彭新文
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资料介绍
个人简历
2012年于华南理工大学获得博士学位并留校任教;2012-2014年讲师;2014-2017年任副教授、硕士生导师;2017-至今任教授,博士生导师;2016-2018年于新加坡国立大学化学系从事博士后/访问合作研究。研究领域
"""""(1)绿色化学:基于生物质组分物理、化学结构调控的绿色溶剂体系构建与绿色催化材料与技术\r(2)二维材料:基于碳材料、过渡金属碳/氮/硫族化合物二维纳米形态控制技术控制及其在生物质化学品催化转化、单原子与电催化反应及机理研究\r(3)生物质基新能源材料构建技术研究及其在电催化及燃料电池、超电、锂电池、锌空电池等能源储能材料领域应用\r(4)生物质基高分子材料与低维材料:基于绿色过程的生物质碳量子点、薄膜、凝胶/支架材料的物化结构调控及其纳米杂化材料在有机合成、光电催化、智能传感、生物成像领域的应用"近期论文
Jiliang Ma, Linxin Zhong, Xinwen Peng*, Runcang Sun. D-xylonic acid: a solvent and an effective biocatalyst for a three-component reaction. Green Chemistry. 2016, 18, 1738-1750,发表日期: 2015.10.30\r\rXuefei Cao, Linxin Zhong, Xinwen Peng*, Shaoni Sun, Shouming Li, Shijie Liu, Runcang Sun. Comparative study of the pyrolysis of lignocellulose and its major components: characterization and overall distribution of their biochars and volatiles. Bioresource Technology. 2014, 155(0): 21-27\r\rXinwen Peng, Junli Ren*, Linxin Zhong, Runcang Sun*. Nanocomposite films based on xylan-rich hemicelluloses and cellulose nanofibers with enhanced mechanical properties. Biomacromolecules. 2011, 12(9): 3321-3329\r\rXinwen Peng, Junli Ren*, Runcang Sun*. Homogeneous esterification of xylan-rich hemicelluloses with maleic anhydride in ionic liquid. Biomacromolecules. 2010, 11(12): 3519-3524, .\r\rXinwen Peng, Linxin Zhong, Junli Ren*, Runcang Sun. Highly effective adsorption of heavy metal ions from aqueous solutions by macroporous xylan-rich hemicelluloses-based hydrogel. Journal of Agricultural and Food Chemistry. 2012, 60(15): 3909-3916\r\rQingzhong Liu, Shuangshuang Jing, Sha Wang, Hao Zhuo, Linxin Zhong*, Xinwen Peng* and Runcang Sun*. Flexible nanocomposites with ultrahigh specific areal capacitance and tunable properties based on a cellulose derived nanofiber-carbon sheet framework coated with polyaniline. Journal of Materials Chemistry A. Journal of Materials Chemistry A. 2016,4, 13352-13362\r\rSha Wang, Xinwen Peng#, Linxin Zhong*, Jiewen Tan, Shuangshuang Jing, Xuefei Cao, Wei Chen, Chuanfu Liu, Runcang Sun*. An ultralight, elastic, cost-effective, and highly recyclable superabsorbent from microfibrillated cellulose fibers for oil spillage cleanup. Journal of Materials Chemistry A. 2015, 3(16): 8772-8781\r\rWei Chen, Linxin Zhong, Xinwen Peng*, Runcang Sun*, Fachuang Lu. Chemical fixation of carbon dioxide using a green and efficient catalytic system based on sugarcane bagasse-an agricultural waste. ACS Sustainable Chemistry and Engineering. 2015, 3(1): 147-152\r\rWei Chen, Linxin Zhong, Xinwen Peng*, Kun Wang, Zhifeng Chen, Runcang Sun*. Xylan-type hemicellulose supported palladium nanoparticles: a highly efficient and reusable catalyst for the carbon-carbon coupling reactions. Catalysis Science and Technology. 2014, 4(5): 1426-1435 相关热点
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