职务/职称:讲师
研究领域:有机光电半导体材料设计与计算,机器学习
邮箱:zzulihx@outlook.com
教育及工作经历:
2022.10-至今: 郑州大学,河南省大数据研究院,讲师
2017.9 - 2021.12:索邦大学,材料物理与化学,博士
2019.2 - 2019.3: 日本九州大学, OPERA 交流学习
2015.9 - 2017.7: 郑州大学,化学,硕士
2011.9 - 2015.7: 郑州大学,物理化学,学士
科研项目:
国家自然科学基金青年基金项目(No. 21601158):精氨酸的能量转移型复合纳米近红外比率荧光探针及其生物成像,结题,参与
国家自然科学基金青年基金项目(No. U1504203):能量转移型肼的上转换纳米复合比率荧光探针的制备及荧光成像,结题,参与
国家留学基金(留金发 [2017] 3109):基于哒嗪的有机光电二级管与有机激光二级管材料的色设计合成与表征,结题,主持
代表著作:
[1] Li, H. X.; A. Hamja; S. Forget; C. Adachi; L. Sosa-vargas; F. Mathevet; D. Kreher (2022). "Donor–Acceptor Type Pendant Conjugated Molecules Based on a Azine Center with tunable Intramolecular Charge Transfer Characteristics as Gain Media for Organic Semiconductor Lasers." In preparation
[2] Li, H. X.; Ye, H.; J.-C. Ribierre; C. Adachi; L. Sosa-vargas; F. Mathevet; D. Kreher (2022). " New TADF emitters based on pyridazine for OLEDs applications." In preparation
[3] Li, H. X.; Dong, H.; Yu, M. M.; Liu, C. X.; Li, Z. X.; Wei, L. H.; Sun, L. D.; Zhang, H. Y., NIR Ratiometric Luminescence Detection of pH Fluctuation in Living Cells with Hemicyanine Derivative-Assembled Upconversion Nanophosphors. Anal Chem 2017, 89 (17), 8863-8869.
[4] Li, Z. X.; Li, H. X.; Shi, C. X.; Zhang, W. Y.; Zhou, W.; Wei, L. H.; Yu, M. M., Naked-eye-based highly selective sensing of Fe3+ and further for PPi with nano copolymer film. Sensors and Actuators B-Chemical 2016, 226, 127-134.
[5] Li, Z. X.; Li, H. X.; Shi, C. X.; Yu, M. M.; Wei, L. H.; Ni, Z. H., Nanomolar colorimetric quantitative detection of Fe3+ and PPi with high selectivity. Spectrochimica Acta Part a-Molecular and Biomolecular Spectroscopy 2016, 159, 249-253.
专利:
[1] Cyclophanes as agents for discriminating between neutrons and gamma rays in a plastics scintillator. 2020.05
[2] 一种甲醛快速检测试剂及其制备方法与应用,2016.11
[3] 一种检测精氨酸的上转换发光纳米传感材料及在精氨酸检测中的应用,2019.07
[4] 一种用于制备近红外比率发光上转换纳米材料的化合物、制备方法及应用,2019.03
[5] 一种溶酶体定位荧光探针在近红外比率检测肼中的应用,2019.07
[6] 一种溶酶体定位荧光探针、制备方法及在近红外比率检测精氨酸中的应用,2019.03
学术交流:
New TADF emitters based on pyridazine for OLEDs applications,ICSM 2021 VIRTUAL, 2021.06.16-2021.06.17;
New thermally activated delayed fluorescent emitters based on pyridazine for organic light-emitting diodes applications, RSC Poster Twitter conference, 2021.03.02-2021.03.03