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2020年江苏师范大学材料科学与工程专业考研调剂信息

  学校:     江苏师范大学

  专业:     理学->化学

  理学->材料科学与工程

  年级:     2020

  招生人数:     2

  招生状态:     正在招生中

  补充内容

  学校:江苏师范大学 化学与材料科学学院

  专业:化学、材料

  方向:计算模拟,材料设计,锂电池,电催化

  Email:582528392@qq.com

  本课题组招收2020届硕士研究生及调剂生

  导师简介:

  童敏曼,博士,副教授,硕士生导师,主要研究方向为基于材料基因组学的材料设计与合成包,包括计算机模拟材料设计、合成,应用方向有气体分离、锂电池和催化等。目前承担科研项目若干,实验室研究氛围浓厚。拟招收硕士生2名,为被录取的硕士提供研究经费及助研费,进组后,研究生可自由选择做计算模拟或实验, 欢迎各位同学加入!

  近几年部分研究成果成果如下:

  1.        Youshi Lan, Tongan Yan, Minman Tong*, and Chongli Zhong*. Large-scale computational assembly of ionic liquid/MOF composites: synergistic effect in the wire-tube conformation for efficient CO2/CH4 separation. Journal of Materials Chemistry A, 2019, 7, 12556–12564.

  2.        Minman Tong*, Yadong Zhang, Tongan Yan, Guojian Chen*, Zhouyang Long*, Zhenglong Qin, Qingyuan Yang, Chongli Zhong. Computational Insights on the Role of Nanochannel Environment in the CO2/CH4 and H2/CH4 Separation Using Restacked Covalent Organic Framework Membranes. J. Phys. Chem. C, 2019, 123, 22949-22958.

  3.        Tongan Yan, Youshi Lan, Minman Tong*, and Chongli Zhong*. Screening and Design of Covalent Organic Framework Membranes for CO2/CH4 Separation. ACS Sustainable Chemistry & Engineering, 2019, 7, 1220-1227.

  4.        Youshi Lan#, Xiagnhao Han#, Minman Tong#, Hongliang Huang, Qingyuan Yang*, Dahuan Liu, Xin Zhao* and Chongli Zhong *. Materials Genomics Methods for High-Throughput Construction of COFs and Targeted Synthesis. Nature Communications,  2018, 9, 5274. (Co-first author)

  5.        Minman Tong, Youshi Lan, Zhenglong Qin*, and Chongli Zhong*. Computation-Ready, Experimental Covalent Organic Framework for Methane Delivery: Screening and Material Design. The Journal of Physical Chemistry C, 2018, 122, 13009-13016.

  6.        Minman Tong, Youshi Lan, Qingyuan Yang*, and Chongli Zhong. Exploring the Structure-Property Relationships of Covalent Organic Frameworks for Noble Gas Separations. Chemical Engineering Science, 2017, 168, 456-464.

  7.        Minman Tong, Youshi Lan, Qingyuan Yang* and Chongli Zhong.  High-Throughput Computational Screening and Design of Nanoporous Materials for Methane Storage and Carbon Dioxide Capture. Green Energy & Environment 2018, 3, 107-119.

  8.        Youshi Lan, Minman Tong*, Qingyuan Yang*, and Chongli Zhong. Computational Screening of Covalent Organic Frameworks for the Capture of Radioactive Iodine and Methyl Iodide. CrystEngComm, 2017, 19, 4920-4926.

  9.        Minman Tong, Qingyuan Yang*, Qintian Ma, Dahuan Liu, and Chongli Zhong*. Few-Layered Ultrathin Covalent Organic Framework Membranes for Gas Separation: A Computational Study. Journal of Materials Chemistry A, 2016, 4, 124-131.

  10.        Minman Tong, Qingyuan Yang, and Chongli Zhong*. Computational Screening of Covalent Organic Frameworks for CH4/H2, CO2/H2 and CO2/CH4 Separations. Microporous and Mesoporous Materials, 2015, 210, 142-148.

  11.        Ahmed, Imteaz#, Minman Tong#, Jong Won Jun, Chongli Zhong* and Sung Hwa Jhung*. Adsorption of Nitrogen-Containing Compounds from Model Fuel over Sulfonated Metal–Organic Framework: Contribution of Hydrogen-Bonding and Acid–Base Interactions in Adsorption. The Journal of Physical Chemistry C, 2015, 120, 407-415.

  12.        Minman Tong, Qingyuan Yang *, Yuanlong Xiao and Chongli Zhong*. Revealing the Structure-Property Relationship of Covalent Organic Frameworks for CO2 Capture from Postcombustion Gas: A Multi-Scale Computational Study. Physical Chemistry Chemical Physics, 2014, 16, 15189

  13.        Minman Tong, Dahuan Liu*, Qingyuan Yang, Sabine Devautour-Vinot, Guillaume Maurin, and Chongli Zhong*. Influence of Framework Metal Ions on the Dye Capture Behavior of Mil-100 (Fe, Cr) MOF Type Solids. Journal of Materials Chemistry A, 2013, 1, 8534-8537.

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