Li, Anal. Chem. 2023, 95, 6107–6114.
(6) Carbon Vacancy-Enhanced Activity of Fe−N−C Single Atom Catalysts toward Luminol Chemiluminescence in the Absence of H2O2. Feng Li, Lin Hou, Wei Liu, Yan Jin, Jiangbo Lu and Baoxin Li, Anal. Chem. 2023, 95, 16021–16028.
(7) Jing Lei, Wei Liu, Yan Jin and Baoxin Li. Oxygen Vacancy-Dependent Chemiluminescence: A Facile Approach for Quantifying Oxygen Defects in ZnO. Anal. Chem. 2022, 94, 8642–8650.
(8) Atomic Dispersion of Zn2+ on N-Doped Carbon Materials: From Non-Activity to High Activity for Catalyzing Luminol−H2O2 Chemiluminescence. Jing Lei, Xiaoqing Sun, Yan Jin, Chunli Xu and Baoxin Li. Anal. Chem. 2022, 94, 17559–17566.
(9) Dimeric G-Quadruplex: An Effective Nucleic Acid Scaffold for Lighting Up Thioflavin T. Shaochun Jing, Qiang Liu, Yan Jin and Baoxin Li, Anal. Chem. 2021, 93, 1333–1341.
(10) Long-Lasting and Intense Chemiluminescence of Luminol Triggered by Oxidized g-C3N4 Nanosheets. Xiaoqing Sun, Jing Lei, Yan Jin and Baoxin Li, Anal. Chem. 2020, 92, 11860–11868.