黄岭,新疆大学化学学院,二级教授,博导
教育经历
1996.09 – 2001.06 博士,无机化学,南京大学
1992.09 – 1996.06 本科,化学,江苏师范大学
工作经历
2021.05 – 教授/博导, 新疆大学化学学院
2012.12 – 2021.05 教授/博导, 南京工业大学化学与分子工程学院
2009.04 – 2012.12 副教授/博导, 新加坡南洋理工大学化学与生物医学工程学院
2008.01 – 2009.04 高级研究员, 美国康宁公司总部,生物化学研究部
2004.07 – 2007.12 博士后研究员 (Prof. Chad A. Mirkin),美国西北大学
2002.06 – 2004.06 博士后研究员 (Prof. Seunghun Hong),美国佛罗里达州立大学
2001.09 – 2002.05 博士后 (Prof. Gabor A. Somorjai),美国加州大学伯克利分校
A. 荣誉
l 英国皇家化学会会员 (FRSC),2022
l 国家级人才称号, 2019
l 江苏省双创计划,2015
l 江苏省六大人才高峰,2015
l 江苏省青蓝工程,2014
l 江苏省特聘教授(重点支持,5/50),2012
B. 科研
1. 研究领域:稀土化学与功能材料
关键词:稀土,缺陷,发光,催化,能源
1) 稀土发光:上/下转换发光调控与应用,抗热猝发光,手性发光器件等
2) 功能材料:稀土固体电解质,稀土光/压/铁电材料,稀土陶瓷材料等
3) 固态化学:缺陷调控,带隙工程,非晶态结构,负热膨胀等
C. 科研成果
1. 代表性期刊论文: (Total: >180)
1) Fan, Z.; Wang, Y.; Leng, Z.; Gao, G.; Li, L.*; Huang, L.*; Li, G.* “Luminescence-Monitored Progressive Chemical Pressure Implementation Realized through Successive Y3+ and Mg2+ Doping into Ca10.5(PO4)7:Eu2+”, J. Am. Chem. Soc. 2024, 146(16), 11500-11506.
2) Wang, Y.; Rui, J.; Song, H.; Yuan, Z.; Huang, X.; Liu, J.; Zhou, J.; Li, C.; Wang, H.; Wu, S.; Chen, R.; Yang, M.; Gao, Q.; Xing, X.; Huang, L.* “Anti-Thermal Quenching Upconversion Luminescence via Suppressed Multiphonon Relaxation in Positive/Negative Thermal Expansion Core/Shell NaYF4:Yb/Ho@ScF3 Nanoparticles”, J. Am. Chem. Soc. 2024, 146(10), 6530-6535.
3) Wei, Y.; Pan, Y.; Zhou, E.; Yuan, Z.; Song, H.; Wang, Y.; Zhou, J.; Rui, J.; Xu, M.; Ning, L.; Liu, Z.; Wang, H.; Xie, X.*; Tang, X.; Su, H.*; Xing, X.; Huang, L.* “Frenkel Defect-modulated Anti-Thermal Quenching Luminescence in Lanthanide-doped Sc2(WO4)3”, Angew. Chem. Int. Ed. 2023, 62(27), e202303482.
4) Cheng, X.; Zhou, J.; Yue, J.; Wei, Y.; Gao, C.; Xie, X.*; Huang, L.* “Recent Development in Sensitizers for Lanthanide-Doped Upconversion Luminescence”, Chem. Rev. 2022, 122(21), 15998-16050 (invited review).
5) Chen, L.; Chen, X.; Ma, R.; Lin, K.; Li, Q.; Lang, J.-P.*; Liu, C.; Kato, K.; Huang, L.*; Xing, X.* “Thermal Enhancement of Luminescence for Negative Thermal Expansion in Molecular Materials”, J. Am. Chem. Soc. 2022, 144(30), 13688-13695.
6) Han, Y.; Gao, C.; Wei, T.; Zhang, K.; Jiang, Z.; Zhou, J.; Xu, M.; Yin, L.; Song, F.*; Huang, L.* “Modulating the Rise and Decay Dynamics of Upconversion Luminescence through Controlling Excitation”, Angew. Chem. Int. Ed. 2022, 61(45), e202212089.
7) Zhou, J.; Wei, Y.; Pan, Y.; Wang, Y.; Yuan, Z.; Zhang, F.; Su, H.; Xie, X.*; Huang, L.* “From Nanoparticles to Nanoclusters: A Luminescent View of the Clickable Assembly”, Nat. Commun. 2021, 12(5), 2948.
8) Li, H.; Liu, X.; Ying, Q.; Wang, C.; Jia, W.; Xing, X.; Yin, L.; Lu, Z.*; Pan, Y.; Shi, Z.; Huang, L.*; Jia, D.* “Self-Assembly of Perovskite CsPbBr3 Quantum Dots Driven by Photo-Induced Alkynyl Homocoupling Reaction”, Angew. Chem. Int. Ed. 2020, 59(29), 17207-17213.
9) Ge, H.; Wang, D.; Pan, Y.; Guo, Y.; Li, H.; Zhang, F.; Zhu, X.; Li, Y.; Zhang, C.*; Huang, L.* “Sequence-Dependent DNA Functionalization of Upconversion Nanoparticles and Their Programmable Assemblies”, Angew. Chem. Int. Ed. 2020, 59, 8133-8137.
10) Tian, D.; Li, F.; Ma, H.; Chen, R.; Shen, Z.*; Liu, Z.*; Huang, L.* “Domino-Like Multi-Emissions across Red and Near Infra-Red from Solid-State 2-/2,6-Aryl Substituted BODIPY Dyes”, Nat. Commun. 2018, 9(7), 2688.