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誠(chéng)招“先進(jìn)材料與柔性電子”方向博士生
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一、研究組簡(jiǎn)介 低維材料與柔性電子研究小組創(chuàng)建于2024年4月,位于中山大學(xué)柔性電子學(xué)院(深圳校區(qū))。組長(zhǎng)為陳少華副教授,博士生導(dǎo)師、博士后合作導(dǎo)師(https://sofe.sysu.edu.cn/zh-hans/teacher/228 )。本科和博士畢業(yè)于東華大學(xué)材料科學(xué)與工程學(xué)院、纖維材料改性國(guó)家重點(diǎn)實(shí)驗(yàn)室,師從朱美芳院士。畢業(yè)后在清華大學(xué)清華-伯克利深圳學(xué)院從事博士后研究,師從成會(huì)明院士;之后在新加坡新加坡南洋理工大學(xué)材料科學(xué)與工程學(xué)院任研究員,合作導(dǎo)師lee pooi see院士。主持國(guó)家自然科學(xué)基金面上項(xiàng)目、深圳市科創(chuàng)局面上項(xiàng)目、中山大學(xué)引進(jìn)人才項(xiàng)目,曾作為骨干參與國(guó)防基礎(chǔ)科研項(xiàng)目、國(guó)家自然科學(xué)基金面上項(xiàng)目、新加坡國(guó)家研究基金項(xiàng)目。已在Chem. Rev., Nat. Nanotechnol., Adv. Mater., Nat. Commun., Adv. Energy Mater., Nano Energy, Adv. Science等學(xué)術(shù)期刊發(fā)表論文30余篇,被引2500余次;獲授權(quán)發(fā)明專利10件;合著論著1部。擔(dān)任Energy Storage Mater., Acs Energy Letters, J. Am. Ceram. Soc.等期刊獨(dú)立審稿人。 本研究組目前研究方向包括: (1)低維納米材料(類石墨烯二維納米片,一維納米纖維/納米線等)的制備和改性; (2)新型纖維、薄膜、凝膠的加工成形和結(jié)構(gòu)調(diào)控; (3)柔性/可穿戴電子器件的設(shè)計(jì)、組裝與應(yīng)用(柔性電源、軟體致動(dòng)器、柔性傳感器、柔性電子元件、柔性導(dǎo)熱膜等); (4)電化學(xué)等工況環(huán)境下原位xrd、原位電鏡、原位光譜表征。 研究組目前有1位博士導(dǎo)師,3位博士后,2位博士研究生,3名碩士研究生。研究組實(shí)驗(yàn)室已配備材料制備設(shè)備(反應(yīng)釜、超聲分散機(jī)、研磨機(jī)、烘箱、管式爐等)、加工成形設(shè)備(紡絲機(jī)、3d打印機(jī)、過(guò)濾、刮膜機(jī)、熱壓機(jī)、凍干機(jī)等)、器件組裝設(shè)備(電容器、電池、執(zhí)行器、傳感器等所需手套箱、沖壓機(jī)等)以及性能表征儀器(萬(wàn)能試驗(yàn)機(jī)、四探針儀、電化學(xué)工作站、石英晶體微天平、熱像儀)等基本設(shè)備,能夠保證實(shí)驗(yàn)的順利開(kāi)展。 柔性電子學(xué)院處于中山大學(xué)深圳校區(qū),校內(nèi)學(xué)科設(shè)置齊全,科研平臺(tái)設(shè)施完備,前沿交叉研究活躍。深圳校區(qū)位于宜居、宜學(xué)、宜研的光明區(qū)科學(xué)城,周邊擁有中國(guó)散裂中子源、深圳綜合粒子設(shè)施、國(guó)家超算深圳中心、材料基因組設(shè)施、特殊環(huán)境材料器件科學(xué)與應(yīng)用研究設(shè)施、腦解析與腦模擬設(shè)施、精確醫(yī)學(xué)影像設(shè)施以及中科院深圳理工大學(xué)、南方科技大學(xué)光明高等研究院、深圳醫(yī)學(xué)科學(xué)院、深圳灣實(shí)驗(yàn)室、松山湖材料實(shí)驗(yàn)室等新型科研機(jī)構(gòu)。到2025年,光明科學(xué)城將初步形成世界級(jí)科學(xué)城的核心功能;到2035年,將基本建成大灣區(qū)綜合性國(guó)家科學(xué)中心核心承載區(qū)。 代表性論文 (https://orcid.org/0000-0002-0076-2561): 1. shaohua chen, shu fen tan, harpreet singh, liang liu, mathieu etienne, pooi see lee*. functionalized mxene films with substantially improved low‐voltage actuation. adv. mater. 2024, 2307045. 2. shaohua chen, jing hao ciou, fei yu, jian chen, jian lv, pooi see lee*. molecular-level methylcellulose/mxene hybrids with greatly enhanced electrochemical actuation. adv. mater. 2022, 34, 2200660. 3. shaohua chen, runzhang xu, jiaman liu, xiaolong zou, qiu ling, feiyu kang, liu bilu*, hui-ming cheng*. simultaneous production and functionalization of boron nitride nanosheets by sugar-assisted mechanochemical exfoliation. adv. mater. 2019, 31, 1804810. 4. shaohua chen, ling qiu*, hui-ming cheng*. carbon-based fibers for advanced electrochemical energy storage devices. chem. rev., 2020,120, 2811-2878. 5. shaohua chen, wujun ma, yanhua cheng, zhe weng, bin sun, lu wang, wenping chen, feng li, meifang zhu*, hui-ming cheng*. scalable non-liquid-crystal spinning of locally aligned graphene fibers for high-performance wearable supercapacitors. nano energy, 2015, 15, 642-653. 6.shaohua chen, wujun ma, hengxue xiang, yanhua cheng, shengyuan yang, wei weng, meifang zhu*. conductive, tough, hydrophilic poly (vinyl alcohol)/graphene hybrid fibers for wearable supercapacitors. j. power sources. 2016, 319, 271-280. 7.shaohua chen# (共一), matthew wei ming tan#, xuefei gong, pooi see lee*. low‐voltage soft actuators for interactive human╟machine interfaces. adv. intell. syst. 2022, 4, 2100075. 8.liuxiang zhan#, shaohua chen# (共一), yangyang xin, jian lv, hongbo fu, dace gao, feng jiang, xinran zhou, ni wang, pooi see lee. dual-responsive mxene-functionalized wool yarn artificial muscles. advanced science. 2024, doi: 10.1002/advs.202402196. 9.xiaoyu guo#, shaohua chen# (共一), wei church poh, juntong chen, fan jiang, matthew wei ming tan, pooi see lee*. solid‐state and flexible black electrochromic devices enabled by ni‐cu salts based organohydrogel electrolytes. adv. mater. interfaces. 2023, 2300061. 10.wujun ma#, shaohua chen# (共一), shengyuan yang, wenping chen, yanhua cheng, yiwei guo, shengjie peng, seeram ramakrishna, meifang zhu*. hierarchical mno2 nanowire/graphene hybrid fibers with excellent electrochemical performance for flexible solid-state supercapacitors. j. power sources. 2016, 306, 481-488. 11. hao xu, baofu ding*, youan xu, ziyang huang, dahai wei, shaohua chen, tianshu lan, yikun pan, hui-ming cheng*, bilu liu*. magnetically tunable and stable deep-ultraviolet birefringent optics using two-dimensional hexagonal boron nitride. nature nanotechnol. 2022, 17, 1091-1096. 12.wujun ma, shaohua chen, shengyuan yang, wenping chen, wei weng, yanhua cheng, meifang zhu*. flexible all-solid-state asymmetric supercapacitor based on transition metal oxide nanorods/reduced graphene oxide hybrid fibers with high energy density. carbon. 2017, 113, 151-158. 13.zeng linchao, shaohua chen, liu minsu, cheng hui-ming, ling qiu*. integrated paper-based flexible li-ion batteries made by a rod coating method. acs appl. mater. interfaces. 2019, 11, 46776-46782. 14. wujun ma, shaohua chen, shengyuan yang, wenping chen, wei weng, meifang zhu*. bottom-up fabrication of activated carbon fiber for all-solid-state supercapacitor with excellent electrochemical performance. acs appl. mater. interfaces. 2016, 8, 23, 14622╟14627. 15.wujun ma, shaohua chen, shengyuan yang, meifang zhu*. hierarchically porous carbon black/graphene hybrid fibers for high performance flexible supercapacitors. rsc adv. 2016, 6, 50112-50118. 16. bhattacharyya a., shaohua chen, meifang zhu*. graphene reinforced ultra high molecular weight polyethylene with improved tensile strength and creep resistance properties. express polym. lett. 2014, 8, 74-84. 17.fei yu, ciou jing-hao, shaohua chen, poh wei church, jian chen, juntong chen, kongcharoen haruethai, jian lv, dace gao, pooi see lee*. ionic covalent organic framework based electrolyte for fast-response ultra-low voltage electrochemical actuators. nat. commun. 2022, 13, 390. 18. wenting wu, wei church poh, jian lv, shaohua chen, dace gao, fei yu, hui wang, huajing fang, hong wang, pooi see lee*. self‐powered and light‐adaptable stretchable electrochromic display. adv. energy mater. 2023, 13, 2204103. 19. yicong zhou, lanshu xu, minsu liu, zheng qi, wenbo wang, jiuyi zhu, shaohua chen, kuang yu, yang su, baofu ding, ling qiu* , hui-ming cheng*. viscous solvent-assisted planetary ball milling for the scalable production of large ultrathin two-dimensional materials. acs nano. 2022, 16, 10179╟10187. 20. jian lv, gurunathan thangavel, yangyang xin, dace gao, wei church poh, shaohua chen, pooi see lee. printed sustainable elastomeric conductor for soft electronics. nature commun. 2023, 6,14, 7132. 二、博士招生要求 1. 專業(yè)背景為材料、化學(xué)、化工、能源、紡織、電子、物理等方向。 2. 積極主動(dòng),勤奮自律,有好奇心、責(zé)任心、事業(yè)心、細(xì)致心和耐心。 3. 對(duì)本研究組方向有濃厚興趣,有志于開(kāi)發(fā)新材料、新技術(shù)、新器件、新應(yīng)用。 請(qǐng)感興趣的考生將簡(jiǎn)歷、代表作、大學(xué)成績(jī)單等信息發(fā)送至chenshaohua@mail.sysu.edu.cn。 |
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