陈经纬-下载亚博

发布时间:2021-10-28信息来源:材料科学与工程学院浏览次数:10479

陈经纬,博士,副教授

山东省优秀青年科学基金(海外)项目获得者

《nano-micro letters》,《rare metals》,nano materials science《materials futures》等期刊青年编委

下载亚博的联系方式

researchgate: https://www.researchgate.net/profile/jingwei-chen-4

orcid:0000-0003-4440-400x


研究与学习工作简历

2021.08-至今        中国海洋大学,青年英才计划二层次,副教授

2019.04-2021.07   ntu/新加坡-以色huj究创业联(share)博士后

2017.03-2017.05   德国奥尔登堡大学,博士交换生 (导师:katharina al-shamery)

2014.08-2019.03   新加坡南洋理工大学,博士(导师:pooi see lee)

2010.08-2014.06   哈尔滨工业大学(威海),工学学士


研究方向

     高效电化学储能/节能材料及器件

面向储能/节能电化学新能源器件,调控电极物相结构,优化制备工艺,解析电化学机理,实现微纳结构电极的可控制备,明晰电化学过程中的物理化学变化,推动大规模高效电化学器件(金属离子电池、电致变色器件等)的应用。

 

代表性科研项目

 国家自然科学基金青年科学基金(2023-2025)

 山东省优秀青年科学基金项目(海外)(2023-2025)

 中国海洋大学青年英才启动经费(2022-2024)


教学与教研

 电化学基础本科生必修课(32学时)           主讲

 电化学原理和应用研究生核心专业课(32学时) 主讲

 中国海洋大学本科教育教学研究一般项目     主持

 中国海洋大学研究生精品示范课             主持


学术成果

现已发表sci期刊收录论文60余篇,以第一/通讯作者身份在adv. energy mater., adv. funct. mater., appl. phys. rev., nano-micro lett., energy environ. mater., small methods, small sci.等期刊发表sci论文20篇,论文总引用4000余次,h因子33。担任nat. comm., adv. mater., angew. chem., acs energy lett.等审稿人,及基金委评审专家等。


部分学术论文(*通讯,共一)

[25] j. chen, s. zhang, s. cao, m. zhu, b. wang, w. zhang, a. y. elezzabi, l. liu, w. w. yu, h. li*, “electrochromic devices for ***”, device. 2024. accepted.

[24] x. yu, p. guo, j. chen*, s. li*, h. li*, “recent advances in multifunctional electrochromic devices”, responsive materials, 2, e20240013, 2024. (invited)

[23] m. liu, w. tian*, l. zhang, c. li, c. zhu, h. liang, w. fan, j. wu, m. huang, j. chen*, h. wang*, “flexible free-standing mxene-based film electrodes for aqueous zinc ion storage”, energy reviews, 100084, 2024. (invited)

[22] y. zhang, b. xu, h. li, f. zhao, j. chen*, h. wang*, w. w. yu*, “inkjet printing for smart electrochromic devices”, flexmat, 1, 23, 2024. (invited, 创刊首期)

[21] j. chen, b. xu, y. zhang, w. zhang, h. wang, a. elezzabi, l. liu, w. yu, h. li*, “the birth of zin anode based electrochromic devices”, applied physics reviews, 11, 011316, 2024. (featured article)

[20] l. wang, b. wang, j. chen*, h. li*, “breakthrough application of electrochromism: multifunctional artificial muscle”, iscience, 27, 109091, 2024.

[19] j. hu, y. zhang, b. xu, y. ouyang, y. ma, h. wang, j. chen*, h. li*, “a hydrophobic alloy coated zn anode for durable electrochromic devices”, chemical communications, 60, 566, 2024. (invited, 本科生一作)

[18] l. yang, y. zhao, y. zhang, c. zhu, w. wang, j. shi, s. liu, j. chen*, m. huang, j. wu, h. wang*, “structural engineering of hard–soft carbon hybrid anodes for ultrafast and ultradurable potassium-ion storage”, small methods, 2301355, 10.1002/smtd.202301355, 2023.

[17] f. zhang, j. qian, w. dong, y. qu, j. chen*, h. wang*, l. chen*, “a facile tip shielding strategy for highly reversible zn anode”, chemical engineering journal, 478, 147406, 2023.

[16] b. xu, j. chen*, p. li, y. ouyang, y. ma, h. wang*, h. li*, “transparent metal oxide interlayer enabling durable and fast-switching zinc anode-based electrochromic devices”, nanoscale, 15, 19629, 2023. (invited)

[15] l. yang, j. chen*, s. park, h. wang*, “recent progress on metal-organic framework derived carbon and their composites as anode materials for potassium-ion batteries”, energy materials, 3, 300042, 2023. (invited)

[14] b. xu, j. chen*, z. ding, j. hu, y. zhang, h. li*, h. wang*, “the progress and outlook of multivalent ion-based electrochromism”, small science, 3, 2300025, 2023. (invited)

[13] j. chen*, g. adit, l. li, y. zhang, d. h.c. chua, p. s. lee*, “optimization strategies toward functional sodium-ion batteries”, energy & environmental materials, 6, e12663, 2023. (invited)

[12] z. gao, l. han, hui gao, j. chen*, z. sun, c. zhu, y. zhang, j. shi, s. chen*, h. wang*, “coupling core–shell bi@void@tio2 heterostructures into carbon nanofibers for achieving fast potassium storage and long cycling stability”, journal of materials chemistry a, 10, 12908, 2022.

[11] j. chen, p. s. lee*, “electrochemical supercapacitors: from mechanism understanding to multifunctional applications”, advanced energy materials, 11, 2003311, 2021.

[10] c. zhu, h. wang*, w. fan, s. zhai, x. wang, j. shi, m. huang, s. liu, z. li, j. chen*, “large-scale doping-engineering enables boron/nitrogen dual-doped porous carbon for high-performance zinc ion capacitors”, rare metals, 41, 2505, 2022.

[9] j. chen*, a. l. s. eh, j. h. ciou, p. s. lee*, “pseudocapacitive and dual-functional electrochromic zn batteries”, materials today energy, 27, 101048, 2022.

[8] j. chen, a. w. m. tan, a. l. s. eh, p. s. lee*, “scalable inkjet printing of electrochromic smart windows for building energy modulation”, advanced energy sustainability research, 3, 2100172, 2021.

[7] s. li, j. chen, j. xiong, x. gong, j. ciou, p. s. lee*, “encapsulation of mns nanocrystals into n, s co-doped carbon as anode material for high-performance full cell sodium-ion capacitors”, nano-micro letters, 12, 34, 2020.

[6] j. chen, d. h.c. chua, p. s. lee*, “the advances of metal sulfides and in-situ characterization methods for beyond li ion batteries: sodium, potassium and aluminum ion batteries”, small methods, 4, 1900648, 2019.

[5] y. ke, j. chen, g. lin, s. wang, y. zhou, j. yin*, p. s. lee*, yi long*, “smart windows: electro-, thermo-, mechano-, photochromics, and beyond”, advanced energy materials, 9, 1902066, 2019.

[4] j. chen, l. mohrhusen, g. ali, s. li, k. y. chung, k. al-shamery, p. s. lee*, “electrochemical mechanism investigation of cu2mos4 hollow nanospheres for fast and stable sodium ion storage”, advanced functional materials, 29, 1807753, 2019.

[3] j. chen, s. li, k. qian, p. s. lee*, “nimn layered double hydroxides derived multiphase ni sulfides with reduced graphene oxide composites as anode materials for sodium ion batteries with superior cycling stability”, materials today energy, 9, 74, 2018.

[2] j. chen, s. li, v. kumar, p. s. lee*, “carbon coated bimetallic sulfide hollow nanocubes as advanced sodium ion battery anode”, advanced energy materials, 7, 1700180, 2017.

[1] j. chen, x. wang, j. wang, p. s. lee*, “sulfidation of nimn layered double hydroxides/graphene oxide composites toward supercapacitor electrodes with enhanced performance”, advanced energy materials, 6, 1501745, 2016.


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