论文著作:
[1] Qin, Nan; Li, Na; Gao, Xiang*; Enhanced lithographic performance of polymer-bound PAG photoresists synthesized via RAFT polymerization, Polymer Chemistry, 2025, 16: 841-849
[2] Liu, Guangju; Li, Na; Gao, Xiang*; Novel sulfonylimide photo-acid generators for deep ultraviolet photoresist with improved acid diffusion inhibition performance through retarding the anion diffusion, Journal of Photochemistry and Photobiology A: Chemistry, 2025, 463
[3] Yu, Xuexian; Liu, Jun; Wu, Junmin; Ma, Sainan; Luo, Yingwu; Gao, Xiang*, Three-Dimensional Dual-Layered Conductive Binder Enables Stable and High Performance of SiOx /C Anodes, Journal of Energy Storage, 2024, 80, 110379.
[4] Luo, Hui; Ma, Sainan; Liu, Jun; Luo, Yingwu; Gao, Xiang*. Raspberry-like micro-size polymer with high spherical shape-retention capability and adhesion as binder for ceramic separators. European Polymer Journal, 2023.07, 194: 112184.
[5] Yu, Xuexian; Ma, Sainan; Zhang, Qinghua; Hou, Yang; He, Qinggang; Luo, Yingwu; Gao, Xiang*, Stretchable high-capacity SiOx/carbon anode with good cycle stability enabled by a triblock copolymer elastomer. EUROPEAN POLYMER JOURNAL, 2023.05, 190: 111989
[6] Cheng, Weijiang; Li, Na; Liu, Jingcheng; Ma, Sainan*; Gao, Xiang*. Solid Electrolyte Interface Film-Forming and Surface-Stabilizing Bifunctional 1,2-Bis((trimethylsilyl)oxy) Benzene as Novel Electrolyte Additive for Silicon-Based Lithium-Ion Batteries. ACS APPLIED MATERIALS & INTERFACES, 2023.10, 15(44), 51025-51035.
[7] Wang, Shengyu; Ma, Sainan; Li, Na; Jie, Suyun; Luo, Yingwu; Gao, Xiang*. Branched thermotropic liquid crystal polymer with favourable processability and dielectric properties. EUROPEAN POLYMER JOURNAL, 2023.09, 196, 112302.
[8] Zheng, Zhenan; Huang, Jie; Gao, Xiang*; Luo, Yingwu. Semi-Spontaneous Post-Crosslinking Triblock Copolymer Electrolyte for Solid-State Lithium Battery. BATTERIES, 2023.09, 9(9), 465.
[9] 程伟江; 汪何琦; 高翔*; 李娜; 马赛男*, 锂离子电池硅基负极电解液成膜添加剂的研究进展,化工学报, 2023, 74(2): 571-584.
[10] Tang, Jiali; Chen, Zheqi; Cai, Yiting; Gao, Yang; He, Jin; Xiao, Youhua; Mao, Jie; Zhao, Junjie; Gao, Xiang; Li, Tiefeng; Luo, Yingwu*. Composite elastomers with on-demand convertible phase separations achieve large and healable electro-actuation. MATERIALS HORIZONS, 2023.10, 10(10), 4501-4509.
[11] Gao, Feng; Tong, Zheming; Xiao, Weiqiang; Liu, Quan; Lu, Jianguo; Hou, Yang; He, Qinggang; Gao, Xiang; Cheng, Dangguo; Zhan, Xiaoli; Ma, Yaoguang; Zhang, Qinghua. Structural Engineering of Hierarchical Aerogels Hybrid Networks for Efficient Thermal Comfort Management and Versatile Protection. SMALL, 2023.06, 19, 25, DOI10.1002/smll.202301164.
[12] Zhu, Juan; Wang, Xinyue; Ke, Tian; Jia, Mingji; Jin, Biyu; Li, Yuanyuan; Yang, Qiwei; Ren, Lanhui; Ren, Yongyuan; Cheng, Dangguo; Lu, Jianguo; Gao, Xiang; He, Qinggang; Hou, Yang; Zhan, Xiaoli; Zhang, Qinghua. Nickel single atom overcoordinated active sites to accelerate the electrochemical reaction kinetics for Li-S cathode. 2023.03, JOURNAL OF ENERGY CHEMISTRY, 78, 203-210, DOI10.1016/j.jechem.2022.08.041.
[13] Xu, H.; Ma, S.; Hou, Y.; Zhang, Q.; Wang, R.; Luo, Y.; Gao, X.*, Machine Learning-Assisted Identification of Copolymer Microstructures Based on Microscopic Images. ACS Applied Materials & Interfaces 2022.10, 14(41), 47157-47166.(他引次数:0,影响因子:10.383)
[14] Tong, Z.; Guo, H.; Di, Z.; Sheng, Y.; Song, L.; Hu, J.; Gao, X.; Hou, Y.; Zhan, X.*; Zhang, Q.*, Squid Inspired Elastomer Marine Coating with Efficient Antifouling Strategies: Hydrophilized Defensive Surface and Lower Modulus. Colloids and Surfaces B: Biointerfaces 2022.05, 213, 112392. (他引次数:2,影响因子:5.999)
[15] 谢若晗; 吴菁菁; 高翔*; 苏荣欣, 可拉伸电池的最新研究进展, 高校化学工程学报, 2022.04, 卷36, 期2, 143-152
[16] Wei, D.; Yu, X.; Luo, Y.; Gao, X.; Ma, S.*, Improving the Performance of the SiO/C Anode by Employing the Triblock Copolymer Binder and Copper Nanowires. Energy & Fuels 2022.04, 36(8), 4557-4563. (他引次数:0,影响因子:4.654)
[17] Ma, Sainan; Wu, Yuhao; Lv, Ruiling; Gao, Xiang*; Wang, Qianqian*. Mechanically robust biomass-derived carbonaceous foam for efficient solar water evaporation. 2022.11. 46(45), 21771-21779.
[18] Ma, Sainan; Wang, Qianqian; Chen, Ke; Yuan, Weiyong; Gao, Xiang; Li, Nian; Gao, Neng. Biomass Waste-Derived Solar Evaporator for Efficient and Low-Cost Water Evaporation. ENERGY TECHNOLOGY, 2022.12, 10(12), DOI10.1002/ente.202200900.
[19] He, J.; Chen, Z.; Xiao, Y.; Cao, X.; Mao, J.; Zhao, J.; Gao, X.; Li, T.; Luo, Y.*, Intrinsically Anisotropic Dielectric Elastomer Fiber Actuators. ACS Materials Letters 2022.03, 4(3), 472-479. (他引次数:0,影响因子:11.170)
[20] Hu, X.; Sun, J.; Zheng, W.; Zheng, S.; Xie, Y.*; Gao, X.; Yang, B.; Li, Z.; Lei, L.; Hou, Y.*, Layered Bismuth Oxide/Bismuth Sulfide Supported on Carrageenan Derived Carbon for Efficient Carbon Dioxide Electroreduction to Formate. Chinese Journal of Chemical Engineering 2022.03, 43, 116-123. (他引次数:0,影响因子:3.898)
[21] Tong, Z.; Rao, Q.; Chen, S.; Song, L.; Hu, J.; Hou, Y.; Gao, X.; Lu, J.; Zhan, X.*; Zhang, Q.*, Sea Slug Inspired Smart Marine Antifouling Coating with Reversible Chemical Bonds: Controllable Uv-Responsive Coumarin Releasing and Efficient Uv-Healing Properties. Chemical Engineering Journal 2022.02, 429, 132471. (他引次数:5,影响因子:16.744)
[22] 郑哲楠; 高翔*; 罗英武; 黄杰, 紫外光交联法制备全固态聚合物电解质, 化工学报, 2022.02, 卷73(1), 441-450.
[23] Li, Y.; Jin, B.; Wang, K.; Song, L.; Ren, L.; Hou, Y.; Gao, X.; Zhan, X.*; Zhang, Q.*, Coordinatively-Intertwined Dual Anionic Polysaccharides as Binder with 3d Network Conducive for Stable Sei Formation in Advanced Silicon-Based Anodes. Chemical Engineering Journal 2022.02, 429, 132235. (他引次数:2,影响因子:16.744)
[24] Rao, Q.; Tong, Z.; Song, L.; Ali, A.; Hou, Y.; He, Q.; Lu, J.*; Gao, X.; Zhan, X.; Zhang, Q.*, Nir-Driven Fast Construction of Patterned-Wettability on Slippery Lubricant Infused Surface for Droplet Manipulation. Chemical Engineering Journal 2022.01, 428, 131141. (他引次数:3,影响因子:16.744)
[25] Xie, R.; Yu, X.; Li, Z.; Zhang, Q.; Chen, J.; Lu, J.; Hou, Y.; He, Q.; Luo, Y.; Gao, X.*, A Stretchable All-Solid-State Polymer Electrolyte with Decoupled Ion Transport and Mechanical Supporting Networks to Achieve High and Stable Ion-Conductivity. Solid State Ionics 2021.11, 370, 115733.(他引次数:2,影响因子:3.699)
[26] Guo, Y.; Khatoon, R.; Lu, J.*; He, Q.; Gao, X.; Yang, X.; Hu, X.; Wu, Y.; Lian, J.; Li, Z.; Ye, Z., Regulating Adsorption Ability toward Polysulfides in a Porous Carbon/Cu3p Hybrid for an Ultrastable High-Temperature Lithium–Sulfur Battery. Carbon Energy 2021.11, 3(6), 841-855 (他引次数:6,影响因子:21.556)
[27] Khatoon, R.; Guo, Y.; Attique, S.; Ali, N.; Uddin, A.; Tian, Y.; Tang, H.; Gao, X.; He, Q.; Li, Z.; Ye, Z.; Lu, J.*, Advanced Configuration of N-Enriched Carbonized Tissue Paper as a Free-Standing Interlayer for Lithium–Sulfur Batteries at Wide-Range Temperatures. ACS Applied Energy Materials 2021.09, 4(9), 10091-10103. (他引次数:0,影响因子:6.959)
[28] Chen, Z.; Ma, Z.; Tang, J.; Xiao, Y.; Mao, J.; Cai, Y.; Zhao, J.; Gao, X.; Li, T.; Luo, Y.*, Adaptively Reconstructing Network of Soft Elastomers to Increase Strand Rigidity: Towards Free-Standing Electro-Actuation Strain over 100%. Materials Horizons 2021.08, 8(10), 2834-2841.(他引次数:1,影响因子:15.717)
[29] Jin, B.; Wang, D.; Zhu, J.; Guo, H.; Hou, Y.; Gao, X.; Lu, J.; Zhan, X.; He, X.*; Zhang, Q.*, A Self-Healable Polyelectrolyte Binder for Highly Stabilized Sulfur, Silicon, and Silicon Oxides Electrodes. Advanced Functional Materials 2021.07, 31(41), 2104433. (他引次数:7,影响因子:19.924)
[30] 曹佳宁; 高翔*; 罗英武; 苏荣欣,一种用于磷酸铁锂电极的水性粘结剂制备与性能研究. 化工学报 2021.04, 72(2), 1169-1180.
[31] Chen, Z.; Xiao, Y.; Fang, J.; He, J.; Gao, Y.; Zhao, J.; Gao, X.; Luo, Y. *, Ultrasoft-yet-Strong Pentablock Copolymer as Dielectric Elastomer Highly Responsive to Low Voltages. Chemical Engineering Journal 2021.02, 405, 126634.(他引次数:9,影响因子:16.744)
[32] Wang, K.; Wang, X.; Li, Z.; Yang, B.; Ling, M.; Gao, X.; Lu, J.; Shi, Q.; Lei, L.; Wu, G.*; Hou, Y.*, Designing 3d Dual Transition Metal Electrocatalysts for Oxygen Evolution Reaction in Alkaline Electrolyte: Beyond Oxides. Nano Energy 2020.11, 77, 105162.(他引次数:67,影响因子:19.069)
[33] Zhang, F.; Luo, Y.; Gao, X.*; Wang, R., Copolymerized Sulfur with Intrinsically Ionic Conductivity, Superior Dispersibility, and Compatibility for All-Solid-State Lithium Batteries. ACS Sustainable Chemistry & Engineering 2020.07, 8(32), 12100-12109. (他引次数:4,影响因子:9.224)
[34] Fang, J.; Gao, X.*; Luo, Y.*, Synthesis of (Hard-Soft-Hard)X Multiblock Copolymers Via Raft Emulsion Polymerization and Mechanical Enhancement Via Block Architectures. Polymer 2020.06, 201, 122602. (他引次数:7,影响因子:4.432)
[35] Yang, Z.; Luo, Y.; Gao, X.*; Wang, R.*, High-Safety All-Solid-State Lithium-Ion Battery Working at Ambient Temperature with in Situ UV-Curing Polymer Electrolyte on the Electrode. ChemElectroChem 2020.06, 7(12), 2599-2607.(他引次数:10,影响因子:4.782)
[36] Jin, Y.; Gao, X.; Luo, Y.*, Dielectric Elastomer Film with Anisotropic Actuation Deformation on Film Plane. Journal of Applied Polymer Science 2020.06, 137(23), 48795.(他引次数:2,影响因子:3.057)
[37] Yang, C.; Gao, X.; Luo, Y. *, End-Block-Curing Aba Triblock Copolymer Towards Dielectric Elastomers with Both High Electro-Mechanical Performance and Excellent Mechanical Properties. Chemical Engineering Journal 2020.02, 382, 123037.(他引次数:13,影响因子:16.744)
[38] Zheng, Z.; Gao, X.*; Luo, Y., Influence of Copolymer Chain Sequence on Electrode Latex Binder for Lithium-Ion Batteries. Colloid and Polymer Science 2019.10, 297(10), 1287-1299.(他引次数:3,影响因子:2.434)
[39] Li, H.; Luo, Y.; Gao, X.*, Preparation of Soft Shape Memory Polymer and Its Application as a Compliant Thermal-Triggered Gripper. Macromolecular Chemistry and Physics 2019.08, 220(15), 1900229.(他引次数:8,影响因子:2.996)
[40] Gu, H.; Wang, G.; Zhu, C.; Hu, Y.; Zhang, X.; Wen, W.; Yang, X.; Wang, B.; Gao, X.; Zhan, X.; Li, J.; Ma, Z.*; He, Q.*, Correlating Cycle Performance Improvement and Structural Alleviation in Limn2-XMxO4 Spinel Cathode Materials: A Systematic Study on the Effects of Metal-Ion Doping. Electrochimica Acta 2019.03, 298, 806-817.(他引次数:17,影响因子:7.336)
[41] Huang, J.*; Luo, Y.; Gao, X.*, Morphology and Mechanical Properties of Acrylonitrile-Styrene-Acrylate Toughened Plastics with Block Copolymer Chain Structure. Polymer Engineering & Science 2019.02, 59(2), 389-395.(他引次数:1,影响因子:16.744)
[42] Wei, D.; Mao, J.; Zheng, Z.; Fang, J.; Luo, Y.; Gao, X.*, Achieving a High Loading Si Anode Via Employing a Triblock Copolymer Elastomer Binder, Metal Nanowires and a Laminated Conductive Structure. Journal of Materials Chemistry A 2018.11, 6(42), 20982-20991.(他引次数:19,影响因子:14.511)
[43] 高翔*; 叶向群; 朱明乔; 何潮洪, 比较教学法在化工原理实验课程教学中的应用. 实验室研究与探索 2018.11, 37(11), 215-218.
[44] 高翔*; 国媛; 魏迪锋; 罗英武; 苏荣欣, 锂离子电池硅基负极黏结剂的研究新进展. 化工学报 2018.10, 69(11), 4605-4613.
[45] Liu, D.; Wang, J.; Zhang, Y.; Liu, J.; Li, H.; Zhou, L.; Wu, S.*; Gao, X.*, Preparation of Core–Shell Structured Au@Sio2 Nanocomposite Catalyst with Au Core Size Below 2 nm without High-Temperature Calcination Procedure. Journal of Materials Science 2018.06, 53(11), 8086-8097.(他引次数:6,影响因子:4.682)
[46] Zhou, A.; Sim, R.; Luo, Y.; Gao, X.*, High-performance stretchable electrodes prepared from elastomeric current collectors and binders. Journal of Material Chemistry A 2017, 5, 21550-21559.
[47] Li, H.; Luo, Y.; Gao, X.*, Core-shell nano-latex blending method to prepare multi-shape memory polymers. Soft Matter 2017, 13, 5324-5331.
[48] Wang, S.; Li, J. X.; Qi, M. F.; Gao, X.; Wang, W. J. *, Toward Maximizing the Mechanical Property of Interconnected Macroporous Polystyrenes Made from High Internal Phase Emulsions. Langmuir 2017, 33, 14295-14303.
[49] 李丽红; 王永常; 高翔*; 朱世平, 新型锂硫电池硫正极水基粘结剂的制备研究. 高校化学工程学报 2017, 3, 669-678.
[50] Zheng, Z.; Gao, X.*; Luo, Y.; Zhu, S., Employing Gradient Copolymer To Achieve Gel Polymer Electrolytes with High Ionic Conductivity. Macromolecules 2016, 49, 2179-2188.
[51] Li, H.; Gao, X.*; Luo, Y., Multi-shape memory polymers achieved by the spatio-assembly of 3D printable thermoplastic building blocks. Soft Matter 2016, 12, 3226-3233.
[52] Zhu, Y.; Gao, X.; Luo, Y.*, Core-shell particles of poly(methyl methacrylate)-block-poly(n-butyl acrylate) synthesized via reversible addition-fragmentation chain-transfer emulsion polymerization and the polymer's application in toughening polycarbonate. Journal of Applied Polymer Science 2016, 133.
[53] Yan, K.; Gao, X.; Luo, Y.*, Kinetics of RAFT Emulsion Polymerization of Styrene Mediated by Oligo(Acrylic Acid-b-Styrene) Trithiocarbonate. AICHE Journal 2016, 62, 2126-2134.
[54] Yan, K.; Gao, X.*; Luo, Y.*, Well-Defined High Molecular Weight Polystyrene with High Rates and High Livingness Synthesized via Two-Stage RAFT Emulsion Polymerization. Macromolecular Rapid Communications 2015, 36, 1277-1282.
[55] Yan, K.; Gao, X.*; Luo, Y.*, Correlation between polydispersities of molecular weight distribution and particle size distribution in RAFT Emulsion Polymerization of Styrene. Journal of Polymer Science Part a-Polymer Chemistry 2015, 53, 1848-1853.
[56] Luo, Y.; Wang, A.-N.; Gao, X.*, One-pot interfacial polymerization to prepare PolyHIPEs with functional surface. Colloid and Polymer Science 2015, 293, 1767-1779.
[57] Guo, Y.; Gao, X.*; Luo, Y.*, Suppressing the Long-Chain Branching in the Synthesis of Poly(styrene-b-butyl acrylate-b-styrene) in RAFT Emulsion Polymerization by Tuning the Interfacial Properties. Journal of Polymer Science Part a-Polymer Chemistry 2015, 53, 1464-1473.
[58] Guo, Y.; Gao, X.*; Luo, Y.*, Mechanical Properties of Gradient Copolymers of Styrene and n-Butyl Acrylate. Journal of Polymer Science Part B-Polymer Physics 2015, 53, 860-868.
[59] Gao, X.*; Sheng, W.; Wang, Y.; Lin, Y.; Luo, Y.; Li, B.-G., Polyethylene battery separator with auto-shutdown ability, thermal stability of 220 °C, and hydrophilic surface via solid-state ultraviolet irradiation. Journal of Applied Polymer Science 2015, 132.
[60] Zhu, Y.; Bi, S.; Gao, X.; Luo, Y.*, Comparison of RAFT Ab Initio Emulsion Polymerization of Methyl Methacrylate and Styrene Mediated by Oligo(methacrylic acid-b-methyl methacrylate) Trithiocarbonate Surfactant. Macromolecular Reaction Engineering 2015, 9, 503-511.
[61] Guo, Y.; Zhang, J.; Xie, P.; Gao, X.*; Luo, Y.*, Tailor-made compositional gradient copolymer by a many-shot RAFT emulsion polymerization method. Polymer Chemistry 2014, 5, 3363-3371.
[62] Huang, J.; Zhao, S.; Gao, X.; Luo, Y.*; Li, B., Ab Initio RAFT Emulsion Copolymerization of Styrene and Acrylonitrile. Industrial & Engineering Chemistry Research 2014, 53, 7688-7695.
[63] Huang, J.; Zhao, S.; Gao, X.; Luo, Y.*; Li, B., RAFT Ab Initio Emulsion Polymerization of Styrene Using Poly(acrylic acid)-b-polystyrene Trithiocarbonate of Various Structures as Mediator and Surfactant. Macromolecular Reaction Engineering 2014, 8, 696-705.
[64] Luo, Y.; Guo, Y.; Gao, X.*; Li, B.-G.; Xie, T., A General Approach Towards Thermoplastic Multishape-Memory Polymers via Sequence Structure Design. Advanced Materials 2013, 25, 743-748.
[65] Luo, Y.; Wang, A.-N.; Gao, X.*, Pushing the mechanical strength of PolyHIPEs up to the theoretical limit through living radical polymerization. Soft Matter 2012, 8, 1824-1830.
[66] Luo, Y.; Wang, A.-N.; Gao, X.*, Miniemulsion template polymerization to prepare a sub-micrometer porous polymeric monolith with an inter-connected structure and very high mechanical strength. Soft Matter 2012, 8, 7547-7551.
[67] Ye, X.; Luo, Y.; Gao, X.*; Zhu, S.*, Design and evaluation of a thermochromic roof system for energy saving based on poly(N-isopropylacrylamide) aqueous solution. Energy and Buildings 2012, 48, 175-179.
[68] Zhou, D.; Gao, X.; Wang, W. J.; Zhu, S.*, Termination of Surface Radicals and Kinetic Modeling of ATRP Grafting from Flat Surfaces by Addition of Deactivator. Macromolecules 2012, 45, 1198-1207.
[69] Gao, X.; Zhu, S.*, Modeling Analysis of Chain Transfer in Reversible Addition-Fragmentation Chain Transfer Polymerization. Journal of Applied Polymer Science 2011, 122, 497-508.
[70] Feng, W.; Gao, X.; McClung, G.; Zhu, S.*; Ishihara, K.; Brash, J. L., Methacrylate polymer layers bearing poly(ethylene oxide) and phosphorylcholine side chains as non-fouling surfaces: In vitro interactions with plasma proteins and platelets. Acta Biomaterialia 2011, 7, 3692-3699.
[71] Gao, X.; Zhu, S.*; Sheardown, H.; Brash, J. L., Nanoscale patterning through self-assembly of hydrophilic block copolymers with one chain end constrained to surface. Polymer 2010, 51, 1771-1778.
[72] Gao, X.; Feng, W.; Zhu, S.*; Sheardown, H.; Brash, J. L., Kinetic Modeling of Surface-Initiated Atom Transfer Radical Polymerization. Macromolecular Reaction Engineering 2010, 4, 235-250.
[73] Gao, X.; Kucerka, N.; Nieh, M.-P.; Katsaras, J.; Zhu, S.*; Brash, J. L.; Sheardown, H., Chain Conformation of a New Class of PEG-Based Thermoresponsive Polymer Brushes Grafted on Silicon as Determined by Neutron Reflectometry. Langmuir 2009, 25, 10271-10278.
[74] Gao, X.; Feng, W.; Zhu, S.*; Sheardown, H.; Brash, J. L., A facile method of forming nanoscale patterns on poly(ethylene glycol)-based surfaces by self-assembly of randomly grafted block copolymer brushes. Langmuir 2008, 24, 8303-8308.
授权专利:
1. 一种高性能无皂氟硅丙胶乳涂料及其制备方法,ZL202011211037.0,授权日期:2022年4月15日,曹佳宁,高翔,罗英武,赵俊杰
2. 一种水基粘结剂制备的锂离子电池电极,ZL 201810228887.8,授权日期:2021年7月13日,高翔,郑哲楠,罗英武
3. 一种基于硅基材料的锂离子电池负极,ZL 201810123558.7,授权日期:2021年5月7日,高翔,魏迪锋,罗英武
4. 一种基于石墨烯-硫复合材料的锂电池正极及其制备方法,ZL 2018112225269,授权日期:2021年4月6日,夏瑶琪,裴海娟,张帆,高翔,罗英武
5. 一种基于硅的锂离子电池负极,ZL 201810122407.X,授权日期:2020年12月29日,高翔,魏迪锋,罗英武
6. 一种高熔融指数的热塑性弹性体及其制备方法,ZL 201810474427.3,授权日期:2020年10月16日,方进伟,罗英武,高翔
7. 一种采用嵌段共聚物作为微胶囊壁材制备微胶囊的方法,ZL 201810631792.0,授权日期:2020年10月13日,夏春苗,高翔,罗英武
8. 一种高倍率可拉伸电致发光器件及其制备方法,ZL 201811591957.2,授权日期:2020年7月7日,谢沛乐,罗英武,高翔
9. 一种窄分子量分布的多嵌段共聚物及其制备方法, ZL 201910285998.7,授权日期:2020年4月28日,方进伟, 罗英武,高翔,李伯耿
10. 一种锂离子电池可拉伸电极及其制备方法,ZL201710771001.X,高翔,周傲,罗英武,授权日期: 2019年12月31日
11. 一种嵌段共聚物/碳纳米管复合导电弹性体的制备方法, ZL201710770987.9,周傲,高翔,罗英武,授权日期:2019年07月23日,
12. 一种采用嵌段共聚物胶乳制备多相聚合物材料的方法,ZL201710548047.5,高翔,李宏泽,罗英武,授权日期:2019年4月19日
13. 一种基于硅的锂离子电池负极及其制备方法,ZL201610142109.8,高翔,张帆,罗英武,授权日期:2019年02月05日
14. 一种高比能量密度锂离子电池,ZL201610600899.X,高翔、张帆、罗英武、郑哲楠,授权日期:2019年5月28日
15. 一种锂电池用可热交联聚合物电解质膜的制备方法, ZL201610270636.7,郑哲楠,黄杰,高翔,王永常,罗英武,授权日期:2018年05月08日
16. Block copolymer comprising a block with glass transition temperature higher than 100°C and method for preparing the same,美国专利 US 9,920,156 B2,许少宏,高翔,罗英武,授权日期:2018年3月20日
17. 一种硫正极用水基电极粘结剂及制备方法,ZL201610832622.X,高翔,李丽红,罗英武,朱世平,授权日期:2018年4月27日,
18. 一种水基电极粘结剂及制备方法,ZL201610671015.X,高翔,郑哲楠,罗英武,张帆,授权日期:2018年2月2日
19. 嵌段共聚物增韧剂及制备方法与应用,ZL201510297485.X,朱月,高翔,罗英武,授权日期:2018年1月12日
20. 基于嵌段共聚物的丙烯腈-苯乙烯-丙烯酸酯韧性树脂的制备方法,ZL201510393636.1,黄杰,高翔,罗英武,授权日期:2017年10月31日
21. Poly((meth)acrylic acid-b-styrene-b-butadiene-b-styrene) block copolymer latex and method for preparing the same, 美国专利,专利号 US 9,328,234 B2,罗英武,魏任重,高翔,授权日期:2016年5月3日
22. 聚((甲基)丙烯酸-b-苯乙烯-b-(异戊二烯-co-丁二烯)-b-苯乙烯)嵌段共聚物胶乳及制备方法,ZL201410269519.X,高翔,罗英武,授权日期:2016年8月24日
23. Method for preparing porous anti-reflective thin film composed of hollow polymer nanoparticles, 美国专利,专利号 US 9,180,486 B2, 孙志娟,高翔,罗英武,授权日期:2015年11月10日
24. 一种辐照交联锂离子电池隔膜及其制备方法, ZL201310196439.1,高翔、盛伟、 李伯耿、罗英武、林叶刚、王永常,授权日期:2015年4月29日
25. 含玻璃化温度高于100oC嵌段的嵌段共聚物及制备方法,ZL201210243061.1,许少宏,高翔,罗英武,授权日期:2014年7月16日
26. 高内相乳液可逆加成断裂链转移聚合制备多孔材料的方法,王安妮,高翔,罗英武,ZL201110370935.5,授权日期:2014年6月4日
27. 一种V型梯度共聚物及其制备方法, ZL201210387662.X,郭云龙,高翔,罗英武,授权日期:2014年4月16日
28. 聚苯乙烯-b-聚丁二烯嵌段共聚物纳米胶乳及其制备方法,ZL201210084866.6,魏任重,高翔,罗英武,授权日期:2014年1月29日
29. 由聚合物纳米中空胶囊制备超级绝热聚合物材料的方法,ZL201110289648.1,罗英武,高翔,叶长怀,授权日期:2013年8月7日
30. 聚((甲基)丙烯酸-b-苯乙烯-b-丁二烯-b-苯乙烯)嵌段共聚物胶乳及其制备方法,ZL201210067021.6,罗英武,魏任重,高翔,授权日期:2013年9月25日
31. 聚((甲基)丙烯酸-b-丁二烯)嵌段共聚物及其制备方法,ZL201110119838.9,魏任重,高翔,罗英武,授权日期:2012年11月14日