陈妍慧 教授 博士 陕西省 研究领域: 新材料 研究方向: (1)功能化、智能化、高性能化高分子材料的设计与合成 (2)高分子复合材料的结构构筑、性能调控及机理 (3)材料特性(热传导、力学等)模拟仿真与机器学习 所在单位: 西北工业大学

基本信息

所在单位:
西北工业大学
机构细分:
化学与化工学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
教育经历:
2004.09-2008.07  四川大学高分子科学与工程学院    高分子材料与工程专业学士学位
2008.09-2013.12  四川大学高分子科学与工程学院    材料加工工程专业博士学位,导师李忠明教授(杰青、长江学者)
2011.11-2013.11  纽约州立大学石溪分校(State University of New York at Stonybrook)化学系,于世界著名高分子物理学家Benjamin S. Hsiao教授课题组参加国家建设高水平大学公派联合培养
工作经历:
2014.01—2017.06 西北工业大学理学院应用化学系 副教授
2017.07—2019.11 西北工业大学理学院应用化学系 教授
2019.11—至今    西北工业大学化学与化工学院    教授
专家介绍:
陈妍慧,博士,国家级青年人才、西北工业大学化学与化工学院教授、博士生导师。从事热功能有机高分子材料的设计与制备,并探索热功能材料在芯片热管理方面的应用。实现了“传得快”导热通路的可控构筑与“储得多”高纯直链烷烃相变储热材料的国产化替代,研发了系列“传储一体化”有机热管理材料。部分材料已应用于瞬时高功率芯片的热管理。先后主持国家、省部级及企业合作、委托项目 17 项,其中国家自然科学基金 5 项、 国家专项工程项目 1 项;在 《ACS Nano》、《Macromolecules》、《Composites Science and Technology 》等高水平期刊上发表第一或通讯作者 SCI 论文 56篇,SCI 他引 2500 余次;申请/授权国家发明专利 17项;参编中文专著 3 部,英文专著 1 部;参与修订国家标准 1 项。兼任中国化工学会理事、中国化工学会电子化学品专业委员会第一届委员会委员、中国复合材料学会介电高分子复合材料与应用专业委员会委员、中国化工学会青年工作委员会委员,任《绝缘材料》编委、《Current Applied Materials》编委、《IET Nanodielectrics》客座编辑等。
专家荣誉:
2023 年 陕西省高等教育(研究生)教学成果奖 二等奖(R5)
2024年,指导本科生荣获第十二届“桃战杯”陕汽集团陕西省大学生创业计划竞赛  陕西省金奖
2024年,指导本科生荣获2024年中国国际大学生创新大赛陕西赛区省级复赛   陕西省金奖
2023年 第九届中国国际“互联网+”大学生创新创业大赛陕西赛区省级复赛金奖(高教主赛道)“优秀创新创业导师”奖
2022年 宁波研究生学术节“优秀指导教师”奖
2022年 第二十一届“三航杯”大学生课外学术科技作品竞赛(一等奖)“优秀指导教师”奖
2023年 第八届“创客中国”陕西省中小企业创新创业大赛暨第五届“创客陕西”中小企业创新创业大赛创客组二等奖
2023年 第八届“创客中国”陕西省咸阳市中小企业创新创业区域赛创客组一等奖
2022年 陕西省科技工作者创新创业大赛一等奖
2022年 陕西石化青年科技奖
2018年 入选陕西省高校第二批“青年杰出人才支持计划”
2016年 西北工业大学翱翔新星
2016年 陕西省高校科协青年人才托举计划项目
2015年 西北工业大学“优秀青年教师(吴亚军奖)一等奖”

科研能力

研究领域:
新材料
研究方向:
(1)功能化、智能化、高性能化高分子材料的设计与合成
(2)高分子复合材料的结构构筑、性能调控及机理
(3)材料特性(热传导、力学等)模拟仿真与机器学习
中文标签:
聚酰亚胺;复合材料;玻璃纤维;氧化石墨烯;柔性基底;球磨共混;原子氧;选择性分布;气相法;白炭黑
英文标签:
Thermal Conductivity;Isotactic Polypropylene;Mechanical Properties;Mxene;Electromagnetic Interference Shielding;Polyimide;Carbon Fiber;Glass Fiber;Graphene;Polypropylene
论文著作:
2024年
[79] Meng-Jing Yang, Yu-Xi Mao, Peng-Hui Zhang, Jie Li, Ze-Ming Tong, Zhen-Guo Liu*, Yan-Hui Chen*, Poly (lactic acid)/Poly (butylene adipate-co-terephthalate) Films with Simultaneous High Oxygen Barrier and Fast Degradation Properties. Green Energy & Environment, 2024, accepted.
[78] Dong-Liang Ding, Xu Wang, Ruo-Yu Huang, Zhen-Yu Wang, Gao-Xiao Jiang, Lin-Feng Yu,Hai-Tao Nie, Xiao-Liang Zeng, Biao Tang, Guang-Zhao Qin, Xue-Ao Zhang, Qiu-Yu Zhang,Jian-Bin Xu, Yan-Hui Chen*, Simulation-Directed Construction of Bamboo-Forest-Like Heat Conduction Networks to Enhance Silicon Rubber Composites' Heat Conduction Properties. Small, 2024, e2406229.
[77] Peng-Cheng Zhang, Hai-Yang Li, Hao-Yu Liang, Huan-Ping Wang, Chen-Hui Yang, Xiang-Kun Shan, Qiu-Yu Zhang, Yan-Hui Chen*, Polyimide aerogels with a dual electrically conductive network for electromagnetic interference shielding, piezoresistive sensing, and thermal management. Materials Today Communications. 2024,38,108506
[76]Hao-Yu Liang, Huan-Ping Wang, Peng-Cheng Zhang, Dong-Liang Ding, Ya-Meng Jiao, Yi-Jun Zhou, Qun-Xiang Xue, Qiang Song, Qiu-Yu Zhang, Yan-Hui Chen* , Phase change materials encapsulated in a novel hybrid carbon skeleton for high-efficiency solar-thermal conversion and energy storage, Journal of Energy Storage, 2024, accepted.
[75]Peng-Hui Zhang, Ze-Ming Tong, Meng-Jing Yang, Lei Gong, Zhen-Guo Liu, Yan-Hui Chen*, Polyethylene terephthalate bottles with excellent oxygen, water vapor barrier and mechanical performances prepared by injection and blow molding, Polymer Engineering and Science, 2024, accepted.
2023年
[74] Shi-Yu Zhang, Zhi-Hui Shang, Dong-Liang Ding, Xu Wang, Ya Wu, Shi-Feng Nian*, Zhen-Guo Liu, Qiu-Yu Zhang, Yan-Hui Chen*, Enhanced thermal conductivity and self-healing property of PUDA/boron nitride micro-sheets composites with a small number of graphene nano-platelets. IET Nanodielectrics, 2023, accepted.
[73] Xu Wang, Dong-Liang Ding, Zhe Yang, Shi-Yu Zhang, Zhe Sun, Zhen-Guo Liu, Qiu-Yu Zhang, Yan-Hui Chen*, GMP/Al2O3/ZnO/PDMS thermal interface materials with anisotropic thermal conductivity and electrical insulation ability obtained by 3D-printing method. Polymers for Advanced Technologies, 2023, accepted.
[72] Yi-Wen Peng, Zhi-Qiang Wu, Qiang Guo, Xian Zhang, Lei Gong*, Zhen-Guo Liu, Qiu-Yu Zhang, Yan-Hui Chen*. Enhanced dielectric properties of PVDF composite films by hybrid BNNS@MOF. Materials Today Communications, 2023, 37, 107429.
[71] Dong-Liang Ding, Ruo-Yu Huang, Bo Peng, Yang-Yang Xie, Hai-Tao Nie, Chen-Hui Yang, Qiu-Yu Zhang, Xue-Ao Zhang*, Guang-zhao Qin*, Yan-Hui Chen*, Effect of  Nanoscale in-situ Interface Welding on the Macroscale Thermal  Conductivity of Insulating Epoxy Composites: A Multiscale Simulation  Investigation. ACS Nano,  2023, 17, 19, 19323–19337.
[70] Dong-Liang Ding, Qiu-Yu Zhang, Guang-Zhao Qin*, Yan-Hui Chen*, Offset supper-cell model of polymer composites with oriented anisotropic fillers for thermal conductivity prediction considering shape factor, International Journal of Heat and Mass Transfer, 2023, 214, 124373.
[69] Peng-Cheng Zhang, Xuan-He Ru, Hai-Yang Li, Hao-Yu Liang, Huan-Ping Wang, Chen-Hui Yang, Xiao-Guang Zhang, Zhen-Guo Liu*, Qiu-Yu Zhang, Yan-Hui Chen*, Efficient MXene/CNT electromagnetic shielding composite films with self-assembly multilayer structure, Journal of Materials Science: Materials in Electronics, 2023, 34,39.
[68] Zhi-Qiang Wu, Yi-Wen Peng, Ying Song, Hao-Yu Liang, Lei Gong, Zhen-Guo Liu, Qiu-Yu Zhang, Yan-Hui Chen*, Polyimide Dielectrics with Cross-linked Structure for High-Temperature Film Capacitors, Materials Today Energy, 2023, 32, 101243.
2022年
[67] Wan-Bin Dang, Zong-Xu Liu, Ling-Na Wang, Yan-Hui Chen*, Min Qi*,  Qiu-Yu Zhang*,A flexible, robust and multifunctional montmorillonite/aramid nanofibers@MXene electromagnetic shielding nanocomposite with an alternating structure for enhanced Joule heating and fire-resistant protective performance,Nanoscale , 2022,14(31),11305-11315.
[66] Li-Jun Quan, Zhen-Guo Liu, Qiu-Yu Zhang, Zhong-Ming Li, Yan-Hui Chen*. Polyethylene terephthalate-polyethylene naphthalte copolymer films with high oxygen barrier properties via in-situ polymerization with hydroxy-terminated polybutadiene. Polymer Engineering and Science, 2022, 62 (11): 3631-3640.
[65] Liang-Qing Zhang, Shu-Gui Yang , Long-Gui Peng, Ke-Peng Zhong and Yan-Hui Chen*, Optimized properties in multifunctional polyphenylene sulfide composites via graphene nanosheets/boron nitride nanosheets dual segregated structure under high pressure. Nanomaterials, 2022, 12(19), 3543.
[64] Zhong-Guo Zhao, Sheng-Tai Zhou, Li-Jun Quan, Wei-Long Xia, Qian Fan, Peng-Hui Zhang, Yan-Hui Chen*, and Da-Hang Tang. Polypropylene composites with ultrahigh low-temperature toughness by tuning the phase morphology. Industrial & Engineering Chemistry Research, 2022, 61, 41, 15240-15248.
[63] R. Huang, D. Ding, X. Guo, C. Liu, X. Li, G. Jiang, Y. Zhang*, Y. Chen*, W. Cai*, X.-a. Zhang*. Improving through-plane thermal conductivity of PDMS-based composites using highly oriented carbon fibers bridged by Al2O3 particles. Composites Science and Technology, 230 (2022).
[62] Li-Jun Quan, Zhen-Guo Liu, Qiu-Yu Zhang, Zhong-Ming Li, Yan-Hui Chen*. Synthesis of statistical poly(ethylene terephthalate-co-2,6-naphthalate) random (co)polymers and study on their properties: Thermal and barrier properties. Journal of Applied Polymer Science, 2022, accepted.
[61] Li-Jun Quan, Xiao-Dong Zhang, Yan-Hui Chen*, Zhen-Guo Liu, Qiu-Yu Zhang, Zhong-Ming Li. Structural evolution and barrier properties in the biaxially stretched polyethylene terephthalate/hydroxy-terminated polybutadiene films. Journal of polymer engineering, accepted.
[60] Hai-Yang Li, Xuan-He Ru, Ying Song, Huan-Ping Wang, Chen-Hui Yang, Shui-Rong Zheng, Lei Gong, Xiao-Guang Zhang*, Hong-Ji Duan, Zhen-Guo Liu, Qiu-Yu Zhang, Yan-Hui Chen*. Flexible Sandwich-Structured Silicone Rubber\/MXene\/Fe3O4 Composites for Tunable Electromagnetic Interference Shielding. Industrial & Engineering Chemistry Research, accepted.
[59] Li-Jun Quan, Zhen-Guo Liu, Qiu-Yu Zhang, Zhong-Ming Li, Yan-Hui Chen*. Enhanced barrier property for polyethylene terephthalate-polyethylene naphthalate copolymer by in situ polymerization with graphene oxide nanosheets. Macromolecular Materials and Engineering, accepted.
[58]  Dong-Liang Ding, Shi-Yu Zhang, Hao-Yu Liang, Xu Wang, Ya Wu, Yuan-Ming Ye, Zhen-Guo Liu, Qiu-Yu Zhang, Guang-Zhao Qin*, Yan-hui Chen*. Enhancing thermal conductivity of silicone rubber composites by in-situ constructing SiC networks: A finite-element study based on first principles calculation. Nano Research, https://doi.org/10.1007/s12274-022-4639-1.
[57] Hai-Yang Li, Xuan-He Rua, Ying Song, Huan-Ping Wang, Chen-Hui Yang*, Lei Gong, Zhen-Guo Liu*, Qiu-Yu Zhang, Yan-Hui Chen*. Flexible and self-healing 3D MXene/reduced graphene oxide/polyurethane composites for high-performance electromagnetic interference shielding. Composites Science and Technology, 2022, 227, 109602.
[56]  Zhi-Qiang Wu, Yi-Wen Peng, Qiang Guo, Hui-Hui Zhou, Lei Gong*, Zhen-Guo Liu, Qiu-Yu Zhang, Yan-Hui Chen*. Multilayer heterogeneous dielectric films with simultaneously improved dielectric constant and breakdown strength. Materials Today Communication, 2022, 32, 103857.
[55] Dong-Liang Ding, Ruo-Yu Huang, Xu Wang, Shi-Yu Zhang, Ya Wu, Xu-Ao Zhang Guang-Zhao Qin*, Zhen-Guo Liu, Qiu-Yu Zhang, Yan-Hui Chen*. Thermally conductive silicone rubber composites with vertically oriented carbon fibers: A new perspective on the heat conduction mechanism. Chemical Engineering Journal 2022, 441, 136104.
[54] Dong-Liang Ding, Min-Hao Zou, Xu Wang, Guang-Zhao Qin, Shi-Yu Zhang, Siew Yin Chan, Qing-Yong Meng, Zhen-Guo Liu*, Qiu-Yu Zhang, Yan-Hui Chen*. Thermal conductivity of polydisperse hexagonal BN/polyimide composites: Iterative EMT model and machine learning based on first principles investigation. Chemical Engineering Journal 2022, 437, 135438.
[53]  Xiaodong Zhang, Lijun Quan, Zeming Tong, Penghui Zhang, Shifeng Nian, Lei Gong, Zhong-Ming Li, Qiuyu Zhang, Yanhui Chen*, Zhenguo Liu*. Synergistically Improved Oxygen Barrier Properties of Polyethylene Terephthalate by Combining “Active” and “Passive” Barrier Techniques. Macromolecular Materials and Engineering. Accepted. https://doi.org/10.1002/mame.202100847.
[52] Dongliang Ding, Minhao Zou, Xu Wang, Guangzhao Qin, Shiyu Zhang, Siew Yin Chan, Qingyong Meng, Zhenguo Liu*, QiuyuZhang, Yanhui Chen*. Thermal conductivity of polydisperse hexagonal BN/polyimide composites: Iterative EMT model and machine learning based on first principles investigation. Chemical Engineering Journal 2022, 437, 135438.
[51] Qiang Guo, Zhiqiang Wu, Huihui He, Huihui Zhou, Yang Liu, Yanhui Chen*, Zhenguo Liu*, Lei Gong, Liangliang Zhang*, Qiuyu Zhang. High-? polyimide-based dielectrics by introducing functionalized metal-organic framework. Inorganic chemistry, accepted.
[50] Liang-Qing Zhang, Shu-Gui Yang, Jing-Han Zhang, Ke-Peng Zhong, Zhong-Guo Zhao, Yan-Hui Chen*, Jun Lei, Qiu-Yu Zhang, Zhong-Ming Li. Insight into the excellent tribological performance of highly oriented poly(phenylene sulfide). Chinese Journal of Polymer Science, 2022, 40(3), 290298.
2021年
[49] Xuanhe Ru, Haiyang Li, Yiwen Peng, Zewen Fan, Junjie Feng, Lei Gong, Zhenguo Liu, Yanhui Chen*, Qiuyu Zhang. A New Trial for Lightweight MXene Hybrid Aerogels with High Electromagnetic Interference Shielding Performance. Journal of Materials Science: Materials in Electronics, 10.1007/s10854-021-07603-w.
[48] Xu, W.; Hu, S.; Zhao, Y.; Zhai, W.; Chen, Y.*; Zheng, G.; Dai, K.*; Liu, C.; Shen, C., Nacre-inspired tunable strain sensor with synergistic interfacial interaction for sign language interpretation. Nano Energy 2021, 90, 106606.
[47] Zheng, H.; Wang, S.; Zhou, L.; He, X.; Cheng, Z.; Cheng, F.; Liu, Z.; Wang, X.; Chen, Y.*; Zhang, Q.*, Injectable multi-responsive micelle/nanocomposite hybrid hydrogel for bioenzyme and photothermal augmented chemodynamic therapy of skin cancer and bacterial infection. Chemical Engineering Journal 2021, 404, 126-439
[46] Zhiqiang Wu, Qiang Guo, Yang Liu, Huihui Zhou, Hua Zheng, Xingfeng Lei, Lei Gong, Yanhui Chen*, Zhenguo Liu, Qiuyu Zhang. Excellent polyimide dielectrics containing conjugated ACAT for high-temperature polymer film capacitor. Macromolecular Materials and Engineering, 2021, 306(11), 2100456.
[45] Zhihui Shang, Dongliang Ding, Xu Wang, Bingru Liu, Yanhui Chen*, Lei Gong, Zhenguo Liu, Qiuyu Zhang. High thermal conductivity of self-healing polydimethylsiloxane elastomer composites by the orientation of boron nitride nano sheets. Polymers for Advanced Technologies, 2021; 32(12), 4745-4754.
2020年
[44] Li-Jun Quan, Xiao-Dong Zhang, Wei-Long Xia, Yan-Hui Chen*, Lei Gong, Zhen-Guo Liu, Qiu-Yu Zhang, Gan-Ji Zhong, Zhong-Ming Li, Benjamin Hsiao. In situ synchrotron X-ray scattering studies on the temperature dependence of oriented β-crystal growth in isotactic polypropylene. Polymer Testing, 2020, 90, 106660.
[43] Dong-Liang Ding; Zhi-Hui Shang; Xu Zhang; Xing-Feng Lei**; Zhen-Guo Liu; Qiu-Yu Zhang; Yan-Hui Chen*. Greatly Enhanced Thermal Conductivity of Polyimide Composites by Polydopamine Modification and the 2D-Aligned Structure. Ceramics International, 2020, 46(18), 8363-28372.
[42] Zhi-Qiang Wu, Hui-Hui Zhou, Qiang Guo, Zhen-Guo Liu, Gong Lei, Qiu-Yu Zhang, Gan-ji Zhong, Zhong-Ming Li, Yan-Hui Chen*. Enhanced dielectric properties in polyimide nanocomposites containing barium titanate@ polydopamine core-shell nanoparticles. Journal of Alloys and Compounds, 2020 845,156171.
[41] Qian Fan, Jing-Han Zhang, Zhi-Qiang Wu, Song Yang, Yan-Hui Chen*, Ying Lu, Qiu-Yu Zhang. Great improvement of low-temperature impact resistance of isotactic polypropylene / ethylene propylene diene monomer rubber blends by traces of carbon nanotubes and β-nucleating agents. Polymers for Advanced Technologies, 2020, 31, 508–519.
[40] Zheng, H.; Wang, S.; Lu, C.; Ren, Y.; Liu, Z.; Ding, D.; Wu, Z.; Wang, X.; Chen, Y. *; Zhang, Q. *, Thermal, Near-Infrared Light, and Amine Solvent Triple-Responsive Recyclable Imine-Type Vitrimer: Shape Memory, Accelerated Photohealing/Welding, and Destructing Behaviors. Ind. Eng. Chem. Res. 2020, 59 (50), 21768-21778.
2019年
[39]. Dong-Liang Ding,1 Hai-Tao Wang,1 Zhi-Qiang Wu, Yan-Hui Chen*, Qiu-Yu Zhang. Highly thermally conductive polyimide composites via constructing 3D-networks. Macromolecular Rapid Communications 2019, 0(0): 1800805.
[38] Peng-Gang Ren,* Jin Wang, Qian Fan, Song Yang, Zhi-Qiang Wu, Ding-Xiang Yan,* Yan-Hui Chen.* Synergetic toughening effect of carbon nanotubes and β-nucleating agents on the polypropylene random copolymer/styrene-ethylene-butylene- styrene block copolymer blends. Polymers 2019, 11(1), 29; https://doi.org/10.3390/polym11010029.
2018年
[37] Yan-Hui Chen*, Qian Fan, Song Yang, Qiu-Yu Zhang, Zhong-Ming Li. Greatly improved toughness of isotactic polypropylene blends with traces of carbon nanotubes. Polymer Engineering and Science 2018, DOI:10.1002/pen.25000.
[36].Hai-Tao Wang, Dong-Liang Ding, Qian Liu, Yan-Hui Chen*, Qiu-Yu Zhang. Highly anisotropic thermally conductive polyimide composites via the alignment of boron nitride platelets. Composites Part B 2019,158,311-318.
[35].Yan-Hui Chen*, Zhi-Qiang Wu, Qian Fan, Song Yang, Er-Chao Song, Qiu-Yu Zhang. Great toughness reinforcement of isotactic polypropylene/elastomer blends with quasi-cocontinuous phase morphology by traces of β-nucleating agents and carbon nanotubes. Composites Science and Technology 2018, 167, 277-284.
[34].Yan-Hui Chen*, Xu Bo, Hao-Qing Yang, Qiu-Yu Zhang, Zhong-Ming Li. Deformation behavior of isotactic polypropylene with oriented α- and β-crystals. Materials Letters 2018, 219, 209-211.
[33].Yan Wang, Jian Zhao, Min-Jie Qu, Jing Guo, Shu-Gui Yang, Jun Lei, Jia-Zhang Xu*, Yan-Hui Chen, Zhong-Ming Li, Benjamin S. Hsiao. An unusual promotion of gamma-crystals in metallocene-made isotactic polypropylene from orientational relaxation and favorable temperature window induced by shear. Polymer 2018, 134, 196-203.
2017年
[32].Yan-Hui Chen*, Xu Bo, Song Yang, Hao-Qing Yang, Tom Lawson, Zhi-Qiang Wu, Qiu-Yu Zhang, Zhong-Ming Li. Unexpected Strength and Toughness Reinforcement of the Injection-Molded Isotactic Polypropylene Parts with Oriented β-Crystals. Industrial & Engineering Chemistry Research 2017, 56 (48), 14252–14262.
[31].Yan-Hui Chen*, Hao-Qing Yang, Song Yang, Qiu-Yu Zhang, Zhong-Ming Li.  Temperature-dependent β-crystal growth in isotactic polypropylene with β-nucleating agent after shear flow. Chinese Journal of Polymer Science  2017, 35 (12), 1540-1551.
[30].Yan-Hui Chen*, Hao-Qing Yang, Song Yang, Peng-Gang Ren, Qiu-Yu Zhang, Zhong-Ming Li. Polypropylene films with high barrier performance via crystal morphology manipulation. Journal of Materials Science 2017, 52 (9), 5449-5461.
[29].Shu-Gui Yang, Yan-Hui Chen, Bo-Wen Deng, Jun Lei*, Liang-Bin Li, Zhong-Ming Li*. Window of pressure and flow to produce β-crystals in isotactic polypropylene mixed with β-nucleating agent. Macromolecules 2017, 50 (12), 4807-4816.
[28].Yong Ma, Chun-Ping Hou, Hao Zhang, Ming-Tao Qiao, Yan-Hui Chen, He-Peng Zhang*, Qiu-Yu Zhang, Zhan-Hu Guo. Morphology-dependent electrochemical supercapacitors in multi-dimensional polyaniline nanostructures. Journal of Materials Chemistry A. 2017, 5, 14041-14052.
[27].Yong Ma, Hao Zhang, Chun-Ping Hou, Ming-Tao Qiao, Yan-Hui Chen, He-Peng Zhang*, Qiu-Yu Zhang. Multidimensional polyaniline structures from micellar templates. Journal of Materials Science, 2017. 52(6), 2995-3002.
2016年
[26].Yan-Hui Chen*, Song Yang, Hao-Qing Yang, Min Zhang, Qiu-Yu Zhang, Zhong-Ming Li. Toughness reinforcement in carbon nanotubes filled high impact polypropylene copolymer with β-nucleating agent. Industrial & Engineering Chemistry Research 2016, 55(32), 8733-8742.
[25].Xing-Feng Lei, Ming-Tao Qiao, Li-Dong Tian, Yan-Hui Chen*, Qiuyu Zhang*. Tunable permittivity in high–performance hyperbranched polyimide films by adjusting backbone rigidity. The Journal of Physical Chemistry C 2016, 120 (5), 2548-2561.
[24].Xing-Feng Lei, Yan-Hui Chen*, Ming-Tao Qiao, Li-Dong Tian, Qiuyu Zhang*. Hyperbranched polysiloxane (HBPSi)–based polyimide films with ultralow dielectric permittivity, desirable mechanical and thermal properties. Journal of Materials Chemistry C 2016, 4, 2134-2146.
[23].Yan-Hui Chen, Song Yang, Hao-Qing Yang, Gan-Ji Zhong, Du-Fei Fang, Benjamin S. Hsiao, Zhong-Ming Li*. Deformation behavior of oriented β-crystals in injection-molded isotactic polypropylene by in situ X-ray scattering. Polymer. 2016, 84, 254-266.
[22].Yong Ma,Yan-Hui Chen,Ang Mei,Ming-Tao Qiao,Chun-Ping Hou,He-Peng Zhang*,Qiu-Yu Zhang*. Fabricating and tailoring polyaniline (pani) nanofibers with high aspect ratio in a low-acid environment in a magnetic field. Chem-Asian J. 2016, 11(1): 93-111.
[21].Yong Ma,Yan-Hui Chen,Chun-Ping Hou,Hao Zhang, Ming-Tao Qiao,He-Peng Zhang*,Qiu-Yu Zhang. * Amino-Fe3O4 microspheres directed synthesis of a series of polyaniline hierarchical nanostructures with different wettability. Scientific Reports 2016, 6. 33313.
2015年
[20].Yan-Hui Chen, Du-Fei Fang, Jun Lei, Liang-Bin Li, Benjamin S. Hsiao, Zhong-Ming Li*. Shear-induced precursor relaxation-dependent growth dynamics and lamellar orientation of β-crystals in β-nucleated isotactic polypropylene. The Journal of Physical Chemistry B 2015, 119, 5716-5727.
[19].Yan-Hui Chen, Du-Fei Fang, Benjamin S. Hsiao, Zhong-Ming Li*. Insight into unique deformation behavior of oriented isotactic polypropylene with branched shish-kebabs. Polymer. 2015, 60, 274-283.
[18].Xing-Feng Lei, Ming-Tao Qiao, Li-Dong Tian, Yan-Hui Chen, Qiuyu Zhang*. Evolution of surface chemistry and morphology of hyperbranched polysiloxane polyimides in simulated atomic oxygen environment. Corrosion Science 2015. 98, 560-572.
[17].Yong Ma, Ming-Tao Qiao, Yan-Hui Chen, Bao-Liang Zhang, Qiu-Yu Zhang*. Fabrication of electromagnetic Fe3O4@polyaniline nanofibers with high aspect ratio. RSC Advances, 2015. 5(13), 9986-9992.
[16].Yong Ma, Ming-Tao Qiao, Chun-Ping Hou, Yan-Hui Chen, Ming-Liang Ma, He-Peng Zhang*,Qiu-Yu Zhang*. Preparation of polyaniline (PANI)-coated Fe3O4 microsphere chains and PANI chain-like hollow spheres without using surfactants. RSC Advances, 2015. 5(125), 103064-103072.
2014年及以前
[15].Yan-Hui Chen, Zhang-Yong Huang, Zhong-Ming Li*, Jian-Hua Tang, Benjamin S. Hsiao. Simultaneous improvement of strength and toughness in fiber reinforced isotactic polypropylene composites by shear flow and β-nucleating agent. RSC Advances. 2014, 4: 14766-14776.
[14].Yan-Hui Chen, Gan-Ji Zhong, Benjamin S. Hsiao, Zhong-Ming Li*. Structure evolution upon uniaxial drawing skin- and core-layers of injection-molded isotactic polypropylene by in situ synchrotron X-ray scattering. Journal of Polymer Science Part B-Polymer Physics 2013, 51: 1618-1631.
[13].Yan-Hui Chen, Zheng-Chi Zhang, Jian-Hua Tang, Zhong-Ming Li*, Benjamin S. Hsiao. Microstructure and mechanical properties of isotactic polypropylene composite with two-scale reinforcement. Polymers for Advanced Technologies 2012, 23: 1580-1589.
[12].Yan-Hui Chen, Gan-Ji Zhong, Jun Lei, Zhong-Ming Li*, Benjamin S. Hsiao. In-situ synchrotron x-ray scattering study on isotactic polypropylene crystallization under the coexistence of shear flow and carbon nanotubes. Macromolecules. 2011, 44: 8080-8092.
[11].Yan-Hui Chen, Yi-Min Mao, Benjamin S. Hsiao, Zhong-Ming Li*. Competitive growth of alpha- and beta-Crystals in beta-nucleated isotactic polypropylene under shear flow. Macromolecules. 2010, 43: 6760-6771.
[10].Yan-Hui Chen, Zhong-Ming Li*, Gan-Ji Zhong, Yan Wang, Liang-Bin Li. Unusual tuning of mechanical properties of isotactic polypropylene using counteraction of shear flow and β nucleating agent on β-Form nucleation. Macromolecules. 2009, 42: 4343-4348.
[9].Zhang-Yong Huang, Yan-Hui Chen, Jian-Hua Tang, Zhong-Ming Li*. Hierarchic structure and mechanical property of short glass fiber/isotactic polypropylene composites containing β-nucleation agent. Polym. Plast. Technol. Eng. 2013, 52: 80-99.
[8].Hao Wang, Peng-Gang Ren, Yan-Hui Chen, Ding-Xiang Yan, Zhong-Ming Li*, Ling Xu*. Effects of dodecyl amine functionalized graphene oxide on the crystallization behavior of isotactic polypropylene. J. Appl. Polym. Sci. 2014, 131 (6), 596-602.
[7].Zheng-Chi Zhang, Rui Zhang, Yan-Fei Huang, Jun Lei*, Yan-Hui Chen, Jian-Hua Tang, Zhong-Ming Li*. efficient utilization of atactic polypropylene in its isotactic polypropylene blends via "structuring" processing. Industrial & Engineering Chemistry Research.2014,53(24):10144-10154.
[6].Hua-Dong Huang,Chun-Yan Liu, Dan Li,Yan-Hui Chen, Gan-Ji Zhong*,Zhong- Ming Li*. Ultra-low gas permeability and efficient reinforcement of cellulose nanocomposite films by well aligned graphene oxide nanosheets. Journal of Materials Chemistry A.2014,2(38):15853-15863.
[5].Yan Wang, Jia-Zhuang Xu, Yan-Hui Chen, Kai Qiao, Ling Xu, Xu Ji, Zhong-Ming Li*, and Benjamin S. Hsiao. Crystalline Structure Changes in Preoriented Metallocene-Based Isotactic Polypropylene upon Annealing. J. Phys. Chem. B 2013, 117: 7113-7122.
[4].Zheng-Chi Zhang, Jun Lei*, Yan-Hui Chen, Jun Chen, Xu Ji, Jian-Hua Tang, Zhong-Ming Li*. Tailored structure and properties of injection-molded atactic polypropylene/isotactic polypropylene blend. ACS Sustainable Chem. Eng. 2013, 1: 9379-49.
[3].Huan Xu, Lan Xie, Yan-Hui Chen, Hua-Dong Huang, Jia-Zhuang Xu, Gan-Ji Zhong*, Benjamin S. Hsiao, Zhong-Ming Li*. Strong shear flow-driven simultaneous formation of classic shish-kebab, hybrid shish-kebab, and transcrystallinity in poly(lactic acid)/natural fiber biocomposites. ACS Sustainable Chem. Eng. 2013, 1: 1619-1629.
[2].Fang-Li Lou, Yi Xu, Huan Pang, Yan-Hui Chen, Jia-Zhuang Xu, Zhong-Ming Li*, Ai Lu. Non-isothermal crystalliztion kinetics of poly(phenylene sulfide) with low crosslinking levels. Chin. J. Polym. Sci., 2013, 31: 462-470.
[1].Chen Chen, Huan Pang, Zhong Liu, Yu-Bao Li, Yan-Hui Chen, Wei-Qin Zhang, Xu Ji, Jian-Hua Tang*. Enhanced foamability of isotactic polypropylene composites by polypropylene-graft-carbon nanotube. J. Appl. Polym. Sci. 2013, 130: 961-968.
发明专利:
1. 一种含仿竹林导热网络的绝缘复合材料及其制备方法
西北工业大学宁波研究院
陈妍慧; 梁昊昱; 丁栋梁; 王焕平; 孙喆; 王喣; 黄悦恒; 张秋禹
公开日期: 2025-05-06 申请日期: 2024-08-22 公开号: CN118834533B

2. 一种含萘环生物基聚酰胺共聚材料及其制备方法
西北工业大学; 西北工业大学宁波研究院
杨博; 杨梦晶; 刘振国; 陈妍慧; 黄冰莹; 刘雪; 柏龚; 吴叔青
公开日期: 2024-11-15 申请日期: 2024-07-19 公开号: CN118955891A

3. 一种高阻隔可降解材料的制备方法
西北工业大学; 西北工业大学宁波研究院
杨梦晶; 刘振国; 陈妍慧; 杨博; 贾光耀; 郭杭植
公开日期: 2024-10-15 申请日期: 2024-07-31 公开号: CN118772394A

4. 一种用于IME技术耐高温基底膜的制备方法
西北工业大学宁波研究院; 河南省柔性电子产业技术研究院
杨梦晶; 陈勇吉; 郭杭植; 刘振国; 陈妍慧; 杨博
公开日期: 2024-07-05 申请日期: 2024-04-30 公开号: CN118290716A

5. 一种UV固化高透光率防水型光学胶及其制备方法
深圳陕煤高新技术研究院有限公司; 西北工业大学
陈妍慧; 黄少淮; 汤标; 黄耐忠; 张鹏辉; 王焕平
公开日期: 2024-04-09 申请日期: 2023-11-22 公开号: CN117844381A

6. 一种二元胺单体及含该二元胺单体的本征高介电、低损耗聚酰亚胺
西北工业大学宁波研究院
陈妍慧; 吴志强; 彭翊雯; 于钦羽
公开日期: 2023-09-29 申请日期: 2023-06-19 公开号: CN116813511A

7. 一种用于汽车内饰功能器件的印刷电路银浆及其制备方法
西北工业大学宁波研究院
陈勇吉; 刘振国; 孟鸿; 陈俊似; 黄维; 陈妍慧; 郝武昌; 王琦胜
公开日期: 2023-03-14 申请日期: 2022-12-12 公开号: CN115798785A

8. 一种聚合物-粉体共混体系的均匀性检测评价方法
西北工业大学
李子寓; 刘振国; 杨梦红; 陈妍慧; 黄维
公开日期: 2022-08-19 申请日期: 2022-06-07 公开号: CN114923820A

9. 一种聚酰胺复合纳滤膜
刘振国
陈妍慧; 刘振国; 宗鹏安
公开日期: 2022-07-15 申请日期: 2022-03-09 公开号: CN114749041A

10. 一种降解可控的聚碳酸丙烯酯制备方法
西北工业大学宁波研究院; 烟台大学
刘振国; 秦玉升; 陈妍慧; 杨梦晶
公开日期: 2022-03-11 申请日期: 2021-11-04 公开号: CN114163686A

11. 一种面间高导热复合材料及其制备方法
西北工业大学深圳研究院
陈妍慧; 丁栋梁; 王喣; 张诗煜; 张亮亮; 刘振国; 张秋禹
公开日期: 2022-02-11 申请日期: 2021-11-15 公开号: CN114031943A

12. 一种含COF包覆碳纤维的绝缘导热垫片及其制备方法
广东乐普泰新材料科技有限公司; 西北工业大学深圳研究院
陈妍慧; 丁栋梁; 王喣; 刘志军; 刘振国; 孟鸿; 张秋禹; 刘继锋; 羊辉
公开日期: 2022-02-08 申请日期: 2021-11-26 公开号: CN114015238A

13. 一种高导热聚多巴胺修饰氮化硼/聚酰亚胺复合材料及其制备方法
西北工业大学
闵超; 刘振国; 张秋禹; 丁栋梁; 李剑; 陈妍慧; 尚志慧
公开日期: 2022-01-28 申请日期: 2019-11-23 公开号: CN110713716B

14. 一种可降解呼吸膜及其制备方法
宜兴西工维新科技有限公司; 刘振国
刘振国; 陈妍慧; 宫蕾
公开日期: 2021-10-22 申请日期: 2021-07-30 公开号: CN113527847A

15. 一种高效导热硅脂及其制备方法
广东乐普泰新材料科技有限公司
刘振国; 张秋禹; 佟振双; 马宝光; 羊辉; 孟鸿; 刘志军; 陈妍慧; 王密; 黄维
公开日期: 2021-04-13 申请日期: 2019-10-09 公开号: CN112646552A

16. 一种含冠醚羧酸类化合物BPDC-12-C-4及其制备方法和用途
西北工业大学
张亮亮; 何慧慧; 陈妍慧; 闵超; 刘振国; 李佳佩
公开日期: 2020-10-09 申请日期: 2020-07-07 公开号: CN111747923A

17. 一种含冠醚羧酸类化合物BPDC-12-C-4及其制备方法和用途
西北工业大学
张亮亮; 何慧慧; 陈妍慧; 闵超; 刘振国; 李佳佩
公开日期: 2020-10-09 申请日期: 2020-07-07 公开号: CN111747923A

18. 一种低温超高韧性聚丙烯共混复合材料及其制备方法
西北工业大学
陈妍慧; 吴志强; 周会会; 刘振国; 张亮亮
公开日期: 2020-09-08 申请日期: 2020-06-01 公开号: CN111635588A

19. 一种高导热低摩擦系数聚苯硫醚/氮化硼复合材料
西北工业大学
陈妍慧; 吴志强; 周会会; 刘振国; 张亮亮
公开日期: 2020-09-01 申请日期: 2020-06-01 公开号: CN111607229A

20. 一种用于气相防锈膜的微胶囊
刘振国
刘振国; 马宝光; 闵超; 陈妍慧
公开日期: 2020-05-01 申请日期: 2019-11-25 公开号: CN111088496A
科研项目:
[1] 国家自然科学基金面上项目,编号:22378332,起止日期:2024.01-2027.12。
[2] 浙江省柔性电子重点实验室开放基金,编号:2022FE004,起止日期:2022.7-2023.7。
[3] 国家自然科学基金面上项目,编号:21978240,起止日期:2020.1-2023.12。
[4] 陕西省自然科学基础研究计划青年项目,编号:2020JQ-179,起止日期:2020.1-2021.12。
[5] 国家自然科学基金面上项目,编号:21676217,起止日期:2017.1-2020.12。
[6] 陕西省高校科协青年人才托举计划项目,编号:20160105,起止日期:2017.1-2018.12。
[7] 国家自然科学基金青年基金项目,编号:51503170,起止日期:2016.1-2018.12。
[8] 国家自然科学基金面上项目,编号:51473135,起止日期:2015.1-2018.12。
[9] 国防科工局国家专项工程项目,编号:D5020200012,起止日期:2020.1-2021.12。
[10] 陕西省自然科学基础研究计划,编号:2019JLM-4,起止时间:2019.1-2022.7。
[11] 广东省重点领域研发计划项目,编号:2020B010178001,起止时间:2019.12-2023.12。
[12] 陕煤-秦岭基础科学研究五年行动计划,编号:SHYJY2022012,起止时间:2022.7-2026.7。
[13] 企业横向项目,编号:KY2106003,起止时间:2021.6-2021.11。
[14] 企业横向项目,编号:KY2106004,起止时间:2021.6-2022.3。

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