张全平 教授 博士 四川省 研究领域: 储能 研究方向: 聚合物电介质储能材料 所在单位: 西南科技大学

基本信息

所在单位:
西南科技大学
机构细分:
材料与化学学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
专家介绍:
张全平,男,四川巴中人,博士,特聘教授,硕士生导师。2014年6月毕业于四川大学高分子科学与工程学院材料加工工程专业,获工学博士学位;2014年7月至今在环境友好能源材料国家重点实验室(西南科技大学)工作;2020年2月至2020年12月,法国科学研究中心保罗·帕斯卡研究所访问交流。主要开展聚酯杂化材料设计及其电介质储能应用研究。承担国家级项目2项、四川省自然科学基金3项,以及企事业单位委托研究项目11项;在Small, Appl. Phys. Lett., J. Mater. Chem. A等材料科学领域国际期刊上发表研究论文70余篇;获得国家发明专利授权4项,转让2项。

科研能力

研究领域:
储能
研究方向:
聚合物电介质储能材料
论文著作:
[1] Li He, Qian-Qian Liang, Jia-Le Li, Lin Pan, Jun Liu, Yin-Tao Li, Nan Sun*, Jinkai Yuan*, Quan-Ping Zhang*, Solvent-free dual in-situ interfacial engineering of polyester composites for enhanced capacitive energy storage, Journal of Materials Chemistry A, Accepted.
[2] Shi-Hao Liu, Li He, Xin-Yi Long, Yuan-Lin Zhou, Nan Sun, Fan Yang*, Quan-Ping Zhang*, Interfacial engineering of highly-filled bi**uth/PVA fibers for environment-friendly γ-rays shielding fabrics, Journal of Applied Polymer Science, 2026, e70696.
[3] Jiao Li, Li He, Yan-Tong Li, Xin-Yi Long, Jia-Yu Zhang, Yuan-Lin Zhou, Nan Sun, Quan-Ping Zhang*, Constructing soft-hard multiscale structures in kevlar fiber/hydrogel composites for high-speed impact resistance, Polymer Composites, 2026, 47, 6760-6772.
[4] 李岩潼, 梁倩倩, 何利, 龙欣怡, 张迦宇, 李佳乐, 孙囡, 张全平*, 基于单体直接合成的聚酯杂化材料结构及性能, 高等学校化学学报, 2025, 46(8), 20250060.
[5] Deng-Chao Hu, Quan-Ping Zhang*, Shi-Hao Liu, Ling-Cheng Meng, Gui-Lin Li, Yong Jiang, Lei Guo, Qian-Qian Liang, Nan Sun, Peng-Qing Liu, Yuan-Lin Zhou*, Tailoring the size and shape of PbWO4 particles in highly filled polymer fibers for γ-rays shielding, Polymer composites, 2025, 46, 294-305.
[6] Jia-Yu Zhang, Xiu Liu*, Fei-Yan Luo, Li He, Yan-Tong Li, Jia-Le Li, Yuan-Lin Zhou, Nan Sun, Quan-Ping Zhang*, Enhanced dielectric constant and breakdown strength of sandwiched polymer nanocomposite film for excellent energy storage, Physical Chemistry Chemical Physics, 2024, 26, 22491-22497.
[7] Jia-Yu Zhang, Xiu Liu*, Fei-Yan Luo, Li He, Yan-Tong Li, Jia-Le Li, Yuan-Lin Zhou, Nan Sun, Quan-Ping Zhang*, Sandwiched polymers modified with BaTiO3@polyfluorosiloxane for enhanced energy density, Journal of Applied Polymer Science, 2024, 141, e55909.
[8] Xue-Liang Ni, Jia-Le Li, Jia-Hao Lv, Zhi-Jie Liao, Chen Yang, Jun Zeng, Ying-Jun Li, Yin-Tao Li, Yuan-Lin Zhou, Quan-Ping Zhang*, Intensely bonded high filling bi**uth oxide with chloroprene rubber to achieve lead-free flexible materials for γ-rays shielding, Radiation Effects and Defects in Solids, 2024, 179, 1494-1506.
[9] Fei-Yan Luo, Yan-Tong Li, Jia-Yu Zhang, Li He, Jia-Le Li, Nan Sun, Gui-Lin Li, Yong Jiang, Ke Zhou, Qian-Qian Liang, Lei Guo, Hong-Yuan Wei, Xian-Hua Wei, Yuan-Lin Zhou, Jinkai Yuan, Quan-Ping Zhang*, Scalable dual in situ synthesis of polyester nanocomposites for high-energy storage, Small, 2024, 20, 2401308.
[10] 罗非艳, 李岩潼, 何利, 张迦宇, 李佳乐, 孙囡, 张全平*. 双原位合成超低填充硼酸钙/聚对苯二甲酸乙二醇酯纳米复合材料及其介电储能研究. 高分子学报, 2024, 55, 1207-1215.
[11] Ling-Cheng Meng, Quan-Ping Zhang*, Fu-Han Mai, Rui Wang, Deng-Chao Hu, Gui-Lin Li, Jia-Le Li, Yong Jiang, Qian-Qian Liang, Lei Guo, Peng-Qing Liu, and Yuan-Lin Zhou*, Large-scale fabrication of highly filled polymer fibers for radiation protection safety and wear comfort of multilayer fabrics in complex radiations, ACS Applied Polymer Materials, 2024, 6, 3316-3325.
[12] Ling-Cheng Meng, Quan-Ping Zhang*, Fu-Han Mai, Rui Wang, Deng-Chao Hu , Gui-lin Li, Yong Jiang, Lei Guo, Peng-Qing Liu, Yuan-Lin Zhou*, Synergistic effects of polymaleic acid and di(dioctylpyrophosphato) ethylene titanate on B4C modification in highly filled polymer fibers for improved neutron protection safety and wear comfort of articles, Applied Materials Today, 2024, 36, 102040.
[13] Quan-Ping Zhang*, Fang-Yan Du, Xiu Liu, Jia-Hao Lv, Li He, Jia-Le Li, Yin-Tao Li, Yuan-Lin Zhou, Optimizing dielectric constant of shell layer in core-shell structures for enhanced energy density of polymer nanocomposites, Physical Chemistry Chemical Physics, 2023, 25, 18030-18037.
[14] Nan Sun, Chen Yang, Jiang-Feng Song, Yin-Tao Li, Wen-Bin Yang, Yuan-Lin Zhou, De-Li Luo, Quan-Ping Zhang*, Tailoring thermal resistance of porous materials with void filling for improved hydrogen adsorption, International Journal of Hydrogen Energy, 2023, 48, 8588-8595.
[15] Xiu Liu, Fang-Yan Du, Junjin Che, Jia-Le Li, Ao-Shuang Yang, Jia-Hao Lv, Qiu-Yu Shen, Li He, Yin-Tao Li, Yuan-Lin Zhou, Jinkai Yuan, Quan-Ping Zhang*, Coating fluoropolymer on BaTiO3 nanoparticles to boost permittivity and energy density of polymer nanocomposites, Energy Technology, 2023, 11, 2201041.
[16] Fu-Han Mai, Quan-Ping Zhang*, Rui Wang, Ling-Cheng Meng, Peng-Qing Liu, Yuan Zhang, Jia-Le Li, Yong Jiang, Qian-Qian Liang, Ji-Zhen Liu, Yin-Tao Li, Yuan-Lin Zhou*, PbWO4 synergistically modified with styrene maleic anhydride and bis (dioctyl pyrophosphate) ethylene titanate in highly filled polymer fibers for enhanced γ-ray shielding safety and wear comfort of articles, Advanced Materials Technologies, 2023, 8, 2201531.
[17] Fu-Han Mai, Quan-Ping Zhang*, Rui Wang, Ling-Cheng Meng, Yuan Zhang, Jia-Le Li, Peng-Qing Liu, Yin-Tao Li, Yuan-Lin Zhou*, Polymer fibers highly filled with styrene maleic anhydride-modified PbWO4 for improved wear comfort of γ-ray-shielding articles,ACS Applied Polymer Materials,2022, 4, 9, 6394-6402.
[18] Yuan Zhang, Dong-Liang Liu*, Bin-Yu Xiong, Jia-Le Li, Yin-Tao Li, Yuan-Lin Zhou, Ao-Shuang Yang*, Quan-Ping Zhang*,Constructing WO3/TiO2 heterojunction with solvothermal-sintering for enhanced photocatalytic activity under visible light irradiation, Solid State Sciences, 2022, 131, 106963.
[19] 张全平, 陈瑞超, 杜芳艳, 刘修, 李银涛, 杨文彬, 周元林, 高填充钛酸钡/氟硅橡胶纳米复合材料制备及介电性能调控, 高分子材料科学与工程, 2022, 38(2): 17-23.
[20] Xue Liu, Quan-Ping Zhang*, Jia-Le Li, Rui-Chao Chen, Wei-Di Xu, Yin-Tao Li, Wen-Bin Yang, Yuan-Lin Zhou*, Lead borate@polydopamine core–shell particles chemically bonded with silicone rubber for neutron and γ-rays shielding, Journal of Applied Polymer Science, 2022, 139(15): 51914.
[21]Fang-Yan Du, Rui-Chao Chen, Junjin Che, Wei-Di Xu, Xiu Liu, Yin-Tao Li, Yuan-Lin Zhou, Jinkai Yuan*, Quan-Ping Zhang*,High loading BaTiO3 nanoparticles chemically bonded with fluorinated silicone rubber for largely enhanced dielectric properties of polymer nanocomposites, Physical Chemistry Chemical Physics, 2021, 23, 26219-26226.
[22] Jia-Le Li, Quan-Ping Zhang*, Xue Liu, Rui-Chao Chen, Wei-Di Xu, Nan Sun, Yin-Tao Li, Wen-Bin Yang, Dui-Gong Xu, Yuan-Lin Zhou*, High loading boron nitride chemically bonded with silicone rubber to enhance thermal neutron shielding and flexibility of polymer nanocomposites, Journal of Applied Polymer Science, 2021, 138(31): 50774.
[23] Nan Sun, Pei-Long Li, Ming Wen, Jiang-Feng Song, Zhi Zhang, Wen-Bin Yang, Yuan-Lin Zhou, De-Li Luo*, Quan-Ping Zhang*, Insights into heat management of hydrogen adsorption for improved hydrogen isotope separation of porous materials, Journal of Materials Science & Technology, 2021, 76, 200-206.
[24] Rui-Chao Chen, Quan-Ping Zhang*, Kai Ke, Nan Sun, Wei-Di Xu, Dong-Liang Liu, Wenbin Yang, Yin-Tao Li, Yuan-Lin Zhou, Ming-Bo Yang, Jinkai Yuan*, Wei Yang*, Chemically bonding BaTiO3 nanoparticles in highly filled polymer nanocomposites for greatly enhanced dielectric properties, Journal of Materials Chemistry C, 2020, 8, 8786-8795.
[25] Quan-Ping Zhang, Yun-Chuan Xu, Jia-Le Li, Ao-Jie Liu, Dui-Gong Xu, Ming Wei*, Yuan-Lin Zhou*, Hunting for advanced low-energy gamma-rays shielding materials based on PbWO4 through crystal defect engineering, Journal of Alloys and Compounds, 2020, 822, 153737.
[26] Gui-Lin Li, Quan-Ping Zhang*, Jia-Le Li, Xing-Tao Zhao, Wei-Di Xu, Mao-Xin Wang, Dui-Gong Xu, Yuan-Lin Zhou*, A facile route to prepare lead borate crystals for jointly shielding neutron and gamma rays, Inorganic Chemistry Communications, 2020, 112, 107719.
[27] Quan-Ping Zhang*, Wen-Fan Zhu, Dong-Ming Liang, Xiao-Li Wu, Rui-Chao Chen, Nan Sun, Yin-Tao Li, Yuan-Lin Zhou, Core-shell structured CaCO3@CNF for enhanced dielectric properties of polymer nanocomposites, Applied Surface Science, 2019, 487, 77-81.
[28] Hai-Dong Liu, Hao Zhang*, Jie Pang, You-Jun Ning, Fei Jia, Wei-Feng Yuan, Bin Gu*, Quan-Ping Zhang*, Superhydrophobic property of epoxy resin coating modified with octadecylamine and SiO2 nanoparticles, Materials Letters, 2019, 247, 204-207.
[29] Yun-Chuan Xu, Chi Song, Xiao-Yong Ding, Yang Zhao, Dui-Gong Xu, Quan-Ping Zhang*, Yuan-Lin Zhou*, Tailoring lattices of Bi2WO6 crystals via Ce doping to improve the shielding properties against low-energy gamma rays,Journal of Physics and Chemistry of Solids, 2019, 127, 76-80.
[30] Quan-Ping Zhang, Dong-Ming Liang, Wen-Fan Zhu, Jun-Hua Liu, You Wu, Dui-Gong Xu, Xue-Yuan Bai, Ming Wei*, Yuan-Lin Zhou*, Fabrication of h-BN@PbWO4 with a facile sol-gel method towards enhanced photocatalytic and radiation shielding properties, Journal of Solid State Chemistry, 2019, 269, 594-599.
[31] Nan Sun, Quan-Ping Zhang*, Yong Yao, Ming Wen, Hao-Ran Sun, Wen-Bin Yang, Yuan-Lin Zhou, Jiang-Feng Song, De-Li Luo*, Improved hydrogen adsorption of 5A molecular sieves by enhancing its thermal conductivity, Applied Physics Letters, 2018, 113, 103901.(Nature Index)
[32] Yun-Chuan Xu, Quan-Ping Zhang*, Jun-Hua Liu, You Wu, Li-Ping Liu, Dui-Gong Xu, Yuan-Lin Zhou*, PbWO4 nanofibers for shielding gamma radiation: crystal growth, morphology and performance evaluation, CrystEngComm, 2018, 20, 6197-6206.
[33] Nan Sun, Quan-Ping Zhang*, Hao-Ran Sun, Wen-Bin Yang, Yuan-Lin Zhou, Jiang-Feng Song, and De-Li Luo*, Enhanced Thermal Conductivity of 5A Molecular Sieve with BNs Segregated Structures, Advanced Engineering Materials, 2018, 20, 1700745.
[34] Jun-Hua Liu, Quan-Ping Zhang*, Nan Sun, Yang Zhao, Rui Shi, Yuan-Lin Zhou, Jian Zheng, Elevated gamma-rays shielding property in lead-free bi**uth tungstate by nanofabricating structures, Journal of Physics and Chemistry of Solids, 2018,112, 185-189.
[35] You Wu, Quan-Ping Zhang*, Dong Zhou, Li-Ping Liu, Chuan Yun Xu, Dui-Gong Xu, Yuanlin Zhou*, One-dimensional lead borate nanowhiskers for joint shielding of neutron and gamma radiations: controlled synthesis, microstructure, and performance evaluation, CrystEngComm, 2017, 19,7260-7269.
[36] Quan-Ping Zhang*, Jun-Hua Liu, Hai-Dong Liu, Fei Jia, Yuan-Lin Zhou, Jian Zheng, Tailoring chain length and cross-link density in dielectric elastomer toward enhanced actuation strain, Applied Physics Letters 2017, 111, 152901.(Nature Index)
[37] You Wu, Quan-Ping Zhang*, Dong Zhou, Yuan-Lin Zhou*, Jian Zheng, Controlled synthesis of anisotropic lead borate crystals and its co-shielding of neutron and gamma radiations, Journal of Alloys and Compounds, 2017, 727, 1027-1035.
[38] Quan-Ping Zhang*, Nan Sun, Jian Zheng, Shi-Wei Wang, You Wu, De-Li Luo, Yuan-Lin Zhou*, Fabrication of Lead Borate Single Crystal Nanosheets for Attenuating Both Neutron and Gamma Radiations, Advanced Engineering Materials, 2017, 19(3): 1600650.
[39] Dong Zhou, Quan-Ping Zhang*, Jian Zheng, You Wu, Yang Zhao, Yuan-Lin Zhou*, Co-shielding of neutron and γ-ray with bi**uth borate nanoparticles fabricated via a facile sol-gel method, Inorganic Chemistry Communications, 2017, 77: 55-58.
[40] Qing Sun, Quan-Ping Zhang*, Jian Zheng, Dong Zhou, Yin-Tao Li, Yuan-Lin Zhou*. Preparation of integrated multifunction Pb3B10O16[OH]4 whisker by solvothermal method. Physics Letters A, 2016, 380(11/12):1197-1200.
[41] Quan-Ping Zhang*, Xiao-Chao Xia, Shan He, Jian-Min Feng, Ming-Bo Yang*, Yin-Tao Li, Yuan-Lin Zhou, Description of second flow field via the deformation of polystyrene phase in high-density polyethylene matrix, Journal of Applied Polymer Science, 2016, 133, 43374.
[42] Quan-Ping Zhang*, Xiao-Chao Xia, Shan He, Jian-Min Feng, Ming-Bo Yang*, Jian Zheng, Yin-Tao Li, Yuan-Lin Zhou, The coupling relation between chain architectures and secondary flow field determined by an unusual dependence of shish-kebabs on molecular weight of high-density polyethylene, Journal of Materials Science, 2016, 51(5): 2585-2593.
[43] Quan-Ping Zhang*, Xiao-Chao Xia, Shan He, Jian-Min Feng, Ming-Bo Yang*, Yin-Tao Li, Yuan-Lin Zhou, Tuning Crystalline Morphology of High-Density Polyethylene by Tailoring its Molecular Weight Distribution for Coupling with a Secondary Flow Field, Macromolecular Materials and Engineering, 2015, 300(9): 901-910.
[44] Quanping Zhang, Long Wang, Xiaochao Xia, Jianmin Feng, Xiaorong Fu, Mingbo Yang*, Tailoring the crystalline morphologies and mechanical properties of high-density polyethylene parts by a change in the fluid flow pattern under gas-assisted injection molding, Journal of Applied Polymer Science, 2014, 131(11): 40439.
发明专利:
[1] 张全平; 周元林; 李迎军; 孙囡; 李银涛. 一种兼具优异核防护和柔韧性的橡胶复合材料及制备方法. 专利号: ZL 202110357297.7
[2] 周元林; 张全平; 李银涛. 一种多功能核辐射防护双层面料及其制备方法. 专利号: ZL 202010097358.6
[3] 周元林; 张全平; 唐安斌. 一种核辐射防护服套装. 专利号: ZL 201921064906.4
[4] 周元林; 张全平; 杨文彬. 一种具有控温功能核辐射防护纱线及其制备方法. 专利号: ZL 201910615744.7
[5] 周元林, 张全平, 李银涛. 用于中子和伽马射线共同防护皮芯结构纤维的制备方法, 专利号: ZL 201911028703.4
[6] 张全平, 孙囡, 周元林, 李银涛, 杨文彬, 李迎军. 一种硅橡胶辐射防护纳米复合材料的制备方法, 专利号: ZL 201811524966.X
[7] 张全平, 孙囡, 周元林, 李银涛, 杨文彬, 李迎军. 一种高储能密度钛酸钡复合电介质材料的制备方法, 专利号: ZL 201811525929.0
[8] 张全平, 孙囡, 陈瑞超, 李银涛, 周元林. 一种高导热5A分子筛复合材料及其制备方法, 专利号: ZL 201811424304.5
[9] 周元林, 刘海东, 张全平. 一种压井更换井口的油气管暂堵装置, 专利号: ZL 201621153805.0
[10] 周元林, 张全平, 李银涛. 辐射防护聚合物复合纤维的制备方法, 专利号:ZL201610580993 .3
[11] 周元林, 孙清, 张全平, 李银涛. 一种具备多功能且结构规整的硼酸铅晶须的制备方法, 专利号: ZL201610012651.1
[12] 肖望东, 张全平, 徐令军. 一种醋酸纤维素透明塑料及制造方法, 专利号: ZL 201010585065.9
科研项目:
1. 连接器用硅橡胶的使用寿命预测,横向项目,2025.06-2026.01;
2. 超低填充聚酯纳米复合材料的双原位合成及介电储能研究(面上),四川省科技厅,2025.01-2026.12;
3. 高储能密度电容器用薄膜样品研发,横向项目,2024.10-2025.03;
4. ******机制研究,装备发展部,2023.01-2024.12;
5. 高填充聚乙烯醇/硼酸铅复合纤维制备及其中子防护性能研究(面上),四川省科技厅,2022.01-2023.12;
6. 乏燃料后处理科研专项项目/防中子辐射纤维及复合材料研究-子课题负责人,国防科技工业局,2020.05/2023.04;
7. 高性能环氧树脂及其复合材料研发,横向项目,2021.06/2022.06;
8. 新能源汽车绝缘件的耐久性研究,横向项目,2021.01/2021.06;
9. 中子/γ-rays防护用高填充硼酸铅/硅橡胶复合材料的强界面作用构筑(面上),四川省科技厅,2019.01/2020.12;
10. 工程塑料老化行为分析及寿命预测,横向项目,2019.09/2020.06;
11. 高功率激光辐照效应实验,横向项目,2019.09/2019.11;
12. 超高速撞击试验用微米级合金薄膜加工,横向项目,2019.01/2019.06;
13. 纳米材料的r-rays防护机理研究,国家自然基金,2018.01/2018.12;
14. 新型n/γ响应材料的多尺度结构调控(子课题负责人),西科大-中物院共建材料学科项目,2017.06/2020.12;
15. 工程塑料使用寿命预测,横向项目,2015.10/2016.10;
16. 多核素混合污染设施退役工程技术研究,横向项目,2014.12/2015.12;

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