陳志鋼
發布人: 星禧   發布時間: 2020-05-11    浏覽次數:


 

陳志鋼-照片陳志鋼

研究員、博士生導師、教育部青年長江學者

纖維材料改性國家重點實驗室副主任

電話:021-67792975

Email: zgchen@dhu.edu.cn

   地址:上海市松江區人民北路2999号,bevictor伟德官网材料學院C364

   課題組網站:http://pilab.dhu.edu.cn/zgchen/


1學習和工作經曆

2015.07—2016.2    新加坡國立大學化學系劉小鋼教授課題組,訪問學者

2013.10— 今bevictor伟德官网材料學院,研究員、博士生導師

2010.10—2013.09   bevictor伟德官网材料學院,副研究員

2008.10—2009.12   德國馬普膠體和界面研究所,洪堡學者

2008.07—2010.09   bevictor伟德官网材料學院,講師

2005.09—2008.06   複旦大學先進材料實驗室,博士生,師從黃春輝院士和李富友教授

 

2榮譽和獎勵

(1)202112月,獲評寶鋼優秀教師獎

(2)20214月,入選Elsevier發布的“2020中國高被引學者榜單

(3) 202012月,獲評bevictor伟德官网國際學生我心目中的好老師

(4) 20209月,入選第十屆上海市青年科技英才(基礎研究類)”

(5) 20207月,入選 “上海市優秀學術帶頭人

(6) 20205月,入選Elsevier發布的“2019中國高被引學者榜單

(7) 201911月,獲聘2018年度教育部青年長江學者

(8) 20195月,獲2018年度上海市自然科學一等獎(項目名稱:有機-無機雜化策略構建多功能生物醫用材料;完成人員:朱美芳,陳志鋼,沈明武,史向陽,胡俊青。) 

(9) 20191月,入選Elsevier發布的“2018中國高被引學者榜單

(10) 201811月,入選美國科睿唯安(Clarivate Analytics)發布的“2018全球高被引科學家

(11) 20189月,獲聘上海市曙光學者

(12) 20181月,入選Elsevier發布的“2017中國高被引學者榜單

(13) 201711月,獲中國紡織工業聯合會教學成果獎二等獎(排名第四)

(14) 20172月,入選Elsevier發布的“2016中國高被引學者榜單

(15) 20169月,入選美國科睿唯安(Clarivate Analytics)發布的“2016全球高被引科學家

(16) 20163月,被評為中國材料學會“先進工作者”

(17) 20145月,被評為bevictor伟德官网“師德建設青年标兵”

(18) 20113月,入選上海市“青年科技啟明星”

(19) 20087月,入選德國“洪堡學者”

 

3主講課程:

(1) 材料學文獻檢索和閱讀(本科生)

(2) 大型材料加工實驗(本科生)

(3) 現代無機合成化學 (碩士生和博士生)

 

4研究方向:

(1) 新型無機、高分子、有機/無機雜化等光熱轉換材料的開發及其在癌症診療方面的應用

(2)高效光熱轉換織物的制備及其在太陽能利用、海水淡化等領域中的應用

(3) 光緻變色新型織物的構築及其在智能可穿戴設備中的應用

(4) 納米光催化材料的開發及其在污水淨化和有機催化反應中的應用

(5) 新型生物納米發電機的設計、構築及應用

 

5主持的科研項目

(1) 2021年國家自然科學基金國際合作項目(52161145406)2022.01-2024.12,在研。

(2) 2019年國家自然科學基金面上項目(51972056)2020.01-2023.12,在研

(3) 2017國家自然科學基金面上項目(51773036)2018.01-2021.12,結題

(4) 2014年國家自然科學基金面上項目(51473033)2015.01-2018.12,結題

(5) 2012年國家自然科學基金面上項目(51272299)2013.01-2016.12,結題

(6) 2009年國家自然科學基金青年基金(50902021)2010.01-2012.12,結題

(7) 2020年上海市優秀學術帶頭人計劃(20XD1420200)2020.10.01-2023.09.30,在研

(8) 2018年上海市曙光計劃(18SG29)2019.01-2021.12,在研

(9) 2018年上海市自然科學基金探索類項目(18ZR1401700)2018.06-2021.05,在研

(10) 2013年上海市科委基礎研究重點項目(13JC1400300), 2013.09-2016.08,結題

(11) 2012年上海市教育委員會科研創新項目資助(13ZZ053), 2013.01-2015.12,結題

(12) 2012年上海人才發展基金(2012033), 2013.01-2015.12,結題

(13) 2011年上海市青年科技啟明星計劃(11QA1400100)2011.04-2013.03,結題

(14) 2011年教育部留學回國人員科研啟動基金資助項目,2012.01-2014.12,結題

(15) 教育部博士點新教師基金(20090075120014)2010.01-2012.12,結題

(16) 2009年度上海市晨光計劃(09CG27)2009.11-2011.12,結題

(17) bevictor伟德官网勵志計劃,2014.01-2016.12,結題

 

6社會兼職:

擔任中國材料學會青年工作委員會理事會理事、上海矽酸鹽學會無機新能源材料委員會委員、《Advanced Fiber Materials》執行主編(Deputy Editor-in-Chief)、《bevictor伟德官网學報(英文版)》執行副主編、《中國介入影像與治療學》編委、《中國材料進展》青年編委等。

 

7已取得的主要研究成果:

截至2021220日,在Chem. Soc. Rev.Adv. Mater.J.Am. Chem. Soc.Adv. Funct. Mater.ACS NanoBiomaterials等期刊共發表SCI論文170餘篇,其中影響因子大于10的論文有36篇。所有論文共被引用1.46萬餘次,他引1.4萬餘次;H因子為55多次入選全球高被引科學家和中國高被引學者。

 

8其他:

熱誠歡迎對光功能材料(無機納米材料、高分子材料、有機無機雜化材料)、生物醫學應用(癌細胞成像和治療)、海水淡化、變色和可穿戴智能織物、能量轉換和存儲等領域感興趣的本科生同學加入本課題組。近幾年每年都有本科生以第一作者發表SCI論文,每年多位本科生被推薦到國外著名高校深造。

本課題組每年招收博士生2名、碩士生若幹名。熱誠歡迎具有無機和高分子材料、化學或物理背景的優秀學生報考bevictor伟德官网材料學院以及纖維材料改性國家重點實驗室,并加入本團隊攻讀碩士和博士學位。歡迎具有材料、化學或物理背景的優秀博士從事博士後研究,待遇豐厚。

 

9代表性論文 (*号代表通訊作者)[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 =15.419)

[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 =18.808) 

[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 =30.849)

[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 =18.881)

[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 =30.849)

[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,封面論文, IF =30.849)

[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 =18.808)

[8] Zhigang Chen*, et al. Growth of C3N4nanosheets 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 =19.503)

[9] Zhigang Chen*, et al. Thiol-capped Bi nanoparticles as stable and all-in-one type theranosticnanoagents for tumor imaging and thermoradiotherapy.Biomaterials, 2018, 161, 279-291. (Link, SCI, IF =12.479) 

[10] Zhigang Chen*, et al. Blue TeNanoneedles with Strong NIR Photothermal and Laser-Enhanced Anticancer Effects as “All-in-One” Nanoagents for Synergistic Thermo-Chemotherapy of Tumors.Advanced Healthcare Materials, 2018, 7, 1800643.(Link, SCI, IF =9.933)

[11] 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 =18.808)

[12] Zhigang Chen*, et al. UV/NIR-Light-Triggered Rapid and Reversible Color Switching for Rewritable Smart Fabrics. ACS Applied Materials & Interfaces, 2019, 11, 13370-13379. (Link, SCI, IF =9.229)

[13] Zhigang Chen*, et al. Flexible and washable CNT-embedded PAN nonwoven fabrics for solar-enabled evaporation and desalination of seawater. ACS Applied Materials & Interfaces, 2019, 11, 35005-35014. (Link, SCI, IF =9.229).

[14] Zhigang Chen*, et al. Recyclable CNT-coupled cotton fabrics for low-cost and efficient desalination of seawater under sunlight. Desalination, 2019, 462, 29-38. (Link, SCI, IF =9.501)

[15] Zhigang Chen*, et al. Galvanic Exchange-induced Growth of Au Nanocrystals on CuS Nanoplates for Imaging Guided Photothermal Ablation of Tumors.Chemical Engineering Journal, 2020, 381, 122613.(Link, SCI, IF =13.273)

[16] Zhigang Chen*, et al. Fabrication of g-C3N4/BiOBrheterojunctions on carbon fibers as weaveable photocatalyst for degrading tetracycline hydrochloride under visible light.Chemical Engineering Journal, 2020, 386, 124010.(Link, SCI, IF =13.273)

[17] Zhigang Chen*, et al. Construction of CuS@Fe-MOFnanoplatforms for MRI-guided synergistic photothermal-chemo therapy of tumors.Chemical Engineering Journal, 2020, 400, 125877.(Link, SCI, IF =13.273) 

[18] 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 =12.479)

[19] Zhigang Chen*, et al. One Responsive Stone, Three Birds: Mn(III)-Hemoporfin Frameworks with Glutathione-Enhanced Degradation, MRI, and Sonodynamic Therapy.Advanced Healthcare Materials, 2021, 10, 2001463. (Link, SCI, IF =9.933)

[20] Zhigang Chen*, et al. Boosting the adsorption and photocatalytic activity of carbon fiber/MoS2-based weavable photocatalyst by decorating UiO-66-NH2 nanoparticles.Chemical Engineering Journal, 2021, 417, 128112.(Link, SCI, IF =13.273)  

[21] Zhigang Chen*, et al. TiO2/BiOIp-n junction-decorated carbon fibers as weavable photocatalyst with UV–visphotoresponsive for efficiently degrading various pollutants.Chemical Engineering Journal, 2021, 415, 129019.(Link, SCI, IF =13.273)

[22]Zhigang Chen*, et al. Constructing on-demand photoreversible mono/multi-color switching fabrics with plasmonic in-doped ZnO catalyzed systems.Chemical Engineering Journal, 2021, 425, 130638.(Link, SCI, IF =13.273)

[23]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 =15.881)

[24] 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 =15.881)

[25] Zhigang Chen*, et al. Ag decorated CeO2-xnanojunctions with plasmon-enhanced catalytic performance for mono/multi-color switching.Chemical Engineering Journal, 2022, 431, 133996. (Link, SCI, IF =13.273)

[26] Zhigang Chen*, et al. Polyelectrolyte-based photothermal hydrogel with low evaporation enthalpy for solar-driven salt-tolerant desalination.Chemical Engineering Journal,2022, 431, 134224. (Link, SCI, IF =13.273)

[27] Zhigang Chen*, et al.Full-route advances via biomimetic and biodegradable ultrasmall-in-nano architectures with radiation-photo synergy.Nano Today, 2022, 43, 101427. (Link, SCI, IF =20.722)


 
 
Baidu
sogou