盛鑫鑫

发布日期:2021-03-09

       

盛鑫鑫    Xinxin Sheng    教授

所属学院:

材料与能源学院

导师类别:

博士生导师、硕士生导师

科研方向:

功能高分子复合材料、相变储能复合材料

功能涂料与胶黏剂

联系方式:

xinxin.sheng@gdut.edu.cn

硕士招生学院:

材料与能源学院


个人简述


盛鑫鑫,湖北孝感人,工学博士,教授,博士生导师主要从事高性能聚合物材料的合成、基于二维纳米材料功能高分子复合材料与相变储能复合材料及其应用研究、以及功能涂料与胶黏剂应用等领域的研究。主持国家自然科学基金、云南省重点研发计划项目课题、粤港澳联合创新领域专题项目、广东省自然科学基金以及产学研校企合作项目等10项。以第一/通讯作者在Advanced Functional Materials、ACS Macro LettersACS Sustainable Chemistry & EngineeringChemical Engineering ScienceJournal of Materials Chemistry AComposites Science and TechnologyComposites Part AComposites Part BJournal of Materials Science & Technology等期刊发表论文80余篇,其中ESI高被引论文、热点论文30余篇,累计被引用9100余次,H指数为58。获得授权中国发明专利10余项。以第一/通讯作者发表教改论文4篇,其中核心期刊2篇。



学科领域

科学学位:材料科学与工程

专业学位:材料工程化学工程



教育背景

2016年6月 华南理工大学化学工艺专业  工学博士学位

2014年9月2016年3月  在苏黎世联邦理工学院(ETH Zurich)化学系  联合培养博士生

2011年6月  在武汉轻工大学应用化学专业  获理学学士学位


工作经历

2025年7月—至今     广东工业大学  材料与能源学院  教授

2020年1月2025年6月     广东工业大学  材料与能源学院  副教授

2016年7月—2019年12月   广东工业大学  材料与能源学院  讲师



学术兼职

现任中国复合材料学会导热复合材料分会委员,担任《Corrosion Communications》《中国腐蚀与防护学报》《涂料工业》《材料保护》青年编委,长期担任Advanced Functional Materials、ACS NanoAdvanced ScienceGreen ChemistryChemical Engineering Journal等国际期刊审稿人。



主要荣誉

2026年 1 月 2025年广东工业大学先进科技工作者二等奖

20242 获广东工业大学2023年度优秀研究生导师

2022年 1 月 广东工业大学20202021学年优秀班主任

2020年12 获广东省第十届大学生材料创新大赛“优秀指导老师”称号

2017年12月  获广东工业大学20162017学年度教学优秀奖/二等奖

2015年12月  获第十届春晖杯中国留学人员创新创业大赛优胜奖教育部、科技部主办


主要论文

[1]Xiaoling He, Wenjian Zhang, Tao Liu, Qianhui Lin, Zexi Zhang, Ying Chen, Jiye Luo*, Chengqiang Cui, Xinxin Sheng*. Sea Anemone-inspired Phase Change Composites for Efficient Heat Dissipation and Ultra-high Electromagnetic Interference Shielding. Research, 2026, 9: 1075. (IF = 10.9,中科院一区)

[2]Xiaoling He, Chengqiang Cui, Ying Chen, Li Zhang, Xinxin Sheng*, Delong Xie*. MXene and Polymer Collision: Sparking the Future of High-Performance Multifunctional Coatings. Advanced Functional Materials, 2024, 34(51): 2409675. (IF = 19.0,中科院一区,ESI热点/高被引论文)

[3]Teng Li, Yuanjun Yang, Yawen Fan, Danyuan Huang, Li Zhang, Xinpeng Hu*, Ying Chen*, Xinxin Sheng*. Layered MXene–phase change composites for integrated photothermal regulation and electromagnetic shielding. Nano Research, 2026, 19(1): 94908054. (IF = 9.0,中科院一区)

[4]Ruiqin Guo, Yawen Fan, Teng Li, Li Zhang, Delong Xie*, Xinxin Sheng*. Engineering multifunctional polymeric composite coatings based on BP@ZIF-67 for superior corrosion/wear resistance and flame retardancy. Nano Research, 2025, 18(12): 94907977. (IF = 9.0,中科院一区)

[5]Zhizhao Mai, Kaijie You, Jianyong Chen, Xinxin Sheng*, Ying Chen*. Perspective on phase change composites in high-efficiency solar-thermal energy storage. Applied Physics Letters, 2025, 126(5), 050501. (IF = 3.6,中科院二区Invited Perspective, Editors Pick,ESI高被引论文)

[6]Zhizhao Mai, Kaijie You, Jianyong Chen, Xinxin Sheng*, Ying Chen*. Biomass lignin/manganese ferrite-modified reduced graphene oxide aerogel composites for multi-source energy conversion. International Journal of Biological Macromolecules, 2025, 306: 141688. (IF = 8.5,中科院二区,ESI热点/高被引论文)

[7]Xiaoling He, Wenjian Zhang, Yuanjun Yang, Guannan Yang, Yu Zhang, Guanghan Huang, Jiye Luo*, Chengqiang Cui*, Xinxin Sheng*. Triple-network structured phase change composite based on “rod-brush” CNTs-CFs with high thermal conductivity. Composites Science and Technology, 2025, 262: 111080. (IF = 9.8中科院二区,ESI热点/高被引论文)

[8]Wenjian Zhang, Xiaoling He, Guanghan Huang, Yu Zhang, Guannan Yang*, Chengqiang Cui*, Xinxin Sheng*. Dual-oriented elastic composites based on novel CF-CNTs fillers with super thermal management capabilities. Applied Materials Today, 2025, 44: 102757. (IF = 6.9,中科院二区)

[9]Meng Zhou, Shuo Zhang, Li Zhang, Ying Chen, Xinxin Sheng*, Xinya Zhang*. Integration of MXene and polymer: Unlocking the full potential of multifunctional composites for electromagnetic interference shielding. Journal of Materials Science & Technology, 2025, 226: 1235. (IF = 14.3,中科院一区,ESI高被引论文)

[10]Jianqiang Wang, Li Zhang, Ying Chen, Xinxin Sheng*, Xinya Zhang*. A robust and highly thermally conductive graphene-based phase change composite constructed by rotating magnetic field for efficient photothermal and electrothermal conversion. Journal of Energy Storage, 2025, 124: 116918. (IF = 9.8,中科院二区)

[11]Baolin Liu, Yuanjun Yang, Danyuan Huang*, Rui Liang, Xiangyang Jiang, Li Zhang, Ying Chen, Guoxing Sun*, Xinxin Sheng*. An innovative MXene modified melamine foam shape-stabilized hydrated salt-based composite PCM for indoor thermal comfort and energy saving in buildings. Construction and Building Materials, 2025, 466: 140289. (IF = 8.0,中科院一区,ESI高被引论文)

[12]Hao Jiang, Jindao Li, Yuhui Xie*, Hua Guo, Mukun He, Xuetao Shi, Yi Mei, Xinxin Sheng*, Delong Xie*. Design of efficient microstructured path by magnetic orientation boron nitride nanosheets/MnFe2O4 enabling waterborne polyurethane with high thermal conductivity and flame retardancy. Journal of Materials Science & Technology, 2025, 209: 207–218. (IF = 14.3,中科院一区,ESI热点/高被引论文)

[13]Qihan Weng, Li Zhang, Xinxin Sheng*, Delong Xie*. Designing sandwich-structured IBP nanosheets with superior antioxidant property to enhance corrosion resistance, flame retardancy, and wear resistance for polymeric coatings. Journal of Materials Science & Technology, 2025, 215: 22–25. (IF = 14.3,中科院一区)

[14]Qihan Weng, Xiaolin Huang, Ying Chen, Li Zhang, Delong Xie*, Xinxin Sheng*. Black phosphorus nanosheets for advanced polymer coatings and films: Preparation, stability and applications. Journal of Materials Science & Technology, 2025, 216: 192–208. (IF = 14.3,中科院一区)

[15]Yuanjun Yang, Yanqi Ma, Peng Lian, Li Zhang, Ying Chen, Xinxin Sheng*. Advanced engineering of binary eutectic hydrate composite phase change materials with enhanced thermophysical performance for high-efficiency building thermal energy storage. Solar Energy Materials and Solar Cells, 2025, 288: 113631. (IF = 6.3,中科院二区)

[16]Ruiqin Guo, Caiyou Ding, Yuan Liu*, Xiaoling Cheng, Li Zhang, Wenlin Zhao, Xinxin Sheng*. In situ growth of layered double hydroxides on zirconium phosphate for reinforcing anti-corrosion and wear resistance of waterborne epoxy coatings. Polymer, 2025, 319: 128048. (IF = 4.5,中科院二区,ESI高被引论文)

[17]Yanwen Chen, Ruiming Wang, Xinxin Sheng*, Li Zhang*, Jianbo Tan*. Degradable and chain extendable segmented hyperbranched copolymers by wavelength-selective photoiniferter polymerization using a trithiocarbonate-derived dimethacrylate. ACS Macro Letters, 2025, 14(1): 72–79. (IF = 5.2,中科院一区)

[18]Yawen Fan, Ruiqin Guo, Yuanjun Yang, Li Zhang*, Ying Chen*, Xinxin Sheng*. Dual-Functional MXene@Pyrogallol-Phenanthroline Hybrids: Boosting the Anticorrosive and Tribological Performance of Waterborne Epoxy Composite Coatings. Industrial & Engineering Chemistry Research, 2025, 64(34): 16733–16746. (IF = 3.9,中科院三区)

[19]Ruihan Yan, Zan Huang, Ying Chen, Li Zhang, Xinxin Sheng*. Phase change composite based on lignin carbon aerogel/nickel foam dual-network for multisource energy harvesting and superb EMI shielding. International Journal of Biological Macromolecules, 2024, 277: 134233. (IF = 8.5中科院一区ESI热点/高被引论文)

[20]Ruihan Yan, Zan Huang, Li Zhang, Ying Chen*, Xinxin Sheng*. Cellulose-reinforced foam-based phase change composites for multi-source driven energy storage and EMI shielding. Composites Communications, 2024, 51: 102047. (IF = 7.7中科院二区)

[21]Xiaoling He1#, Jiongxin Wu1#, Xiaolin Huang, Ying Chen, Li Zhang, Xinxin Sheng*. Three-in-one polymer nanocomposite coating via constructing tannic acid functionalized MXene/BP hybrids with superior corrosion resistance, friction resistance, and flame-retardancy. Chemical Engineering Science, 2024, 283: 119429. (IF = 4.3,中科院二区ESI热点/高被引论文)

[22]Jiongxin Wu, Ying Chen, Li Zhang*, Xinxin Sheng*. Electrostatic self-assembled MXene@PDDA-Fe3O4 nanocomposite: A novel, efficient, and stable low-temperature phosphating accelerator. Journal of Industrial and Engineering Chemistry, 2024, 129: 424434. (IF = 5.9,中科院三区,ESI热点论文)

[23]Fan Zhou, Yanqi Ma, Ying Chen, Li Zhang*, Xinxin Sheng*. Triple-function smart anticorrosion composite coating based on graphene and ZIF-8 with excellent pH-responsive self-healing and in vitro antimicrobial properties. Progress in Organic Coatings, 2024, 186: 108007. (IF = 7.3中科院二区)

[24]Xiaolin Huang, Jiye Luo*, Li Zhang, Delong Xie*, Xinxin Sheng*. MXene@curcumin Nanosheets Doped with Ce(III) toward Water-Borne Epoxy Nanocomposite Coating for Long-Term Corrosion Protection and Wear Resistance. Industrial & Engineering Chemistry Research, 2024, 63(35): 1550815523. (IF = 3.9中科院三区)

[25]Xiaolin Huang, Qihan Weng, Ying Chen, Li Zhang, Xinxin Sheng*. Accelerating phosphating process via hydrophobic MXene@SA nanocomposites for the significant improvement in anti-corrosion performance of plain carbon steel. Surfaces and Interfaces, 2024, 45: 103911. (IF = 5.7,中科院二区,ESI高被引论文)

[26]Yawen Fan, Jiongxin Wu, Li Zhang, Xinxin Sheng*. Self-oriented functionalized MXene with excellent antioxidant properties for enhancing anticorrosion properties of waterborne epoxy resin. Industrial & Engineering Chemistry Research, 2024, 63(24): 10637–10650. (IF = 3.9,中科院三区,ESI高被引论文)

[27]Junfeng Shen, Yanqi Ma, Fan Zhou, Xinxin Sheng*, Ying Chen*. Thermophysical properties investigation of phase change microcapsules with low supercooling and high energy storage capability: Potential for efficient solar energy thermal management. Journal of Materials Science & Technology, 2024, 191: 199208. (IF = 14.3,中科院一区,ESI高被引论文)

[28]Xiaoling He, Qihan Weng, Ruiqin Guo, Li Zhang, Xinxin Sheng*, Delong Xie*. Elaborate construction of potent antioxidant properties in PBP-Ce(III) nanosheets via a one-pot approach for seamless integration of anti-corrosion, wear-resistance, and flame-retardancy. Journal of Materials Science & Technology, 2024, 201: 197209. (IF = 14.3,中科院一区ESI热点/高被引论文)

[29]Haoxin Chen, Yanqi Ma, Xinxin Sheng*, Ying Chen*. Achieving heat storage coatings from ethylene vinyl acetate copolymers and phase change nano-capsules with excellent flame-retardant and thermal comfort performances. Progress in Organic Coatings, 2024, 192: 108478. (IF = 7.3,中科院二区,ESI高被引论文)

[30]Mengman Weng, Jiahui Lin, Yuanjun Yang, Jingtao Su, Jintao Huang*, Xiang Lu*, Xinxin Sheng*. MXene-based phase change materials for multi-source driven energy storage, conversion and applications. Solar Energy Materials and Solar Cells, 2024, 272: 112915. (IF = 6.3中科院二区ESI热点/高被引论文)

[31]Yanqi Ma, Junfeng Shen, Teng Li, Xinxin Sheng*, Ying Chen*. A “net-ball” structure fiber membrane with electro-/photo-thermal heating and phase change synchronous temperature regulation capacity via electrospinning. Solar Energy Materials and Solar Cells, 2024, 276: 113078. (IF = 6.3中科院二区,ESI热点/高被引论文)

[32]Yuhui Chen, Yang Meng*, Yanping Jiang, Yuhui Xie, Hua Guo, Mukun He, Xuetao Shi, Yi Mei, Xinxin Sheng*, Delong Xie*. Leakage proof, flame-retardant, and electromagnetic shield wood morphology genetic composite phase change materials for solar thermal energy harvesting. Nano-Micro Letters, 2024, 16: 196. (IF = 36.3,中科院一区,ESI热点/高被引论文)

[33]Shilong Liu, Bin Fan, Zhen Shi, Rendian Wan, Xinxin Sheng*, Xiaolong Li, Chuanbiao Zhu, Mengni Chen, Zhigang Xue*, Yang Ding, Xiang Lu*, Jinping Qu. High-safety lithium-ion battery separator with adjustable temperature function inspired by the sugar gourd structure. ACS Applied Materials & Interfaces, 2024, 16 (23): 30284–30295.  (IF = 8.2,中科院二区)

[34]Yan Cao, Peng Lian, Ying Chen, Li Zhang, Xinxin Sheng*. Novel organically modified disodium hydrogen phosphate dodecahydrate-based phase change composite for efficient solar energy storage and conversion. Solar Energy Materials and Solar Cells, 2024, 268: 112747. (IF = 6.3中科院二区,ESI高被引论文)

[35]Ruiming Wang, Wenyu Zhu, Li Zhang, Xinxin Sheng*, Jianbo Tan*. Synthesis of self-assembled star/linear block copolymer blends via aqueous RAFT dispersion polymerization. Chinese Journal of Chemistry, 2024, 42, 1606–1614. (IF = 5.5,中科院一区)

[36]Ruibin Mo, Fusheng Zhang, Xinxin Sheng*, Xinya Zhang*. The polymer interdiffusion in disulfide dynamic crosslinked latex films. Chemical Engineering Science, 2024, 284: 119536. (IF = 4.3中科院二区)

[37]Danyuan Huang, Ying Chen, Li Zhang, Xinxin Sheng*. Flexible thermoregulatory microcapsule/polyurethane-MXene composite films with multiple thermal management functionalities and excellent EMI shielding performance. Journal of Materials Science & Technology, 2023, 165: 2738. (IF = 14.3,中科院一区ESI热点/高被引论文)

[38]Danyuan Huang, Li Zhang, Xinxin Sheng*, Ying Chen*. Facile strategy for constructing highly thermally conductive PVDF-BN/PEG phase change composites based on a salt template toward efficient thermal management of electronics. Applied Thermal Engineering, 2023, 232: 121041. (IF = 6.9中科院二区,ESI热点/高被引论文)

[39]Jiongxin Wu, Ying Chen, Li Zhang*, Xinxin Sheng*. Construction of a high-performance anti-corrosion and anti-wear coating based on the MXene@PTA-Zn(II): Electrochemical/tribological investigations. Progress in Organic Coatings, 2023, 182: 107706. (IF = 7.3中科院二区)

[40]Ziheng Zeng, Danyuan Huang, Li Zhang, Xinxin Sheng*, Ying Chen*. An innovative modified calcium chloride hexahydrate–based composite phase change material for thermal energy storage and indoor temperature regulation. Advanced Composites and Hybrid Materials, 2023, 6 (2): 80. (IF = 21.8,中科院二区,ESI高被引论文)

[41]Peng Lian, Ruihan Yan, Zhiguo Wu, Zhibin Wang*, Ying Chen, Li Zhang, Xinxin Sheng*. Thermal performance of novel form-stable disodium hydrogen phosphate dodecahydrate-based composite phase change materials for building thermal energy storage. Advanced Composites and Hybrid Materials, 2023, 6 (2): 74. (IF = 21.8,中科院二区,ESI高被引论文)

[42]Yan Cao, Ziheng Zeng, Danyuan Huang, Ying Chen, Li Zhang, Xinxin Sheng*. Multifunctional phase change composites based on biomass/MXene-derived hybrid scaffolds for excellent electromagnetic interference shielding and superior solar/electro-thermal energy storage. Nano Research, 2022, 15 (9): 85248535. (IF = 9.0,中科院一区,ESI热点/高被引论文)

[43]Rongbiao Shen, Mengman Weng, Li Zhang, Jintao Huang*, Xinxin Sheng*. Biomass-based carbon aerogel/Fe3O4@PEG phase change composites with satisfactory electromagnetic interference shielding and multi-source driven thermal management in thermal energy storage. Composites Part A: Applied Science and Manufacturing, 2022, 163: 107248. (IF = 8.9,中科院一区)

[44]Yanqi Ma, Huichang Wang, Li Zhang, Xinxin Sheng*, Ying Chen*. Flexible phase change composite films with improved thermal conductivity and superb thermal reliability for electronic chip thermal management. Composites Part A: Applied Science and Manufacturing, 2022, 163: 107203. (IF = 8.9,中科院一区)

[45]Yan Cao, Mengman Weng, M.H.H. Mahmoud, Ashraf Y. Elnaggar, Li Zhang, Islam H. El Azab, Ying Chen, Mina Huang, Jintao Huang*, Xinxin Sheng*. Flame-retardant and leakage-proof phase change composites based on MXene/polyimide aerogels toward solar thermal energy harvesting. Advanced Composites and Hybrid Materials, 2022, 5 (2): 1253–1267. (IF = 21.8,中科院一区,ESI热点/高被引论文)

[46]Yanqi Ma, Huichang Wang, Sihao Li, Ying Chen, Li Zhang*, Xinxin Sheng*. An eco-friendly and pH response cerium-based melamine phytate (PM) nanosheets with active and passive anticorrosion ability in water-borne epoxy coating. Applied Surface Science, 2022, 597: 153726. (IF = 6.9,中科院一区)

[47]Shang Gong1#, Xinxin Sheng1#, Xiaolong Li, Mengjie Sheng, Hao Wu, Xiang Lu *, Jinping Qu. A multifunctional flexible composite film with excellent multi-source driven thermal management, electromagnetic interference shielding, and fire safety performance, inspired by a “brick-mortar” sandwich structure. Advanced Functional Materials, 2022, 32: 2200570. (共同一作,IF = 19.0,中科院一区,ESI热点/高被引论文)

[48]Xiaoling He, Jiongxin Wu, Ying Chen, Li Zhang, Xinxin Sheng*. A trace amount of MXene@PDA nanosheets for low-temperature zinc phosphating coatings with superb corrosion resistance. Applied Surface Science, 2022, 603: 154455. (IF = 6.9,中科院一区)

[49]Xiaoling He, Jiongxin Wu, Sihao Li, Ying Chen, Li Zhang*, Xinxin Sheng*. In situ growth of aminated silica on MXene nanosheets: a novel 0D/2D hybrid structure for multifunctional waterborne epoxy composite coatings. Progress in Organic Coatings, 2022, 171: 107042. (IF = 7.3,中科院二区)

[50]Xiaoling He, Sihao Li, Rongbiao Shen, Yanqi Ma, Li Zhang, Xinxin Sheng*, Ying Chen*, Delong Xie, Jintao Huang. A high-performance waterborne polymeric composite coating with long-term anti-corrosive property based on phosphorylation of chitosan-functionalized Ti3C2Tx MXene, Advanced Composites and Hybrid Materials, 2022, 5 (3): 1699–1711. (IF = 21.8,中科院一区,ESI高被引论文)

[51]Xiaoling He, Sihao Li, Jiongxin Wu, Ying Chen, Li Zhang*, Xinxin Sheng*. One-pot fabrication of an MXene-ZrP@PDA heterojunction for enhanced corrosion/wear resistance of waterborne epoxy coatings. Industrial & Engineering Chemistry Research, 2022, 61 (34): 12576–12589. (IF = 3.9,中科院三区)

[52]Rongbiao Shen, Peng Lian, Yan Cao, Ying Chen, Li Zhang, Xinxin Sheng*. All lignin-based sponge encapsulated phase change composites with enhanced solar-thermal conversion capability and satisfactory shape stability for thermal energy storage. Journal of Energy Storage, 2022, 54: 105338. (IF = 9.8,中科院二区)

[53]Yan Cao, Weijie Li, Danyuan Huang, Junjia Zhang, Pengcheng Lin, Li Zhang, Xinxin Sheng*, Ying Chen*, Xiang Lu. One-step construction of novel phase change composites supported by a biomass/MXene gel network for efficient thermal energy storage. Solar Energy Materials and Solar Cells, 2022, 241: 111729. (IF = 6.3,中科院二区)

[54]Yong Luo, Yuhui Xie, Wei Geng, Junhan Chu, Hua Wu, Delong Xie*, Xinxin Sheng*, Yi Mei. Boosting fire safety and mechanical performance of thermoplastic polyurethane by the face-to-face two-dimensional phosphorene/MXene architecture. Journal of Materials Science & Technology, 2022, 129: 27–39. (IF = 14.3,中科院一区,ESI高被引论文)

[55]Yanqi Ma, Haowei Huang, Hongda Zhou, Michael Graham, James Smith, Xinxin Sheng*, Ying Chen, Li Zhang, Xinya Zhang, Elena Shchukina, Dmitry Shchukin. Superior anti-corrosion and self-healing bi-functional polymer composite coatings with polydopamine modified mesoporous silica/graphene oxide. Journal of Materials Science & Technology, 2021, 95: 95104. (IF = 14.3,中科院一区)

[56]Yong Luo, Yuhui Xie, Hao Jiang, Ying Chen, Li Zhang, Xinxin Sheng*, Delong Xie*, Hua Wu, Yi Mei. Flame-retardant and form-stable phase change composites based on MXene with high thermostability and thermal conductivity for thermal energy storage. Chemical Engineering Journal, 2021, 420: 130466. (IF = 13.2,中科院一区,ESI热点/高被引论文)

[57]Yu Du, Haowei Huang, Xinpeng Hu, Shuang Liu, Xinxin Sheng*, Xiaolong Li, Xiang Lu*, Jinping Qu. Melamine foam/polyethylene glycol composite phase change material synergistically modified by polydopamine/MXene with enhanced solar-to-thermal conversion. Renewable Energy, 2021, 171: 110. (IF = 9.1,中科院一区,ESI热点/高被引论文)

[58]Sihao Li, Haowei Huang, Fan Chen, Xiaoling He, Yanqi Ma, Li Zhang, Xinxin Sheng*, Ying Chen*, Elena Shchukina, Dmitry Shchukin. Reinforced anticorrosion performance of waterborne epoxy coating with eco-friendly L-cysteine modified Ti3C2Tx MXene nanosheets. Progress in Organic Coatings, 2021, 161: 106478. (IF = 7.3,中科院二区)

[59]Yong Luo, Yuhui Xie, Renjie Chen, Ruizhi Zheng, Hua Wu, Xinxin Sheng*, Delong Xie*, Yi Mei. A low-density polyethylene composite with phosphorus-nitrogen based flame retardant and multi-walled carbon nanotubes for enhanced electrical conductivity and acceptable flame retardancy. Frontiers of Chemical Science and Engineering, 2021, 15: 1332–1345. (IF = 4.5,中科院二区)

[60]Jin Hu, Ruhan Yang, Li Zhang, Ying Chen, Xinxin Sheng*, Xinya Zhang*. Robust, transparent, and self-healable polyurethane elastomer via dynamic crosslinking of phenol-carbamate bonds. Polymer, 2021, 222: 123674. (IF = 4.5,中科院二区)

[61]Xiaolong Li1#, Xinxin Sheng1#, Yongqiang Guo, Xiang Lu*, Hao Wu, Ying Chen, Li Zhang, Junwei Gu*. Multifunctional HDPE/CNTs/PW composite phase change materials with excellent thermal and electrical conductivities. Journal of Materials Science & Technology, 2021, 86: 171179. (IF = 14.3,中科院一区,ESI热点/高被引论文)

[62]Xinxin Sheng, Dexuan Dong, Xiang Lu*, Li Zhang, Ying Chen. MXene-wrapped bio-based pomelo peel sponge/polyethylene glycol composite phase change material with enhanced light-to-thermal conversion efficiency, thermal energy storage capability and thermal conductivity. Composites Part A: Applied Science and Manufacturing, 2020, 138: 106067. (IF = 8.9,中科院一区)

[63]Haowei Huang, Xinxin Sheng*, Yuqin Tian, Li Zhang, Ying Chen, Xinya Zhang*. Two-dimensional nanomaterials for anticorrosive polymeric coatings: a review. Industrial & Engineering Chemistry Research, 2020, 59 (35): 1542415446. (IF = 3.9,中科院三区)

[64]Yuhui Xie, Weijie Li, Haowei Huang, Dexuan Dong, Xinya Zhang, Li Zhang, Ying Chen, Xinxin Sheng*, Xiang Lu*. Bio-based Radish@PDA/PEG sandwich composite with high efficiency solar thermal energy storage. ACS Sustainable Chemistry & Engineering, 2020, 8 (22): 84488457. (IF = 7.3,中科院一区)

[65]Jin Hu, Ruibin Mo, Xinxin Sheng*, Xinya Zhang*. A self-healing polyurethane elastomer with excellent mechanical property based on phase-locked dynamic imine bonds. Polymer Chemistry, 2020, 11: 25852594. (IF = 3.9,中科院二区)

[66]Ruibin Mo, Liujun Song, Jin Hu, Xinxin Sheng*, Xinya Zhang*. An acid-degradable biobased epoxy-imine adaptable network polymer and its fabrication for responsive structural color film. Polymer Chemistry, 2020, 11: 974981. (IF = 3.9,中科院二区)

[67]Haowei Huang, Yuqin Tian, Yuhui Xie, Ruibin Mo, Jin Hu, Menglan Li, Xinxin Sheng*, Xiang Jiang, Xinya Zhang*. Modification of graphene oxide with acrylate phosphorus monomer via thiol-Michael addition click reaction to enhance the anti-corrosive performance of waterborne epoxy coatings. Progress in Organic Coatings, 2020, 146: 105724. (IF = 7.3,中科院二区)

[68]Haowei Huang, Menglan Li, Yuqin Tian, Yuhui Xie, Xinxin Sheng*, Xiang Jiang, Xinya Zhang*. Exfoliation and functionalization of α-zirconium phosphate in one pot for waterborne epoxy coatings with enhanced anticorrosion performance. Progress in Organic Coatings, 2020, 138: 105390. (IF = 7.3,中科院二区)

[69]Xingnan Zhou, Haowei Huang, Rui Zhu, Renjie Chen, Xinxin Sheng*, Delong Xie*, Yi Mei. Green modification of graphene oxide with phytic acid and its application in anticorrosive water-borne epoxy coatings. Progress in Organic Coatings, 2020, 143: 105601. (IF = 7.3,中科院二区)

[70]Pengcheng Lin, Jiajin Xie, Yingdong He, Xiang Lu, Weijie Li, Jun Fang, Shouhuan Yan, Li Zhang, Xinxin Sheng*, Ying Chen*. MXene aerogel-based phase change materials toward solar energy conversion. Solar Energy Materials and Solar Cells, 2020, 206: 110229. (IF = 6.3,中科院二区,ESI高被引论文)

[71]Haowei Huang, Dexuan Dong, Weijie Li, Xinya Zhang, Li Zhang, Ying Chen, Xinxin Sheng*, Xiang Lu*. Synergistic effect of MXene on the flame retardancy and thermal degradation of intumescent flame retardant biodegradable poly (lactic acid) composites. Chinese Journal of Chemical Engineering, 2020, 28 (7):19811993. (IF = 3.7,中科院二区)

[72]Ruibin Mo, Jin Hu, Haowei Huang, Xinxin Sheng*, Xinya Zhang*. Tunable, self-healing and corrosion inhibiting dynamic epoxy-polyimine network built by post-crosslinking. Journal of Materials Chemistry A, 2019, 7 (7): 30313038. (IF = 9.5,中科院一区)

[73]Xiang Lu, Haowei Huang, Xinya Zhang, Pengcheng Lin, Jintao Huang, Xinxin Sheng*, Li Zhang, Jin-ping Qu*. Novel light-driven and electro-driven polyethylene glycol/two-dimensional MXene form-stable phase change material with enhanced thermal conductivity and electrical conductivity for thermal energy storage. Composites Part B: Engineering, 2019, 177: 107372. (IF = 14.2,中科院一区)

[74]Xinxin Sheng, Yanfeng Zhao, Li Zhang, Xiang Lu*. Properties of two-dimensional Ti3C2 MXene/thermoplastic polyurethane nanocomposites with effective reinforcement via melt blending. Composites Science and Technology, 2019, 181: 107710. (IF = 9.8,中科院一区)

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[77]Xingnan Zhou, Haowei Huang, Rui Zhu, Xinxin Sheng*, Delong Xie*, Yi Mei. Facile modification of graphene oxide with Lysine for improving anti-corrosion performances of water-borne epoxy coatings. Progress in Organic Coatings, 2019, 136: 105200. (IF = 7.3,中科院二区)

[78]Jin Hu, Ruibin Mo, Xiang Jiang, Xinxin Sheng*, Xinya Zhang*. Towards mechanical robust yet self-healing polyurethane elastomers via combination of dynamic main chain and dangling quadruple hydrogen bonds. Polymer, 2019, 183: 121912. (IF = 4.5,中科院二区)


知识产权

[1]盛鑫鑫,刘丽,吴炯鑫,张力,陈颖. 一种含有聚电解质刷的高效防腐涂料及其制备方法. 授权公告日:2025.09.09, 专利号:ZL202211035552.7

[2]盛鑫鑫张力谭剑波莫锐彬钟国晖. 一种外墙用干粉涂料及其制备方法. 授权公告日:2020.08.11, 专利号:ZL201711006947.3

[3]盛鑫鑫张力谭剑波莫锐彬钟国晖. 一种强紫外吸收聚丙烯酸酯可再分散乳胶粉及制备方法. 授权公告日:2020.03.10, 专利号:ZL201711006946.9

[4]盛鑫鑫张力莫锐彬谭剑波钟国晖. 一种木质素/聚丙烯酸酯复合胶黏剂及制备方法. 授权公告日:2019.08.06, 专利号:ZL201711006840.9

[5]盛鑫鑫黄丹媛,陈颖,林鹏程,张力. 一种具有储能及复合网络结构相变材料的制备方法,申请日:2023.08.28,申请号:202311090610.0

[6]李伟杰,盛鑫鑫,林鹏程,陈颖,张力. 一种金属离子/磷酸锆气凝胶及其制备方法与复合相变储能材料,授权公告日:2022.06.24专利号:ZL202010843379.8

[7]林鹏程,陈虹滨,盛鑫鑫,陈颖. 一种双温区相变材料及其制备方法,授权公告日:2021.05.11,专利号:ZL202010887956.3

[8]林鹏程,陈虹滨,盛鑫鑫,陈颖. 一种复合相变材料及其制备方法,授权公告日:2021.07.02,专利号:ZL202010886405.5

[9]张心亚,董德轩,盛鑫鑫,黄浩炜,卢翔. 兼具抗拉伸和抗冲击性能聚乳酸复合材料及其制备方法,授权公告日:2021.06.08,专利号:ZL 202010816257.X

[10]谢德龙,邓卫斌,盛鑫鑫,李军,陆文宇,吴华,梅毅. 一种碳纳米管聚合物复合导电材料及其制备方法,授权公告日:2020.03.27,专利号:ZL201811575315.3

[11]谢德龙,盛鑫鑫,张心亚. 一种汽车用乳化蜡及其制备方法,授权公告日:2015.04.22专利号:ZL201410026088.4

[12]张心亚,蔡文曦,盛鑫鑫,钟理. 一种聚苯胺石墨烯纳米复合防腐涂料及其制备方法,授权公告日:2017.08.25 专利号:ZL201510317422.6


科研项目

[1]云南省重点研发计划项目(202403AA080008),2024.072027.06,课题负责人

[2]广州市基础与应用基础研究专题(青年博士“启航”项目)(2024A04J3710),2024.012025.12,项目主持人

[3]国家自然科学基金青年项目(21908031),2020.012022.12,项目主持人

[4]广东省自然科学基金面上项目(2023A1515011985),2023.012025.12,项目主持人

[5]粤港澳联合创新领域——港澳科技成果来粤转化专题项目(2022A0505030026),2022.092024.09,参与单位主持人(项目主持人:澳门大学 孙国星)

[6]醇基丙烯酸酯聚合物的合成、表征及胶黏剂制备的研究,埃克森美孚亚太研发有限公司合作项目,2018.042019.06,项目主持人

[7]水性功能防腐涂层的开发,企业横向委托项目,2020.062022.06,项目主持人

[8]材料与能源学院“青年优秀人才培养计划”项目(第二层次),项目主持人

[9]云南省磷化工节能与新材料重点实验室开放课题(LHG-2020-0004),2021.012022.12,项目主持人

[10]广东省绿色化学产品技术重点实验室开放课题(GC202110),2021.092022.08,项目主持人

[11]国家自然科学基金面上项目(21971047),2020.012023.12,第一参与人(排名第2)






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