個人經歷
教育經歷:
2003/09 - 2007/06,吉林大學,物理化學,博士
2000/09 - 2003/06,
東北師範大學,物理化學,碩士
1996/09 - 2000/07,東北師範大學,化學教育,學士
工作經歷:
2011/12 - ,東北師範大學,化學學院,副教授
2006/07 - 2011/11,東北師範大學,化學學院,講師
2001/07 - 2006/06,東北師範大學,化學學院,助教
研究方向
學術成果
教學論文:
2019:
邢雙喜*,王一鳴,物理化學教材中表格數據的深度分析與教學實踐-以電解質溶液一章為例,大學化學,2019,34(2),65-69.
2016:
邢雙喜,孫文東*,從熵的角度解讀凝固點降低公式,大學化學,2016,31(12),83-85.
科研論文:
2020:
1. Jinrui Guo, Yue Yu, Jicheng Ma, Tingting Zhang, Shuangxi Xing*, Facile route to achieve N, S-codoped carbon as bifunctional electrocatalyst for oxygen reduction and evolution reactions, J. Alloy. Compd., 2020, 821, 153484.(IF: 4.175)
2. Mingjun Ji, Bing He, Yue Yu, Xiaodan Yu, Shuangxi Xing*, CeO2 encapsulated by iron, sulfur, and nitrogen-doped carbons for enhanced oxygen reduction reaction catalytic activity, ChemElectroChem, 2020, 7, 642–648.(IF: 3.975)
3. Usman Ali, Yue Yu, Jinrui Guo, Yuqi Liu, Zhongcheng Mu, Shuangxi Xing*, Facile route to achieve Co Mo2C encapsulated by N-doped carbon as efficient electrocatalysts for overall water splitting in alkaline media, J. Electrochem. Soc., 2020, 167, 044520. (IF: 3.120)
2019:
1. Liang Zhang, Xinyue Wang, Tingting Zhang, Chengzhan Liu, Dehua Li, Shuangxi Xing*, Achieving Janus Ag N-doped carbon for oxygen reduction reaction from eccentric encapsulated Ag polypyrrole, J. Alloy. Compd., 2019, 785, 491-498.(IF: 4.175)
2. Guodong Zhang, Yanhong Shi, Hongru Wang, Lingling Jiang, Xiaodan Yu, Shengyu Jing**, Shuangxi Xing*, Panagiotis Tsiakaras***, A facile route to achieve ultrafine Fe2O3 nanorods anchored on graphene oxide for application in lithium-ion battery, J. Power Sources, 2019, 416, 118-124.(IF: 7.467)
3. Tingting Zhang, Liang Zhang, Xianchun Liu, Zhongcheng Mu, Shuangxi Xing*, Achieving nitrogen-doped carbon/MnO2 nanocomposites for catalyzing the oxygen reduction reaction, Dalton Transactions, 2019, 48, 3045-3051. (IF: 4.052)
4. Yue Yu, Xiaolei Peng, Usman Ali, Xianchun Liu, Yan Xing**, Shuangxi Xing*, Facile route to achieve bifunctional electrocatalysts for oxygen reduction and evolution reactions derived from CeO2 encapsulated by the zeolitic imidazolate framework-67, Inorg. Chem. Front., 2019, 6, 3255-3263. (IF: 5.934)
5. Lingling Jiang, Guodong Zhang, Dehua Li, Chengzhan Liu, Shuangxi Xing*, One-pot achievement of MnO2/Fe2O3 nanocomposites for the oxygen reduction reaction with enhanced catalytic activity, New J. Chem.,2019, 43, 16870-16875. (IF: 3.069)
2018:
1. Yue Yu, Bowen He, Yujia Liao, Xiaodan Yu, Zhongcheng Mu, Yan Xing*, Shuangxi Xing*, Preparation of hollow CeO2/CePO4 with nitrogen and phosphorus co-doped carbon shells for enhanced oxygen reduction reaction catalytic activity, ChemElectroChem, 2018, 5, 793-798. (IF: 3.975)
2. Hongru Wang, Yue Yu, Jiatong Wei, Xiaodan Yu, Gang Chen, Jicheng Ma*, Shuangxi Xing*, Mo0.42C0.58 nanoparticles embedded in nitrogen-doped carbon as electrocatalyst towards oxygen reduction reaction, ChemistrySelect, 2018, 3, 5106-5112. (IF: 1.716)
2017:
1. Yue Yu, Li Gao, Xianchun Liu, Yuanhong Wang, Shuangxi Xing*, Enhancing the catalytic activity of zeolitic imidazolate framework-8-derived N-doped carbon with incorporated CeO2 nanoparticles in the oxygen reduction reaction, Chem. Eur. J., 2017, 23, 10690-10697. (IF: 5.160)
2. Yuhua Feng, Yawen Wang, Xiaohui Song, Shuangxi Xing* and Hongyu Chen*, Depletion sphere: Explaining the number of Ag islands on Au nanoparticles,Chem. Sci., 2017, 8, 430-436. (IF: 9.063)
3. Shuangxi Xing*, Xiaodan Yu, Guibao Wang, Yue Yu, Yuanhong Wang, Yan Xing*, Confined polyaniline derived mesoporous carbon for oxygen reduction reaction, Eur. Polym. J., 2017, 88, 1-8. (IF: 3.741)
4. Shuangxi Xing, Lin Chen, Lei Huang, Tian Wang, Xiaodan Yu, Yuxin Zhang*, Yan Xing*, One-step synthesis of hollow nanostructured aniline oligomers and their derived nitrogen doped carbon, Synth. Met., 2017, 227, 170-176. (IF: 2.526)
5. Liang Zhang, Xianchun Liu*, Yuanhong Wang, Shuangxi Xing*, Controllable silver embedding into polypyrrole, J. Alloy. Compd.,2017, 709, 30, 431-437. (IF: 3.779)
6. Guodong Zhang, Xianchun Liu, Yuanhong Wang, Chengzhan Liu, Shuangxi Xing*, Achieving MnO2 nanosheets through surface redox reaction on nickel nanochains for catalysis and energy storage, Chem. Eur. J., 2017, 23 (23), 5557–5564. (IF: 5.160)
7. Liang Zhang, Xianchun Liu, Yuanhong Wang, Gang Chen, Shuangxi Xing*, Dual role of polyaniline for achieving Ag dendrites and enhancing its oxygen reduction reaction catalytic activity, ChemistrySelect, 2017, 2 (31), 10300-10303. (IF: 1.505)
2016:
1. Li Gao, Linlin Zhang, Shuyan Jia, Xianchun Liu, Yuanhong Wang, Shuangxi Xing*, Facile route to achieve hierarchical hollow MnO2 nanostructures, Electrochim. Acta, 2016, 203, 59-65. (IF: 4.803)
2. Lin Chen, Huibo Wang, Chenzhan Liu, Xianchun Liu*, Shuangxi Xing*, One-pot achieving well-dispersed copper nanoparticles on N-doped carbon films, J. Alloy. Compd., 2016, 656, 622-627. (IF: 3.014)
3. Tian Wang, Qiujian Le, Guodong Zhang, Shijin Zhu, Bo Guan, Junming Zhang, Shuangxi Xing*, Yuxin Zhang*, Facile preparation and sulfidation analysis for activated multiporous carbon NiCo2S4 nanostructure with enhanced supercapacitive properties,Electrochim. Acta, 2016, 211, 627-635. (IF: 4.803)
2015:
1. Lin Chen, Minling Fang, Chenzhan Liu, Xianchun Liu*, Shuangxi Xing*, Manipulating the nickel shape and catalytic performance: from spheres to chains to urchins, CrystEngComm, 2015, 17, 4343-4348. (IF: 4.034)
2. Dehua Li, Alexis Munyentwali, Guang Wang*, Meiduo Zhang, Shuangxi Xing*, Dyes Pigments, 2015, 117, 92-99. (IF: 3.966)
3. Xiaoguang Qiao, Xianchun Liu, Xiaoting Li, Shuangxi Xing*, Anchoring gold nanoparticles inside polyaniline shells with magnetic cores for the enhancement of catalytic stability, New J. Chem., 2015, 39, 8588-8593. (IF: 3.086)
4. Xiaoting Li, Xianchun Liu, Xiaoguang Qiao, Shuangxi Xing*, Confining the polymerization of aniline to generate yolk–shell polyaniline SiO2 nanostructures, RSC Adv., 2015, 5, 79172-79177. (IF: 3.84)
2014:
1. Lulu Chen, Lu Li, Tingting Wang, Lingyu Zhang, Shuangxi Xing*, Chungang Wang*, Zhongmin Su, A novel strategy to fabricate multifunctional Fe3O4 C TiO2 yolk–shell structures as magnetically recyclable photocatalysts, Nanoscale, 2014, 6, 6603-6608. (IF: 7.394)
2. Juan Li, Jian Yan, Chenzhan Liu, Lihong Dong, Hui Lv, Wendong Sun*, Shuangxi Xing*, Manipulation on ZnO heterostructures: from binary ZnO–Ag to ternary ZnO–Ag–polypyrrole, CrystEngComm, 2014, 16, 10943-10948. (IF: 4.034)
3. Sa Lv, Chungang Wang*, Shuangxi Xing*, Hexamethylenetetramine-induced synthesis of hierarchical NiO nanostructures on nickel foam and their electrochemical properties, J. Alloy. Compd., 2014, 603, 190-196. (IF: 2.999)
4. Lei Huang, Xiaodan Yu, Li Gao, Lin Chen, Jiatong Wei, Shuangxi Xing*, Facile synthesis of raspberry-like aniline oligomers with excellent adsorption–desorption properties, New. J. Chem., 2014, 38, 3029-3034. (IF: 3.086)
5. Dehua Li, Meiduo Zhang, Guang Wang*, Shuangxi Xing*, Toward modulation of the naphthopyran photochromism: a miniemulsion copolymerization strategy, New. J. Chem., 2014, 38, 2348-2353. (IF: 3.086)
2013:
1. Jiatong Wei, Guozhong Xing, Li Gao, Hui Suo, Xinping He, Chun Zhao, Sean Li and Shuangxi Xing*, Nickel foam based polypyrrole/Ag composites film: a new route toward stable electrode for supercapacitors, New J. Chem., 2013, 37, 337-341. (IF: 3.086)
2012:
1. Jiao Guo, Jianfang Ma*, Junjie Li, Jin Yang, and Shuangxi Xing*, Unusual 2D → 3D Polycatenane Frameworks Based on 1D → 2D Interdigitated Layers: From Single Crystals to Submicrometer Fibers with Enhanced UV Photocatalytic Degradation Performances, Cryst. Growth Des., 2012, 12, 6074–6082. (IF: 4.891)
2. Li Gao, Sa Lv, Shuangxi Xing*, Facile route to achieve silver polyaniline nanofibers, Synthetic Met., 2012, 162, 948-952. (IF: 2.252)
3. Sa Lv, Hui Suo, Jinming Wang, Yan Wang, Chun Zhao, Shuangxi Xing*, Facile synthesis of nanostructured Ni(OH)2 on nickel foam and its electrochemical property, Colloid. Surface. A, 2012, 396, 292-298. (IF: 2.752)
4. Xiaobin Xu, Xianchun Liu, Qun Yu, Wei Wang, Shuangxi Xing*, Architecture-adapted raspberry-like gold polyaniline particles: facile synthesis and catalytic activity, Colloid Polymer Sci., 2012, 290, 1759-1764. (IF: 1.865)
5. Wei Wang, Yujia Pang, Jian Yan, Guibao Wang, Hui Suo, Chun Zhao, Shuangxi Xing*, Facile synthesis of hollow urchin-like gold nanoparticles and their catalytic activity, Gold Bull., 2012, 45, 91-98. (IF: 1.59)
2011:
1. Shuangxi Xing*, Jiating He, Xianchun Liu, Hongyu Chen, A symmetry-adapted shell transformation of core-shell nanoparticles for binary nanoassembly, Chem. Commun., 2011, 47, 12533 - 12535. (IF: 6.834)
2010:
1. Shuangxi Xing, Yuhua Feng, Yee Yan Tay, Tao Chen, Jun Xu, Ming Pan, Jiating He, Huey Hoon Hng, Qingyu Yan, Hongyu Chen*, Reducing the Symmetry of Bimetallic Au Ag Nanoparticles by Exploiting Eccentric Polymer Shells, J. Am. Chem. Soc., 2010, 132, 9537–9539. (IF: 12.113)
2009:
1. Shuangxi Xing, Li Huey Tan, Miaoxin Yang, Ming Pan, Yunbo Lv, Qinghu Tang, Yanhui Yang and Hongyu Chen*, Highly Controlled Core/Shell Structures: Tunable Conductive Polymer Shells on Gold Nanoparticles and Nanochains, J. Mater. Chem., 2009, 19, 3286-3291. (IF: 7.443)
2. Shuangxi Xing, Li Huey Tan, Tao Chen, Yanhui Yang and Hongyu Chen*, Facile fabrication of triple-layer (Au Ag) polypyrrole core-shell and (Au H2O) polypyrrole yolk-shell nanostructures, Chem. Commun., 2009, 1653-1654. (IF: 6.834)
2008:
1. Shuangxi Xing*, Hongwei Zheng, Guoku Zhao, Preparation of polyaniline nanofibers via a novel interfacial polymerization method, Synthetic Met., 2008, 158, 59-63. (IF: 2.252)