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锂离子电池电解质材料性质的理论与实验研究;储能器件电极/电解质界面设计和性质研究。

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Lidan Xing,Jenel Vatamanu, Oleg Borodin, Dmitry Bedrova, On the Atomistic Nature of Capacitance Enhancement Generated by Ionic Liquid Electrolyte Confined in Subnanometer Pores[J]. J. Phys. Chem. Lett. 4: 132-140, 2013. Lidan Xing,Jenel Vatamanu, Dmitry Bedrova, Grant D Smith, Nanopatterning of electrode surfaces as a route to improved energy storage in electrostatic capacitors[J]. J. Phys. Chem. Lett. 3: 1124-1129, 2012. Lidan Xing, Jenel Vatamanu, Dmitry Bedrova, Oleg Borodin, Grant D Smith, Electrode/ Electrolyte Interface in Sulfolane-Based Electrolytes for Li Ion Batteries: A Molecular Dynamics Simulation Study[J]. J. Phys. Chem. C. 116:23871-23881, 2012. Lidan Xing,Oleg Borodin, Oxidation induced decomposition of ethylene carbonate from DFT calculations - importance of explicitly treating surrounding solvent [J]. Phys. Chem. Chem. Phys. 14:12838-12843, 2012. Lidan Xing, Weishan Li, Mengqing Xu, Tiantian Li, Liu Zhou, The reductive mechanism of ethylene sulfite as solid electrolyte interface film forming additive for lithium ion battery[J]. J. Power Sources,196: 7044-7047, 2011. Lidan Xing,Oleg Borodin, Grant Smith, Weishan, Li, A Density Function Theory Study of the Role of Anions on the Oxidative Decomposition Reaction of Propylene Carbonate[J] J. Phys. Chem. A. 115: 13896-13905, 2011. Lidan Xing, Chaoyang Wang, Weishan Li, Mengqing Xu, Xuliang Meng, Shaofei Zhao, Theoretical insight into oxidative decomposition of propylene carbonate in the lithium ion battery[J]. J. Phys. Chem. B. 113(15):5181-5187, 2009. Lidan Xing, Chaoyang Wang, Mengqing Xu, Weishan Li, Zongping Cai, Theoretical study on reduction mechanism of 1,3-benzodioxol-2-one for the formation of solid electrolyte interface on anode of lithium ion battery[J]. J. Power Sources, 189: 689-692, 2009. Lidan Xing, Weishan Li, Chaoyang Wang, Mengqing Xu, Chunlin Tan, Jin Yi, Theoretical investigations on oxidative stability of solvents and oxidative decomposition mechanism of ethylene carbonate for lithium-ion battery use. [J] J. Phys. Chem. B. 113(52):16596-16602, 2009. Tiantian Li, Lidan Xing, Weishan Li, Yating Wang, Mengqing Xu, Fenglong Gu, Shejun Hu, How does lithium salt anion affect oxidation decomposition reaction of ethylene carbonate: A density functional theory study[J], J. Power Sources, in press, 2013. Tiantian Li, CaoYang Wang, Lidan Xing, Weishan Li, Bin Peng, Mengqing Xu, Fenglong Gu, Shejun Hu, Reaction Mechanism of 1,4-Dimethoxy Benzene as an Overcharge Protection Additive, Acta Phys.-Chim. Sin. 28: 818-822, 2012. Tiantian Li, Lidan Xing, Weishan Li, Bin Peng, Mengqing Xu, Fenglong Gu, Shejun Hu, Theoretic calculation for understanding oxidation process of 1,4-dimethoxy benzene based compounds as redox shuttles for overcharge protection of lithium ion battery, J. Phys. Chem. A,115: 4988-4994, 2011. Mengqing Xu, Liu Zhou, Lianshen Hao, Lidan Xing, Weishan Li, Brett Lucht, Investigation and Application of Lithium Difluoro(oxalate)borate (LiDFOB) as Additive to Improve the Thermal Stability of Electrolyte for Lithium Ion Batteries, J. Power Sources, 169:6794-6801, 2011. Mengqing Xu, Lianshen Hao, Yanlin Liu, Lidan Xing, Weishan Li, Bin Li, Experimental and Theoretical Investigations of Dimethyl Acetamide (DMAc) as Electrolyte Stabilizing Additive for Lithium Ion Batteries, J. Phys. Chem. C. 115:6085-6094, 2011. Mengqing Xu, Liu Zhou, Lidan Xing, Weishan Li, Brett Lucht, Experimental and Theoretical Investigations on 4,5-Dimethyl-[1,3] dioxol-2-one as Solid Electrolyte Interface Forming Additive for Lithium-ion Batteries, Electrochim. Acta, 55:6743-6748, 2010. Lu Yue, Weishan Li, Lingzhi Zhao, Lidan Xing, Fengqiang Sun, Highly hydroxylated carbon fibres as electrode materials of all-vanadium redox flow battery, Carbon, 48: 3079-3090, 2010. Zongping Cai, Ying Liang, Weishan Li, Lidan Xing, Youhao Liao, Preparation and performances of LiFePO4 cathode in aqueous solvent with polyacrylic acid as a binder, J. Power Sources, 189:547-551, 2009.

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