论文著作:
1. Mengyao Wang, Yun Wei, Sheng Xu, Nana Jing, Huming Hao, Liangxuan Yang, Zhiqiang Wang,Guixin Wang*. Simultaneously Adjusting Deformation and Heat Using a Negative Thermal Expansion Material to Enhance Electrochemical Performance and Safety of Lithium-ion Batteries, Chemical Engineering Journal,2021, 425: 131434 (1-11).
2. Huming Hao, Sheng Xu, Nana Jing, Mengyao Wang, Zhiqiang Wang, Liangxuan Yang, Jianyue Chen, Guan Wang,Guixin Wang*. Negative Thermal Expansion Material: Promising for Improving Electrochemical Performance and Safety of Lithium-Ion Batteries, The Journal of Physical Chemistry Letters, 2021, 12, 6134−6142.
3.Qingshan Xie, Fanghui Lou, Xuejia Luo, Huming Hao, Mengyao Wang, Guan Wang, Jianyue Chen, Yuting Xie,Guixin Wang*. Enhanced electrochemical performance and safety of LiNi0.88Co0.1Al0.02O2by a negative thermal expansion material of orthorhombic Al2(WO4)3, ACS Applied Materials & Interfaces, 2022, 14, 23, 26882–26894.
4. Nana Jing, Sheng Xu, Zhiqiang Wang,Guixin Wang*.Enhanced Electrochemical Performance and Safety of Silicon by a Negative Thermal Expansion Material of ZrW2O8, ACS Applied Materials & Interfaces, 2021, 13, 30468−30478.
5.Zhiqiang Wang, Huming Hao, Xuejia Luo, Nana Jing, Mengyao Wang, Liangxuan Yang, Jianyue Chen, Guan Wang,Guixin Wang*. Decreasing deformation and heat as well as intensifying ionic transport of Si using a negative thermal expansion ceramic with high ionic conductivity, Industrial & Engineering Chemistry Research, 2022, 61 (23), 7926-7938.
6.Fanghui Lou, Qingshan Xie, Xuejia Luo, Yuting Xie, Mengyao Wang, Huming Hao, Zhiqiang Wang, Liangxuan Yang, Guan Wang, Jianyue Chen,Guixin Wang*. Preventing structural collapse and thermal runaway to improve electrochemical performance and safety of LiNi0.8Co0.1Mn0.1O2by a negative thermal expansion material of Al2(WO3)4, Industrial & Engineering Chemistry Research, 2022, 61, 4588−4600.
7. Liangxuan Yang, Jianyue Chen, Sheng Xu, Nana Jing, Huming Hao, Zhiqiang Wang, Mengyao Wang, Guan Wang,Guixin Wang*. Binder-free flexible 3D porous electrodes by combining microstructure and catalysis to enhance performance of lithium-oxygen batteries, Industrial & Engineering Chemistry Research, https://doi.org/10.1021/acs.iecr.1c02765
8.Huming Hao, Jianyue Chen, Zhiqiang Wang, Liangxuan Yang, Mengyao Wang, Guan Wang,Guixin Wang*. Combining Deformation, Heat and Ionic Conductivity to Improve Electrochemical Performance and Safety of Li-Ion Batteries under Extreme Conditions, The Journal of Physical Chemistry C, 2022, 126, 6, 2937–2945.
9. Sheng Xu, Nana Jing, Huming Hao, Mengyao Wang, Zhiqiang Wang, Liangxuan Yang, Guan Wang, Jianyue Chen,Guixin Wang*. Enhanced electrochemical performance of LiNi0.6Co0.2Mn0.2O2by a negative thermal expansion material at elevated temperature, Energy Technology, 2021, 2100183 (1⁓8).
10.Yun Wei, Chuanjiyue Zhou, Deqiang Zhao,Guixin Wang*.Enhanced electrochemical performance and safety of LiNi0.8Co0.15Al0.05O2by LiFePO4modification,Chemical Physics Letters, 2020, 751: 137480(1⁓13).
11. Yujia Peng, Zhenfeng Peng, Yang Qiu, Kangping Yan,Guixin Wang*. Improved performance of lithium-sulfur batteries at elevated temperature by porous aluminum,Journal of Energy Storage, 2020, 27: 101104 (1⁓11).
12.Wenjie Tang, Zhenfeng Peng, Yanli Shi, Sheng Xu, Hantao Shuai, Shuo Zhou, Yuan Kong, Kangping Yan, Tiecheng Lu,Guixin Wang*, Enhanced cyclability and safety performance of LiNi0.6Co0.2Mn0.2O2at elevated temperature by AlPO4modification,Journal of Alloys and Compounds, 2019, 810: 151834 (1⁓10).
13.Zhenfeng Peng, Wenjie Tang, Yujia Peng, Yang Qiu, Hantao Shuai,Guixin Wang*, Enhanced electrochemical performance of LiNi0.6Co0.2Mn0.2O2by expanded graphite,Energy Technology, 2019, 7: 1900614 (1⁓9).
14.Shuo Zhou,Guixin Wang*,Wenjie Tang, Yao Xiao, Kangping Yan, Enhanced rate performance and high potential as well as decreased strain of LiNi0.6Co0.2Mn0.2O2by facile fluorine modification, Electrochimica Acta, 2018, 261: 565-577.
15.Yao Xiao,Guixin Wang*, Shuo Zhou, Yuhan Sun, Qiang Zhao, Yichao Gong, Tiecheng Lu, Chunhui Luo, Kangping Yan, Enhanced electrochemical performance and decreased strain of graphite anode by Li2SiO3and Li2CO3co-modifying,Electrochimica Acta, 2017, 223: 8-20.
16.Guixin Wang, Hanchang Kang, Miao Chen, Kangping Yan, Xueshan Hu, Elton J. Cairns, Effects of solvents on the electrochemical performance of LiFePO4/C composite electrodes,ChemElectroChem, 2017, 4(2): 376-385.
17.Shuo Zhou,Guixin Wang*,Yao Xiao, Qian Li, Dongmin Yang, Kangping Yan, Influence of charge status on the stress safety properties of Li(Ni1/3Co1/3Mn1/3)O2cells,RSC Advances,2016, 6, 63378–63389.
18.Qiang Zhao,Guixin Wang*,Kangping Yan*, Jixin Yan, Jianzhong Wang, Binder-free porous PEDOT electrodes for flexible supercapacitors,Journal of Applied Polymer Science, 2015, 132, 42549 (9pp).
19.Qian Cui, Chunhui Luo, Gen Li,Guixin Wang, Kangping Yan, Environmentally Friendly Synthesis of LiFePO4Using Fe−P Waste Slag and Greenhouse Gas CO2, Industrial & Engineering Chemistry Research, 2016, 55 (26), 7069–7075.
20.Yujing Xue, Yan Sun,Guixin Wang,Kangping Yan, Jingyong Zhao, Effect of NH4F concentration and controlled-charge consumption on the photocatalytic hydrogen generation of TiO2nanotube arrays,Electrochimica Acta, 2015, 155, 312-320.
21.Guixin Wang, Ruibo Zhang, Tianchan Jiang, Natasha A. Chernova, Zhixin Dong, M. Stanley Whittingham, Facile synthesis and electrochemical performance of nanoscaled FePyanode,Journal of Power Sources, 2014, 270, 248-256.
22. Peng Guan,Guixin Wang*,Chunhui Luo, Kangping Yan, Elton J. Cairns, Xueshan Hu, Comparisons of heat treatment on the electrochemical performance of different carbons for lithium-oxygen cells,Electrochimica Acta, 2014, 129, 318–326.
23.黄艺芬,王贵欣*,关鹏,赵强,闫康平,聚3, 4-乙撑二氧噻吩(PEDOT)在锂氧电池中的电催化性能,科学通报, 2014, 59(21), 2119-2124.
24.Qiang Zhao, Yan Sun,Guixin Wang *, Wei Wu,Chunhui Luo,Kangping Yan, Houfang Lu,Facile synthesis of high-aspect-ratio PEDOT tube arrays with ultra hydrophilic properties,Synthetic Metals, 2013, 163, 42-46.
25. Hanchang Kang,Guixin Wang*, Miao Chen, Heyi Guo,Chunhui Luo,Kangping Yan,Facile synthesis and electrochemical performance ofLiFePO4/C compositesusing Fe-P waste slag,Industrial & Engineering Chemistry Research,2012, 51 (23), 7923-7931.
26.Wenjun Sun,Chunhui Luo,Guixin Wang*,Kangping Yan,Enhanced performance of Fe1.5P anode materials by SnO2/Sn modificationfor lithium-ion batteries,Journal of Alloys and Compounds,2012, 535, 114-119.
27.Guixin Wang, Rui Liu, Miao Chen, Hanchang Kang, Xiuli Li, Kangping Yan,A novel synthesis of spherical LiFePO4/C composite using Fe1.5P and mixed lithium salts via oxygen permeation,Korean Journal of Chemical Engineering,2012, 29(8), 1094-1101.
28.Fei Huang, Qiang Zhao, Chunhui Luo,Guixin Wang*, Kang-ping Yan, Dong-mei Luo,Influence of Cr3+concentration on theelectrochemical behavior of the anolytefor vanadium redox flow batteries,Chinese Science Bulletin,2012, 57(32), 4237-4243.
29.黄斐,王贵欣*,闫康平,罗冬梅,Mn2+浓度对钒液流电池正极液的电化学性能影响,无机化学学报,2012, 28(5), 898-904.
30.刘严,王贵欣*,闫康平,李成佳,由电解磷铁废渣制备的FePO4合成LiFePO4研究,无机材料学报,2012, 27(5), 475-479.
31.陈妙,王贵欣*,闫康平,康涵昌,磷铁和碳酸锂配比对LiFePO4晶体结构和性能的影响,高等学校化学工程学报,2012, 26(4), 648-653.(EI)
32.Yan Sun,Guixin Wang, Kangping Yan, TiO2nanotubes for hydrogen generation by photocatalytic water splitting in a two-compartment photoelectrochemical cell,International Journal of Hydrogen Energy,2011, 36, 15502-15508.
33. Yan Sun, Kangping Yan,Guixin Wang, Wei Guo, Tingli Ma, Effect of annealing temperature on the hydrogen production of TiO2nanotube arrays in a two-compartment photoelectrochemical cell,The Journal of Physical Chemistry C, 2011, 115, 12844-12849
34.Guixin Wang,KangPing Yan,Zuolong Yu, Meizhen Qu.Facile synthesis and high rate capability of Li4Ti5O12/C composite materials with controllable carbon content,Journal of Applied Electrochemistry,2010, 40, 821-831.
35.Meng Zhao,Guixin Wang*, Xiu-Li Li, Fei Wang, Rui Liu, KangPing Yan,Synthesis and electrochemical characteristics of Fe-P alloy prepared using electrothermal reduction method,Metals and Materials International, 2010, 16, 993-999.
36.李秀丽,王贵欣*,闫康平,刘睿. ZnO修饰对Fe1.5P电化学性能的影响,无机材料学报,2010, 25(8), 877-881.
37.Guixin Wang,Jingjing Xu, Ming Wen, Rui Ca, Ran Ran, Zongping Shao.Influence of high-energy ball milling of precursor on the morphology and electrochemical performance of Li4Ti5O12- ball milling time,Solid State Ionics2008, 179,946-950.
38.Guixin Wang, Zongping Shao, Zuolong Yu. Comparisons of different carbon conductive additives on the electrochemical performance of activated carbon,Nanotechnology, 2007, 18, 205705 (6pp).
39.Guixin Wang, Meizhen Qu, Rongzhong Yuan, Zuolong Yu.LiNi0.8Co0.2O2/MWCNT composite electrodes for supercapacitors,Materials Chemistry and Physics, 2007, 105, 169-174.
40.Guixin Wang,Bolan Zhang, Zuolong Yu, Meizhen Qu. Manganese oxide/MWNTs composite electrodes for supercapacitors,Solid State Ionics,2005, 176, 1169-1174.(被引超过150次)
41.王贵欣,周固民,袁荣忠,瞿美臻,张伯兰,于作龙. LiNi0.8Co0.2O2/MWNTs复合物超级电容器电极材料的研究,无机化学学报,2005, 21, 593-597.
42.王贵欣,瞿美臻,周固民,陈利,王国平,张伯兰,于作龙.一种估算多壁碳纳米管电化学容量的方法,无机化学学报,2004, 20, 369-372.
43.王贵欣,瞿美臻,陈利,于作龙.碳纳米管用作超级电容器电极材料,化学通报,2004, 67, 185-191,197.