高粱,男,1984年11月生,廣東工業大學副教授。
2008年7月畢業於武漢大學電子科學與技術專業,2011年9月獲得復旦大學材料物理與化學工學碩士,2015年7月獲得香港大學化學、哲學博士。
高粱主要研究領域為智慧型回響性水凝膠、軟物質力學、導電(離子)型聚合物材料。
基本介紹
- 中文名:高粱
- 出生日期:1984年11月
- 畢業院校:武漢大學、復旦大學、香港大學
- 學位/學歷:博士
人物經歷
主要成就
科研成就
- S. Wang, S. J. Li, L. Gao, * Dispersed Association of Single-Component Short-Alkyl Chains towards Thermally-Programmable and Malleable Multiple Shape Hydrogel, ACS Appl. Mater. Inter. 2019, 10.1021/acsami.9b16205.
- L. Gao,* K. Y. Chan, * C. Y. Li, L. Xie and J.F. Olorunyomi, Highly Selective Transport of Alkali Metal Ions by Nanochannels of Polyelectrolyte Threaded MIL-53 Metal Organic Framework, Nano. Lett. 2019, 19, 8, 4990-4996.
- S. Wang, M. Liu, L. Gao,* G. Guo and Y. Huo,* Optimized Association of Short Alkyl Side Chains Enables Stiff, Self-Recoverable, and Durable Shape-Memory Hydrogel, ACS Appl. Mater. Inter. 2019 11 19554-19564.
- G. Guo, Y. Chen, X. Liu, D. Y. Zhu, B. Zhang, N. Lin and L. Gao,* Tough and Durable Hydrogels with Robust Skin Layers Formed via a Soaking Treatment, J. Mater. Chem. B, 2018, 6, 8043-8054. (Selected as front cover)
- Jinhao Zhao, Jin-Hao Zhao, Yong Yang, Jin-Xin Che, Jun Zuo, Xiao-Hua Li, Yong Zhou Hu, Xiao-Wu Dong, * L. Gao,* Xin-Yuan Liu*, Chem. Eur. J., 2018, https://doi.org/10.1002/chem.201801416.
- Shuting Wang, Guoqiang Guo, Xiaoxuan Lu, Shaomin Ji, Guoxin Tan, and L. Gao* Facile Soaking Strategy Toward Simultaneously Enhanced Conductivity and Toughness of Self-Healing Composite Hydrogels Through Constructing Multiple Noncovalent Interactions ACS Appl. Mater. Inter., 2018, 10 (22), pp 19133–19142
- Mengjuan Liu, Xiaoxuan Lu, L. Gao, * Y.P. Huo* and Zhe-Ning Chen* Polyvinyl Alcohol-Based Thermogel with Tunable Gelation and Self-Healing Property, Macro. Phys. Chem. 2018, 219(14):1800162.
- Tengfei Kong, Guoqiang Guo, Huangtang Zhang, L. Gao*, Post-synthetic modification of polyvinyl alcohol with a series of N-alkyl-substituted carbamates towards thermo and CO2-responsive polymers, Polym. Chem., 2017,8, 5769-5779.
- L. Gao*, Guoqiang Guo. Xie,Liangxu, Kong, Tengfei; Pan, Jiageng; Tang,zheguo; Huo, Yanping Multi-responsive, bidirectional, and large deformation bending actuators based on borax cross-linked polyvinyl alcohol derivative hydrogel,2017, RSC Adv. 7, 40005-40014.
- Tengfei Kong, Guoqiang Guo, Jiageng Pan, L. Gao* and Yanping Huo, Polystyrene Sulfonate threaded in MIL-101Cr as Efficient and Stable Catalysts, Dalton Trans., 2016, 45, 18084-18088.
- L. Gao,* T. Kong, Y. Huo,* Dual Thermoresponsive and pH-Responsive Poly(vinyl alcohol) Derivatives: Synthesis, Phase Transition Study, and Functional Applications,Macromolecule, 2016, 49 (19), 7478–7489.
- L. Gao,* T. Kong, G. Guo, Y. Huo,* Proton conductive and low methanol permeable PVA-based zwitterionic membranes, Int. J. Hydro. Energy. 2016, 2016, 41, 44, 20373–2038.
- Chunzhen Yang*, Ming Zhou, Ming Zhang, L. Gao*. Mitigating the Degradation of Carbon-Supported Pt Electrocatalysts by Tungsten Oxide Nanoplates. Electrochimica Acta, 2016, 188, 529–536.
- L. Gao, Chi-Ying Vanessa Li* and Kwong-Yu Chan*. Polystyrene Sulfonate threaded in MIL-101Cr(III): a Cationic Polyelectrolyte Synthesized Directly into a Metal-Organic Framework. Chem. Mater. 2015, 27(10), 3601–3608.
- L. Gao, Chi-Ying Vanessa Li*, Kwong-Yu Chan* and Zhe-ning Chen. Metal–Organic Framework Treaded with Aminated Polymer Formed in Situ for Fast and Reversible Ion Exchange. J. Am. Chem. Soc. 2014, 136(20), 7209–7212.
- L. Gao, Chi-Ying Vanessa Li, Hoi Yung and Kwong-Yu Chan*. A Functionalized MIL-101(Cr) Metal–Organic Framework for Enhanced Hydrogen Release from Ammonia Borane at Low Temperature.Chem. Commun., 2013, 49(90), 10629-31.
- L. Gao, Haocheng Fang, Zhenhua Li, Xuebin Yu*, and Kangnian Fan, Liquefaction of Solid-State BH3NH3 by Gaseous NH3, Inorg. Chem., 2011, 50 (10), 4301–4306.
- L. Gao, Yan Hui Guo, Qian Li and Xuebin Yu* The Comparison in Dehydrogenation Properties and Mechanism between MgCl2(NH3)/LiBH4 and MgCl2(NH3)/NaBH4 Systems, J. Phys. Chem. C 2010, 114, 9534–9540.
- L. Gao, Yan Hui Guo, Guang Lin Xia and Xue Bin Yu* Low temperature hydrogen generation from ammonia combined with lithium borohydride, J. Mater. Chem., 2009, 19, 7826–7829

