找回密码
 立即注册

QQ登录

只需一步,快速开始

查看: 345|回复: 0
打印 上一主题 下一主题

[材料资讯] 南开大学材料科学与工程学院龙官奎

[复制链接]

182

主题

218

帖子

327

积分

中级会员

Rank: 3Rank: 3

积分
327
跳转到指定楼层
楼主
发表于 2023-3-23 17:28:49 | 只看该作者 回帖奖励 |倒序浏览 |阅读模式
龙官奎,南开大学材料科学与工程学院 特聘研究员,课题组长。2009年本科毕业于兰州大学化学化工学院,保送至南开大学化学学院攻读博士学位,导师为陈永胜教授。随后在天津化学化工协同创新中心 关乃佳教授/陈永胜教授、加拿大多伦多大学E. H. Sargent院士 、新加坡南洋理工大学Weibo Gao副教授和Cesare Soci副教授课题组从事博士后工作。龙官奎博士的研究领域包括新型手性钙钛矿/有机光电材料的合成及其应用研究,高性能有机太阳能电池,功能光电材料中的结构-性能关系研究和理论计算等。龙官奎博士近年来发表论文80余篇,其中以第一作者及通讯作者身份发表论文18篇,包括 Nat. Photon.、Nat. Rev. Mater.、Adv. Mater.、Adv. Energy Mater. 等国际著名期刊。为国内外10多个课题组提供了理论计算和机理研究方面的支撑,担任《Nano-Micro Letters》编辑部的Assistant Editor (IF=12.264)。

龙官奎
特聘研究员,博士生导师,硕士生导师
二级单位 :碳纳米科技及高分子复合材料研究中心
办公电话 :
电子邮箱 :longgk09@nankai.edu.cn
办公地点 :南开大学材料科学与工程学院454室
通讯地址 :天津市海河教育园区同砚路38号 南开大学津南校区材料楼454室(300350)
主页网址 :
研究方向
高性能有机太阳能电池,新型手性钙钛矿材料/手性光电材料的合成及其应用研究,功能光电材料中的结构-性能关系研究,钙钛矿手性超材料,理论计算


奖励荣誉:
国家青年人才项目
天津市青年人才项目
䇹政学者(2008年赴新竹清华大学交流,指导老师:张浩力/季昀教授)




代表性成果
  • Zhang, Y.;† Chen, M.;† He, T.; Chen, H.; Zhang, Z.; Wang, H.; Lu, H.; Ling, Q.; Hu, Z.; Liu, Y.;* Chen, Y.;* Long, G.;* Highly Efficient and Stable FA-Based Quasi-2D Ruddlesden-Popper Perovskite Solar Cells by the Incorporation of β-Fluorophenylethanamine Cations. Adv. Mater. 2023, DOI: 10.1002/adma.202210836, Accepted
  • Liu, X.; Lu, H.; Zhu, S.; Cui, Z.; Li, Z.; Wu, S.; Xu, W.; Liang, Y.;* Long, G.;* Jiang H.;* Alloying-Triggered Phase Engineering of NiFe System via Laser-Assisted Al Incorporation for Full Water Splitting. Angew. Chem. Int. Ed. 2023, e202300800
  • Chen, X.-H.; Lu, H., Wu, Z.; Wang, H.; Zhang, S.; Mei, S.;* Long, G.;* Zhang, Q.;* Yao C.* Structure regulation induced high capacity and ultra-stable cycling of conjugated organic cathodes for Li-ion batteries. J. Mater. Chem. A 2023, 11, 77-83
  • Huang, F.; He, T.; Li, M.; Meng, L.; Feng, W.; Liang, H.; Zhou,Y.; Wan, X.; Li, C.; Long, G.;* Yao, Z.;* Chen, Y.;* Can Isotope Effect Enable Organic Solar Cells to Achieve Smaller Non-Radiative Energy Losses and Why? Chem. Mater., 2022, 34, 13, 6009-6025
  • Chen, H.;† Zou, Y.;† Liang, H.; He, T.; Xu, X.; Zhang, Y.; Ma, Z.; Wang, J.; Zhang, M.; Li, Q.; Li, C.; Long, G.;* Wan, X.; Yao, Z.;* Chen, Y.;* Lowing the energy loss of organic solar cells by molecular packing engineering via multiple molecular conjugation extension. Sci. China Chem., 2022, 65, pages1362-1373
  • Yang, B.; Wang, Z.; He, T.; Chen, J.; Mu, Z.; Ju, Z.; Lin, M.; Long, G.;* Zhang, J.;* Meng, H.;* Huang, W.; Chlorine substituted N-heteroacene analogues acting as organic semiconductors for solution-processed n-type organic field-effect transistors. Chem. Eur. J. 2022, e202201176
  • Liu, J.; Luo, C.; Lu, H.; Huang, Z.;* Long, G.;* Peng, X.;* Influence of hexagonal boron nitride on electronic structure of graphene. Molecules, 2022, 27, 3740
  • Long, G.;† Adamo, G.;† Tian, J.; Klein, M.; Krishnamoorthy, Harish N. S.; Feltri, E.; Wang, H.; Soci, C.;* Perovskite metasurfaces with large superstructural chirality. Nat. Commun., 2022, 13, 1551.
  • Long, G.;† Adamo, G.;*† Tian, J.; Feltri, E.; Krishnamoorthy, Harish N. S.; Klein, M.; Soci, C.; All-dielectric Halide Perovskite Metasurfaces with Giant Chirality. OSA Technical Digest, 2021, DOI: 10.1364/CLEO_SI.2021.STu1C.2
  • Long, G.;† Sabatini, R.;† Saidaminov, M. I.;† Lakhwani, G.; Rasmita, A.; Liu, X.; Sargent, E. H.;* Gao, W.;* Chiral-perovskite optoelectronics. Nat. Rev. Mater. 2020, 5, 423
  • Long, G.;† Jiang, C.;† Sabatini, R.;† Yang, Z.;Wei, M.; Quan, L.; Liang, Q.;  Rasmita, A.; Askerka, M.; Walters, G.; Gong, X.; Xing, J.; Wen, X.; Quintero-Bermudez, R.; Yuan, H.; Xing, G.; Wang, X.; Song, D.; Voznyy, O.; Zhang, M.; Hoogland, S.; Gao, W.;* Xiong, Q.;* Sargent, E. H.;* Spin control in reduced-dimensional chiral perovskites. Nat. Photon., 2018, 12, 528-533.
  • Long, G.;*† Zhou, Y.;† Zhang, M.;†Sabatini, R.; Rasmita, A; Huang, L.; Lakhwani, G.; Gao, W.;* Theoretical prediction of chiral three-dimensional hybrid organic-inorganic perovskites. Adv. Mater., 2019, 31, 1807628.
  • Long, G.;† Wu, B.;† Ankur, S.; Yang, X.; Kan, B.; Liu, X.; Wan, X.; Li, M.; Sum, T.-C.;* Chen, Y.;* New insights into the correlation between morphology, excited state dynamics and device performance of small molecule organic solar cells. Adv. Energy Mater., 2016, 6, 1600961.
  • Long, G.; Wan, X.;* Kan, B.; Liu, Y.; He, G.; Li, Z.; Zhang, Y.; Zhang, Y.; Zhang, Q.; Zhang, M.; Chen, Y.;* Investigation of quinquethiophene derivatives with different end groups for high open circuit voltage solar cells. Adv. Energy Mater.,2013, 3, 639-646.
  • Long, G.;† Li, A.;† Shi, R.; Zhou, Y.; Yang X.; Zuo, Y.; Wu, W.-R.; Jeng, U-S.; Wang, Y.; Wan, X.; Shen, P.; Zhang, H.; Yan, T.;* Chen, Y.;* The evidence for fullerene aggregation in high-performance small-molecule solar cells by molecular dynamics simulation. Adv. Electron. Mater.,2015, 1, 1500217.
  • Long, G.; Wan, X.;* Kan, B.; Hu, Z.; Yang, X.; Zhang, Y.; Zhang, M.; Wu, H.; Huang, F.; Su, S.; Cao, Y.; Chen, Y.;* Electron transport layer impact on the performance of solution processed small molecule organic solar cells. ChemSusChem., 2014, 7, 2358-2364.
  • Long, G.;† Wu, B.;† Yang, X.; Kan, B.; Zhou, Y.; Wan, X.; Chen, L.; Zhang, H.; Sum, T.-C.;* Chen, Y.;* The enhancement of performance and mechanism studies of all-solution processed small-molecule based solar cells with an inverted structure. ACS Appl. Mater. Interf., 2015, 7, 21245-21253.
  • Long, G.;† Zhou, Y.;† Jin, M.; Kan, B.; Zhang, Y.; Angus, G.-W.;* Jiang, D.-E.;* Chen, Y.;* Zhang, Q.;* Theoretical investigation on two-dimensional non-traditional carbon materials with three-membered ring and four-membered ring as building blocks. Carbon. 2015, 95, 1033-1038.
  • Long, G.; Yang, X.; Chen, W.; Zhang, M.;* Zhao, Y.;* Chen, Y.;* Zhang, Q.;* “Doping” pentacene with sp2 phosphorus atoms: towards high performance ambipolar semiconductors.Phys. Chem. Chem. Phys., 2016, 18, 3173-3178.
  • Long, G.;† Shi, R.;† Zhou, Y.; Li, A.; Kan, B.; Wu, W.-R.; Jeng, U-S.; Xu, T.; Yan, T.; Zhang, M.; Yang, X.; Ke, X.; Sun, L.; Angus, G.-W.; Wan, X.; Zhang, H.; Li, C.; Wang, Y.;* Chen, Y.;* Molecular origin of donor- and acceptor-rich domain formation in bulk-heterojunction solar cells with an enhanced charge transport efficiency. J. Phys. Chem. C, 2017, 121, 5864-5870.
  • Jin, J.;† Long, G.;† Gao, Y.; Zhang, J.;* Ou, C.; Zhu, C.; Xu, H; Zhang, J;* Zhang, M.; Huang, W.;* Supramolecular Design of Donor-Acceptor Complexes via Heteroatom Replacement toward Structure and Electrical Transporting Property Tailoring. ACS Appl. Mater. Interf., 2019, 11, 1109-1116.
  • Hu, P.;† Long, G.;† Chaturvedi, A.;† Wang, S.; Tan, K. J.; He, Y.; Zheng, L.; Liu, G.; Ke, Y.; Zhou, Y.; Jiang, H.;* Liu, Z.; Zhang, M.; Long, Y.;* Agent-assisted VSSe ternary alloy single crystals towards efficient stable electrocatalyst for hydrogen evolution reaction. J. Mater. Chem. A, 2019, 7, 15714 - 15721.
  • Zhou, Y.;*† Long, G.;† Li, A.; Angus, G.-W.; Yan, T.; Chen, Y.; Towards predicting power conversion efficiencies of organic solar cells from donor and acceptor molecule structures. J. Mater. Chem. C, 2018, 6, 3276-3287.
  • Zhang, Q.;† Kan, B.;† Liu, F.;† Long, G.; Wan, X.; Chen, X.; Zuo, Y.; Ni, W.; Zhang, H.; Li, M.; Hu, Z.; Huang, F.; Cao, Y.; Liang, Z.; Zhang, M.; Russell, T.; Chen, Y.;* Small-molecule solar cells with efficiency over 9%. Nat. Photon., 2015, 9, 35-41.



  声明:本网部分文章和图片来源于网络,发布的文章仅用于材料专业知识和市场资讯的交流与分享,不用于任何商业目的。任何个人或组织若对文章版权或其内容的真实性、准确性存有疑义,请第一时间联系我们,我们将及时进行处理。
分享到:  QQ好友和群QQ好友和群 QQ空间QQ空间 腾讯微博腾讯微博 腾讯朋友腾讯朋友
收藏收藏 转播转播 分享分享 分享淘帖
回复

使用道具 举报

小黑屋|手机版|Archiver|版权声明|一起进步网 ( 京ICP备14007691号-1

GMT+8, 2024-5-9 01:20 , Processed in 0.085549 second(s), 37 queries .

Powered by Discuz! X3.2

© 2001-2013 Comsenz Inc.

快速回复 返回顶部 返回列表