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谌宁
2023-05-13 09:51
  • 谌宁
  • 谌宁 - 教授 硕导-苏州大学-材料与化学化工学部-个人资料

近期热点

资料介绍

个人简历


1997.09-2001.07 汕头大学化学系,应用化学专业,理学学士学位。\r
2001.09-2004.07 汕头大学化学系,工业催化专业,工学硕士学位。\r
2004.09-2007.07 中国科学院化学研究所,分子纳米结构与纳米技术实验室,物理化学专业, 理学博士学位,导师王春儒研究员。\r
2007.10-2009.04 莱布尼茨固体与材料研究所(德国,德累斯顿)(Leibniz Institute for Solid State and Materials Research Dresden),博士后,合作导师 Lothar Dunsch 教授。\r
2009.09-2010.08 克莱姆森大学(Clemson University,美国)化学系,博士后, 合作导师 Luis Echegoyen 教授。\r
2010.09-2012.04 德州大学艾尔帕索分校(University of Texas at El Paso,美国)化学系,博士后, 合作导师Luis Echegoyen 教授。\r
2012.06-2018.06 苏州大学副教授。\r
2018.07迄今 苏州大学教授

研究领域


"""""纳米碳材料,富勒烯与内嵌富勒烯的物理化学性质及其在生物医学方面的应用研究\r
纳米碳材料在有机光电器件中的应用研究"

近期论文


Xingxing Zhang, Wanlu Li, Lai Feng, Xin Chen, Andreas Hansen, Stefan Grimme, Skye Fortier, Dumitru-Claudiu Sergentu, Thomas J. Duignan, Jochen Autschbach, Shuao Wang, Yaofeng Wang, Giorgios Velkos, Alexey A. Popov, Nabi Aghdassi, Steffen Duhm, Xiaohong Li, Jun Li,* Luis Echegoyen,* W. H. Eugen Schwarz, and Ning Chen.* A Diuranium Carbide Cluster Stabilized Inside a C80 Fullerene Cage. Nat. Commun., 2018, 9, 2753.\r
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Wenting Cai, Roser Morales-Martínez, Jiaxin Zhuang, Xingxing Zhang, Yaofeng Wang, Antonio Rodríguez-Fortea, Josep M. Poblet,* Luis Echegoyen,* Lai Feng and Ning Chen.* Synthesis and Characterization of Non-Isolated-Pentagon-Rule Actinide Endohedral Metallofullerenes U@C1(17418)‑C76, U@C1(28324)‑C80, and Th@C1(28324)‑C80: Low-Symmetry Cage Selection Directed by a Tetravalent Ion.J. Am. Chem. Soc.,2018, 140, 18039−18050.\r
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Xingxing Zhang, Yaofeng Wang, Roser Morales-Martínez, Jun Zhong, Coen de Graaf, Antonio Rodríguez-Fortea, Josep M. Poblet,* Luis Echegoyen,* Lai Feng, and Ning Chen,* U2@Ih(7)‑C80: Crystallographic Characterization of a Long-Sought Dimetallic Actinide Endohedral Fullerene. J. Am. Chem. Soc.,2018, 140, 3907−3915.\r
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Yaofeng Wang, Roser Morales-Martínez, Xingxing Zhang, Wei Yang, Yaxing Wang, Antonio Rodríguez-Fortea, Josep M. Poblet,* Lai Feng,* Shuao Wang,* and Ning Chen.* Unique Four-Electron Metal-to-Cage Charge Transfer of Th to a C82 Fullerene Cage: Complete Structural Characterization of Th@C3v(8)‑C82. J. Am. Chem. Soc., 2017, 139, 5110-5116.\r
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Wenting Cai, Roser Morales-Mart´ınez, Xingxing Zhang, Daniel Najera, Elkin L. Romero, Alejandro Metta-Magana, Antonio Rodr´ıguez-Fortea, Skye Fortier, Ning Chen,* Josep M. Poblet* and Luis Echegoyen,* Single crystal structures and theoretical calculations of uranium endohedral metallofullerenes (U@C2n, 2n=74, 82) show cage isomer dependent oxidation states for U. Chem. Sci.,2017, 8, 5282–5290.\r
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Tiantian Cao, Peng Huang, Kaicheng Zhang, Ziqi Sun, Kai Zhu, Ligang Yuan, Kang Chen, Ning Chen* and Yongfang Li, Interfacial engineering via inserting functionalized water-soluble fullerene derivative interlayers for enhancing the performance of perovskite solar cells. J. Mater. Chem. A, 2018, 6, 3435–3443.\r
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Wei Yang, Laura Abella, Yaofeng Wang, Xiaohong Li, Jiali Gu, Josep M. Poblet, Antonio Rodríguez-Fortea*, and Ning Chen.* Mixed Dimetallic Cluster Fullerenes: ScGdO@C3v(8)-C82 and ScGdC2@C2v(9)-C82. Inorg. Chem., 2018, 57(18).11597-11605.\r
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Kang Chen, Tiantian Cao, Ziqi Sun, Dan Wang, Ning Chen* and Yongfang Li. Performance enhancement of perovskite solar cells through interfacial engineering: Water-soluble fullerenol C60(OH)16 as interfacial modification layer. Org. Electron., 2018, 62, 327-334.\r
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Ziqi Sun, Yujiao Xiahou, Tiantian Cao, Kaicheng Zhang, Zhaowei Wang, Peng Huang, Kai Zhu, Ligang Yuan, Yi Zhou, Bo Song, Haibing Xi,* and Ning Chen.* Enhanced p-i-n type perovskite solar cells by doping AuAg@AuAg core-shell alloy nanocrystals into PEDOT: PSS layer. Org. Electron., 2018, 52, 309–316.\r
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Wei Yang, Xiaomeng Li, and Ning Chen.* Recent Progress on Endohedral Metallic Fullerenes. Gen. Chem., 2018, 4, 180004.\r
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Tiantian Cao, Ning Chen,* Guangxin Liu, Yingbo Wan, José Darío Perea, Yijun Xia, Zhaowei Wang, Bo Song, Ning Li,* Xiaohong Li,* Yi Zhou,* Christoph J. Brabec and Yongfang Li. Towards a full understanding of regioisomer effects of indene-C60 bisadduct acceptors in bulk heterojunction polymer solar cells. J. Mater. Chem. A, 2017, 5, 10206–10219.\r
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Yaofeng Wang, Qiangqiang Tang, Lai Feng,* and Ning Chen.* Sc2C2@D3h(14246)‑C74: A Missing Piece of the Clusterfullerene Puzzle. Inorg. Chem., 2017, 56, 1974-1980.\r
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Jiaxin Zhuang, Yaofeng Wang, Jinqian Yao, Ting Yang, and Ning Chen.* Synthesis and Characterization of Lu3N@C80O. Chin. J. Chem., 2017, 35, 1459-1462.\r
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Laura Abella, Yaofeng Wang, Antonio Rodriguez-Fortea,* Ning Chen* and Josep M. Poblet.* Current status of oxide clusterfullerenes.Inorganica Chimica Acta, 2017, 468, 91-104.\r
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Tiantian Cao, Zhaowei Wang, Yijun Xia, Bo Song, Yi Zhou,* Ning Chen,* and Yongfang Li. Facilitating Electron Transportation in Perovskite Solar Cells via Water-Soluble Fullerenol Interlayers. ACS Appl. Mater. Interfaces, 2016, 8, 18284-18291.\r
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Qingqing Dong, Zhaowei Wang, Kaicheng Zhang, Hao Yu, Peng Huang, Xiaodong Liu, Yi Zhou,* Ning Chen*and Bo Song.* Easily accessible polymer additives for tuning the crystal-growth of perovskite thin-films for highly efficient solar cells. Nanoscale, 2016, 8, 5552–5558.\r
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Laura Abella, Qiangqiang Tang, Xingxing Zhang, Yaofeng Wang, Ning Chen,* Josep M. Poblet,* and Antonio Rodríguez-Fortea*. Sc3O@Ih(7)‑C80: A Trimetallic Oxide Clusterfullerene Abundant in the Raw Soot. J. Phys. Chem. C, 2016, 120, 26159-26167.\r
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Guangxin Liu, Tiantian Cao, Yijun Xia, Bo Song, Yi Zhou,* Ning Chen,*and Yongfang Li. Dihydrobenzofuran-C60 bisadducts as electron acceptors in polymer solar cells: Effect of alkyl substituents. Synthetic Met., 2016, 215, 176–183.\r
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Lai Feng*, Meirong Zhang, Yajuan Hao, Qiangqiang Tang, Ning Chen,* Zdeněk Slanina,* and Filip Uhlík. Endohedrally stabilized C70 isomer with fused pentagons characterized by crystallography. Dalton Trans., 2016, 45, 8142–8148.\r
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Yajuan Hao, Qiangqiang Tang, Xiaohong Li, Meirong Zhang, Yingbo Wan, Lai Feng,* Ning Chen,* Zdenek Slanina,* Ludwik Adamowicz, and Filip Uhlík. Isomeric Sc2O@C78 Related by a Single-Step Stone-Wales Transformation: Key Links in an Unprecedented Fullerene Formation Pathway. Inorg. Chem., 2016, 55, 11354-11361.

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