陈志钢 研究员 博士 上海市 研究领域: 精细化工 研究方向: (1) 新型无机、高分子光热转换纳米材料和纤维膜的开发及其生物医学(癌症诊疗、伤口修复、脑际接口等)应用 (2) 光热转换纤维膜的制备及其在太阳能利用、海水淡化等领域应用 (3) 光致变色纤维膜的构筑及其在智能可穿戴设备中的应用 (4) 耐高温、吸音降噪等功能纤维膜的开发及应用 (5) 纳米光催化材料的开发及其在污水净化和有机催化反应中的应用 所在单位: 东华大学

基本信息

所在单位:
东华大学
机构细分:
材料科学与工程学院
单位类型:
高等院校
职务:
研究员
职称:
研究员
最高学历:
博士
教育经历:
1998.09—2002.07 华中师范大学化学学院,本科
2002.09—2005.07 华中师范大学化学学院和纳米科技中心,硕士生;导师:唐一文教授
2005.09—2008.06 复旦大学先进材料实验室,博士生;导师:黄春辉院士教授
工作经历:
2008.07—2010.08 东华大学材料学院,讲师
2008.10—2009.12 德国马普胶体和界面研究所,洪堡学者
2010.09—2013.08 东华大学材料学院,副研究员
2012.09—2013.07 复旦大学化学系赵东元院士课题组,访问学者
2013.09— 今 东华大学材料学院,研究员、博士生导师
2015.07—2016.02 新加坡国立大学化学系LIU Xiaogang教授课题组,访问学者
专家介绍:
陈志钢,主要研究光转换纳米材料和功能纤维膜,探索它们在生物医学、能源、催化、海水淡化等领域中的应用。注重理论探索与实验研究相结合,取得了多项具有创新性的研究成果,得到了国内外同行的关注。截至2026年4月,在Chem. Soc. Rev.、Adv. Mater.、J. Am. Chem. Soc.、Adv. Funct. Mater.、ACS Nano、Biomaterials等期刊共发表SCI论文240余篇,其中影响因子大于10的论文有80余篇。所有论文共被引用2.3万余次,他引2.2万余次;H因子为71。多次入选全球高被引科学家和中国高被引学者。
专家荣誉:
(1) 2008年7月,入选德国“洪堡学者”
(2) 2011年3月,入选上海市“青年科技启明星”
(3) 2014年5月,被评为东华大学“师德建设青年标兵”

科研能力

研究领域:
精细化工
研究方向:
(1) 新型无机、高分子光热转换纳米材料和纤维膜的开发及其生物医学(癌症诊疗、伤口修复、脑际接口等)应用
(2) 光热转换纤维膜的制备及其在太阳能利用、海水淡化等领域应用
(3) 光致变色纤维膜的构筑及其在智能可穿戴设备中的应用
(4) 耐高温、吸音降噪等功能纤维膜的开发及应用
(5) 纳米光催化材料的开发及其在污水净化和有机催化反应中的应用
论文著作:
[1] Zhigang Chen, Huili Chen, He Hu, Mengxiao Yu, Fuyou Li*, Qiang Zhang, Zhiguo Zhou, Tao Yi, Chunhui Huang*. Versatile synthesis strategy for carboxylic acid-functionalized upconverting nanophosphors as biological labels. Journal of the American Chemical Society, 2008,130, 3023-3029. (Link, SCI, IF =15.6)
[2] Zhigang Chen*, et al. 980-nm laser-driven photovoltaic cells based on rare-earth up-converting phosphors for biomedical applications. Advanced Functional Materials, 2009, 19, 3815-3820. (Link, SCI, IF =19)
[3] Zhigang Chen*, et al. Hydrophilic flower-like CuS superstructures as an efficient 980 nm laser-driven photothermal agent for ablation of cancer cells. Advanced Materials, 2011, 23, 3542-3547. (Link, SCI, IF =26.8)
[4] Zhigang Chen*, et al. Flexible fiber-shaped CuInSe2 solar cells with single-wire-structure: Design, construction and performance. Nano Energy, 2012, 1, 769-776. (Link, SCI, IF =17.1)
[5] Zhigang Chen*, et al. Ultrathin PEGylated W18O49 Nanowires as a New 980 nm-Laser-Driven Photothermal Agent for Efficient Ablation of Cancer Cells In Vivo. Advanced Materials, 2013, 25, 2095-2100.(Link, SCI, IF =26.8)
[6] Zhigang Chen*, et al. NIR-laser-switched in-vivo smart nanocapsules for synergic photothermal-chemo-therapy of tumor. Advanced Materials, 2016, 28, 245-253. (Link, SCI,封面论文, IF =26.8)
[7] Zhigang Chen*, et al. Design and Synthesis of “All-in-One” Multifunctional FeS2 Nanoparticles for Magnetic Resonance and Near-Infrared Imaging Guided Photothermal Therapy of Tumors. Advanced Functional Materials, 2016, 26, 8231-8242. (Link, SCI, IF =19)
[8] Zhigang Chen*, et al. Growth of C3N4 nanosheets on carbon-fiber cloth as flexible and macroscale filter-membrane-shaped photocatalyst for degrading the flowing wastewater. Applied Catalysis B: Environmental, 2017, 219, 425-431. (Link, SCI, IF =21.1)
[9] Zhigang Chen*, et al. Thiol-capped Bi nanoparticles as stable and all-in-one type theranostic nanoagents for tumor imaging and thermoradiotherapy. Biomaterials, 2018, 161, 279-291. (Link, SCI, IF =12.9)
[10] Zhigang Chen*, et al. Continuously Producing Watersteam and Concentrated Brine from Seawater by Hanging Photothermal Fabrics under Sunlight. Advanced Functional Materials, 2019, 29, 1905485. (Link, SCI, IF =19)
[11] Zhigang Chen*, et al. Biocompatible Fe-Hematoporphyrin coordination nanoplatforms with efficient sonodynamic-chemo effects on deep-seated tumors. Biomaterials, 2020, 257, 120239. (Link, SCI, IF =12.9)
[12]Zhigang Chen*, et al. Hierarchical Photothermal Fabrics with Low Evaporation Enthalpy as Heliotropic Evaporators for Efficient, Continuous, Salt-Free Desalination. ACS Nano, 2021, 15, 13007-13018.(Link, SCI, IF =16.042)
[13] Zhigang Chen*, et al. Transforming a Sword into a Knife: Persistent Phototoxicity Inhibition and Alternative Therapeutical Activation of Highly-Photosensitive Phytochlorin.ACS Nano, 2021, 15, 19793-19805. (Link, SCI, IF =16.042)
[14] Zhigang Chen*, et al. On-demand assembly of polymeric nanoparticles for longer-blood-circulation and disassembly in tumor for boosting sonodynamic therapy. Bioactive Materials,2022, 18, 242. (Link, SCI, IF =20.3)
[15] Zhigang Chen*, et al. Janus Nanofiber Membranes with Photothermal-Enhanced Biofluid Drainage and Sterilization for Diabetic Wounds.Advanced Functional Materials, 2024, 34, 2315020. (Link, SCI, IF =19)
[16] Zhigang Chen*, et al. Biomimetic polymeric nanoreactors with photooxidation-initiated therapies and reinvigoration of antigen-dependent and antigen-free immunity. Biomaterials, 2025, 314, 122884. (Link, SCI, IF =12.9)
[17] Zhigang Chen*, et al. Multifunctional nanozymes for sonodynamic-enhanced immune checkpoint blockade therapy by inactivating PI3K/AKT signal pathway. Biomaterials, 2025, 318, 123125. (Link, SCI, IF =12.9)
[18] Zhigang Chen*, et al. Biomimetic Design of Photothermal/Electrothermal Fabric Composed of Carbon-Core /Nanorod-Array-Shell Fibers for Efficient All-Weather Seawater Evaporation. Advanced Functional Materials, 2025, 35, 2423472. (Link, SCI, IF =19)
[19] Zhigang Chen*, et al. Photothermal fabrics for solar-driven seawater desalination.Progress in Materials Science, 2025, 150, 101407. (Link, SCI, IF =40)
[20] Zhigang Chen*, et al. Biomimetic Design of Breathable 2D Photothermal Fabric with Three-Layered Structure for Efficient Four-Plane Evaporation of Seawater. Advanced Materials, 2025, 37, 2420482. (Link, SCI, IF =26.8)
[21] Zhigang Chen*, et al. Sequential Magneto-Activation Platforms Break Multiple Cellular Defenses to Potentiate Mildthermal-Oxidative-Immunotherapeutics. Advanced Functional Materials, 2026, 36, e20668. (Link, SCI, IF =19)
[22] Zhigang Chen*, et al. Hydrogel Fiber Evaporator with Vertical Channels Integrated with Dual Heat Supply/Insulation Model for Continuous Solar Desalination.Nano-Micro Letters, 2026, 18, 261. (Link, SCI, IF =36.3)
[23] Zhigang Chen*, et al. Nature-Inspired Upward Hanging Evaporator with Photothermal 3D Spacer Fabric for Zero-Liquid-Discharge Desalination.Nano-Micro Letters, 2026, 18, 22. (Link, SCI, IF =36.3)
[24] Zhigang Chen*, et al.Cactus Thorn-Inspired Janus Nanofiber Membranes as a Water Diode for Light-Enhanced Diabetic Wound Healing.Nano-Micro Letters, 2026, 18, 101. (Link, SCI, IF =36.3)
[25] Zhigang Chen*, et al. Self-Pumping Janus Membranes for Calcium Delivery in Diabetic Wound Healing. Advanced Functional Materials,2026, e00053. (Link, SCI, IF =19)
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