基本信息

孙向南  男    中国科学院国家纳米科学中心
电子邮件: sunxn@nanoctr.cn
通信地址: 中关村北一条11号国家纳米科学中心
邮政编码: 100190


博士生导师,中国科学院“****”入选者。2007-2011年在中国科学院化学研究所攻读博士学位,从事有机光电器件方面的研究工作,导师为刘云圻院士。2012-2015年在西班牙CIC Nanogune研究中心Luis. E. Hueso教授课题组从事有机自旋电子器件的研究工作,期间获西班牙科技部Juan de la Cierva Fellowship资助。2016年1月回国加入国家纳米科学中心,迄今在Science, Nature Communications,Advanced Materials等国际著名学术期刊发表文章30余篇。

研究领域

研究领域为新型有机光电器件及有机自旋电子学。研究课题为:

1)外置磁场对有机光电器件性能及工作机制的调控及影响;

2)有机半导体分子材料中电荷及电荷自旋的输运机制的研究;

3)研发具有光、电、磁、热复合场响应能力的新型有机电子器件;

4)磁性纳米材料及应用。


招生信息

   
招生专业
070305-高分子化学与物理
070304-物理化学(含:化学物理)
070205-凝聚态物理
招生方向
有机光电器件,有机自旋电子学,新型微纳电子器件,磁性纳米材料

教授课程

功能纳米结构的合成、表征及设备应用

专利与奖励

   
专利成果
[1] 孙向南. 一种有机自旋阀器件、制备方法和基于有机自旋阀器件的自旋界面调控方法. CN202310470297.7, 2023-04-27.
[2] 孙向南. 分子自旋光伏器件及其制备方法. CN202310143475.5, 2023-02-09.
[3] 孙向南, 孟珂, 周学华. 有机热电子晶体管及其制备方法、LUMO能级检测方法. CN: CN114242892A, 2022-03-25.
[4] 孙向南, 祝向伟, 常艺琳, 谷现荣, 秦阳. 可熔融加工型聚合物材料及其制备方法和应用. CN: CN113861388A, 2021-12-31.
[5] 祝向伟, 常艺琳, 秦阳, 孙向南. 小分子电子传输层材料及其制备方法和应用. CN: CN115611892A, 2023-01-17.
[6] 孙向南, 苗娇娇, 滕雪, 张瑞. 一种利用废弃木质纤维素电解制氢的方法. CN: [[[CN111690945A]]], [[["2020-09-22"]]].
[7] 祝向伟, 常艺琳, 孙向南. 联受体型聚合物光伏材料及其制备和应用. CN: CN109749061A, 2019-05-14.
[8] 孙向南, 孙素, 周欣欣, 常艺琳, 祝向伟. 悬浮栅光电晶体管及其制备方法. CN: CN107910442A, 2018-04-13.
[9] 孙向南, 祝向伟, 王洁洁, 张瑞. NiFeP双功能过渡金属磷化物催化剂及其制备和用途. CN: CN107376958A, 2017-11-24.
[10] 孙向南, 祝向伟, 郭立丹, 路易斯·乌埃索. 自旋光伏器件及其制作方法. CN: CN108075003A, 2018-05-25.
[11] 孙向南, 祝向伟, 郭立丹, 孙素, 从川波, 刘云圻. 有机场效应晶体管及制备方法、电子电路. CN: CN105977380A, 2016-09-28.
[12] 刘云圻, 张磊, 吴倜, 赵岩, 孙向南, 温雨耕, 郭云龙, 于贵. 一种有机电子器件. CN: CN102637824A, 2012-08-15.
[13] 刘云圻, 张磊, 刘洪涛, 赵岩, 孙向南, 温雨耕, 郭云龙, 高希珂, 狄重安, 于贵. 材料的图案化方法. CN: CN102320752A, 2012-01-18.
[14] 刘云圻, 孙向南, 温雨耕, 郭云龙, 狄重安, 于贵. 一种高性能有机场效应晶体管及其制备方法. CN: CN102110776A, 2011-06-29.
[15] 刘云圻, 张磊, 狄重安, 郭云龙, 孙向南, 温雨耕, 于贵, 朱道本. 一种聚合物薄膜热贴合方法及其在顶栅有机场效应晶体管中的应用. CN: CN101710607A, 2010-05-19.
[16] 刘云圻, 刘颖, 孙向南, 狄重安, 于贵. 并六噻吩及其衍生物和它们的制备方法与应用. CN: CN101353352A, 2009-01-28.
[17] 分子半导体材料构象检测方法及自旋寿命探测器件. 2024-03-14.
[18] 有机热电子晶体管制备方法、晶体管及能级检测方法. 2024-04-01.
[19] 孙向南, 杨婷婷, 秦阳, 谷现荣, 吴梦, 郭立丹. 分子半导体材料构象检测方法及自旋寿命探测器件. CN2024102933647, 2024-03-14.
[20] 孙向南, 胡顺华, 谷现荣, 郭立丹. 铁磁电极转移方法、自旋电子器件及存储介质. CN: CN118159117A, 2024-06-07.
[21] 孙向南, 祝向伟, 常艺琳, 谷现荣, 秦阳. 可熔融加工型聚合物材料及其制备方法和应用. CN: CN113861388B, 2024-02-13.
[22] 祝向伟, 常艺琳, 秦阳, 孙向南. 小分子电子传输层材料及其制备方法和应用. CN: CN115611892B, 2024-05-10.

出版信息

   
发表论文
[1] Advanced Materials. 2024,   通讯作者  
[2] Xueli Yang, Ankang Guo, Jie Yang, Jinyang Chen, Ke Meng, Shunhua Hu, Ran Duan, Mingliang Zhu, Wenkang Shi, Yang Qin, Rui Zhang, Haijun Yang, Jikun Li, Lidan Guo, Xiangnan Sun, Yunqi Liu, Yunlong Guo. Halogenated-edge polymeric semiconductor for efficient spin transport. Nature Communications[J]. 2024, 第 15 作者  通讯作者  null(null): 
[3] Tingting Yang, Yang Qin, Meng Wu, Xianrong Gu, Ke Meng, Shunhua Hu, Cheng Zhang, Ankang Guo, Ruiheng Zheng, Rui Zhang, Lidan Guo, Xiangnan Sun. Spin-Lifetime Probe for Detecting Intramolecular Noncovalent Interaction in Organic Semiconductors. Advanced Materials[J]. 2024, 第 12 作者  通讯作者  null(null): 
[4] Guo, Lidan, Gu, Xianrong, Hu, Shunhua, Sun, Wenchao, Zhang, Rui, Qin, Yang, Meng, Ke, Lu, Xiangqian, Liu, Yayun, Wang, Jiaxing, Ma, Peijie, Zhang, Cheng, Guo, Ankang, Yang, Tingting, Yang, Xueli, Wang, Guorui, Liu, Yaling, Wang, Kai, Mi, Wenbo, Zhang, Chuang, Jiang, Lang, Liu, Luqi, Zheng, Kun, Qin, Wei, Yan, Wenjing, Sun, Xiangnan. Strain-restricted transfer of ferromagnetic electrodes for constructing reproducibly superior-quality spintronic devices. NATURE COMMUNICATIONS[J]. 2024, 第 26 作者  通讯作者  15(1): http://dx.doi.org/10.1038/s41467-024-45200-7.
[5] Guo, Lidan, Hu, Shunhua, Gu, Xianrong, Zhang, Rui, Wang, Kai, Yan, Wenjing, Sun, Xiangnan. Emerging Spintronic Materials and Functionalities. ADVANCED MATERIALS. 2024, 第 7 作者  通讯作者  36(22): http://dx.doi.org/10.1002/adma.202301854.
[6] Ke Meng, Ruiheng Zheng, Xianrong Gu, Rui Zhang, Lidan Guo, Yang Qin, Tingting Yang, Min Li, Shunhua Hu, Cheng Zhang, Meng Wu, Ankang Guo, Xueli Yang, Jianqi Zhang, Xiangnan Sun. In-Device Ballistic-Electron-Emission Spectroscopy for Accurately In Situ Mapping Energy Level Alignment at Metal-Organic Semiconductors Interface. Advanced Materials[J]. 2024, 第 15 作者  通讯作者  null(null): 
[7] Yang, Tingting, Qin, Yang, Wu, Meng, Guo, Lidan, Gu, Xianrong, Meng, Ke, Hu, Shunhua, Zhang, Cheng, Zheng, Ruiheng, Zhang, Rui, Sun, Xiangnan. Structural Isomeric Effect on Spin Transport in Molecular Semiconductors. ADVANCED MATERIALS[J]. 2024, 第 11 作者  通讯作者  36(26): http://dx.doi.org/10.1002/adma.202402001.
[8] Hu, Shunhua, Qin, Yang, Lu, Shuhang, Guo, Lidan, Gu, Xianrong, Yang, Tingting, Zhang, Rui, Meng, Ke, Zhang, Cheng, Wu, Meng, Sun, Xiangnan. Interface Engineering for Enhancing Air-Stable Spin-Charge Interaction in Molecular Spin-Photovoltaic Devices. ADVANCED FUNCTIONAL MATERIALS[J]. 2024, 第 11 作者  通讯作者  34(23): http://dx.doi.org/10.1002/adfm.202315239.
[9] Advanced Functional Materials. 2024,   通讯作者  
[10] Nature Communications. 2024,   通讯作者  
[11] Tingting Yang, Yang Qin, Xianrong Gu, Xiangnan Sun. Molecular design for enhanced spin transport in molecular semiconductors. Nano Research[J]. 2023, 第 4 作者  通讯作者  
[12] Xianrong Gu, Lidan Guo, Yang Qin, Tingting Yang, Ke Meng, Shunhua Hu, Xiangnan Sun. Challenges and prospects of molecular spintronics. Precision Chemistry[J]. 2023, 第 7 作者  通讯作者  
[13] Hu, Shunhua, Liu, Wei, Guo, Lidan, Zhang, Rui, Gu, Xianrong, Meng, Ke, Qin, Yang, Guo, Ankang, Yang, Tingting, Zhang, Cheng, Yang, Xueli, Lu, Shuhang, Wu, Meng, Lu, Kun, Tan, Ting, Zhou, Erjun, Wei, Zhixiang, Sun, Xiangnan. Continuous Room-Temperature Spin-Injection Modulation Achieved by Spin-Filtering Competition in Molecular Spin Valves. ADVANCED MATERIALS[J]. 2023, 第 18 作者  通讯作者  35(31): http://dx.doi.org/10.1002/adma.202300055.
[14] Zhu, Yanfei, Guo, Lidan, Guo, Jun, Zhao, Luyang, Li, Chunyan, Qiu, Xueying, Qin, Yang, Gu, Xianrong, Sun, Xiangnan, Tang, Zhiyong. Room-Temperature Spin Transport in Metal Nanocluster-Based Spin Valves. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION[J]. 2023, 第 9 作者  通讯作者  62(4): 
[15] Yang Qin, Xianrong Gu, Yixiao Zhang, Shunhua Hu, Ankang Guo, Rui Zhang, Ke Meng, Tingting Yang, Cheng Zhang, Shuhang Lu, Xueli Yang, Lidan Guo, Xiangwei Zhu, Jianqi Zhang, Kun Lu, Zhixiang Wei, Xiangnan Sun. Incomplete hetero-structure molecular layer enhancing room-temperature spin-photovoltaic performances. NANO TODAY. 2023, 第 17 作者  通讯作者  49: http://dx.doi.org/10.1016/j.nantod.2023.101763.
[16] Meng, Ke, Guo, Lidan, Sun, Xiangnan. Strategies and applications of generating spin polarization in organic semiconductors. NANOSCALE HORIZONS. 2023, 第 3 作者  通讯作者  8(9): 1132-1154, http://dx.doi.org/10.1039/d3nh00101f.
[17] Meng Wu, Xiangnan Sun. Optimizing strong metal–support interaction on cobalt phosphide-supported Ru single atom catalyst for highly-efficient hydrogen evolution reaction. Materials Chemistry Frontiers[J]. 2023, 第 2 作者  通讯作者  7(20): 4918-4927, 
[18] Lidan Guo, Shunhua Hu, Xianrong Gu, Rui Zhang, Kai Wang, Wenjing Yan, Xiangnan Sun. Emerging Spintronic Materials and Functionalities. Advanced Materials[J]. 2023, 第 7 作者  通讯作者  e2301854, 
[19] Gu, Xianrong, Qin, Yang, Sun, Su, Guo, Lidan, Zhu, Xiangwei, Sun, Xiangnan. High-performance floating-gate organic phototransistors based on n-type core-expanded naphthalene diimides. CHINESE CHEMICAL LETTERS[J]. 2023, 第 6 作者  通讯作者  34(3): 465-468, http://lib.cqvip.com/Qikan/Article/Detail?id=7109647375.
[20] Yang, Xueli, Guo, Ankang, Guo, Lidan, Liu, Yunqi, Sun, Xiangnan, Guo, Yunlong. Organic Semiconductors for Room-Temperature Spin Valves. ACS MATERIALS LETTERS[J]. 2022, 第 5 作者  通讯作者  4(5): 805-814, http://dx.doi.org/10.1021/acsmaterialslett.2c00047.
[21] Yang, Xueli, Guo, Ankang, Guo, Lidan, Liu, Yunqi, Sun, Xiangnan, Guo, Yunlong. Organic Semiconductors for Room-Temperature Spin Valves br. ACS MATERIALS LETTERS[J]. 2022, 第 5 作者  通讯作者  4(5): 805-814, http://dx.doi.org/10.1021/acsmaterialslett.2c00047.
[22] Ding, Mingyi, Gu, Xianrong, Guo, Lidan, Zhang, Rui, Zhu, Xiangwei, Li, Rongjin, Zhang, Xiaotao, Hu, Wenping, Sun, Xiangnan. The prospects of organic semiconductor single crystals for spintronic applications. JOURNAL OF MATERIALS CHEMISTRY C[J]. 2022, 第 9 作者  通讯作者  10(7): 2507-2515, http://dx.doi.org/10.1039/d1tc04333a.
[23] Zhou, Xuehua, Meng, Ke, Geng, Tongmou, Miao, Jiaojiao, Sun, Xiangnan, Zhou, Qiong. Hot electron spectroscopy: A novel method to study molecular semiconductor. ORGANIC ELECTRONICS[J]. 2021, 第 5 作者  通讯作者  94: http://dx.doi.org/10.1016/j.orgel.2021.106164.
[24] Qin, Yang, Chang, Yilin, Zhu, Xiangwei, Gu, Xianrong, Guo, Lidan, Zhang, Yixiao, Wang, Qi, Zhang, Jianqi, Zhang, Xiaoli, Liu, Xinfeng, Lu, Kun, Zhou, Erjun, Wei, Zhixiang, Sun, Xiangnan. 18.4% efficiency achieved by the cathode interface engineering in non-fullerene polymer solar cells. NANO TODAY[J]. 2021, 第 14 作者  通讯作者  41: http://dx.doi.org/10.1016/j.nantod.2021.101289.
[25] Sun, Wenchao, Guo, Lidan, Hu, Shunhua, Zhu, Xiangwei, Zhang, Xiaotao, Hu, Wenping, Sun, Xiangnan. Preparation and assessment of reliable organic spin valves. ORGANIC ELECTRONICS[J]. 2021, 第 7 作者  通讯作者  99: http://dx.doi.org/10.1016/j.orgel.2021.106311.
[26] Chang, Yilin, Zhu, Xiangwei, Zhu, Lingyun, Wang, Yuheng, Yang, Chen, Gu, Xianrong, Zhang, Yixiao, Zhang, Jianqi, Lu, Kun, Sun, Xiangnan, Wei, Zhixiang. Regioregular narrow bandgap copolymer with strong aggregation ability for high-performance semitransparent photovoltaics. NANO ENERGY[J]. 2021, 第 10 作者  通讯作者  86: http://dx.doi.org/10.1016/j.nanoen.2021.106098.
[27] Xiao, Bo, Zhang, Qianqian, Li, Gongqiang, Du, Mengzhen, Geng, Yanfang, Sun, Xiangnan, Tang, Ailing, Liu, Yingliang, Guo, Qiang, Zhou, Erjun. Side chain engineering of quinoxaline-based small molecular nonfullerene acceptors for high-performance poly(3-hexylthiophene)-based organic solar cells. SCIENCE CHINA-CHEMISTRY[J]. 2020, 第 6 作者63(2): 254-264, http://sciencechina.cn/gw.jsp?action=detail.jsp&internal_id=6691288&detailType=1.
[28] Zhou, Xuehua, Zhu, Bensheng, Zhu, Xiangwei, Miao, Jiaojiao, Sun, Xiangnan, Zhou, Qiong. Novel nanofiber-enhanced SPEEK proton-exchange membranes with high conductivity and stability. POLYMER[J]. 2020, 第 5 作者  通讯作者  210: http://dx.doi.org/10.1016/j.polymer.2020.123016.
[29] Zhang, Yixiao, Guo, Lidan, Zhu, Xiangwei, Sun, Xiangnan. The Application of Organic Semiconductor Materials in Spintronics. FRONTIERS IN CHEMISTRY[J]. 2020, 第 4 作者  通讯作者  8: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7642617/.
[30] Yanhong Chang, Yilin Chang, Xiangwei Zhu, Xuehua Zhou, Chen Yang, Jianqi Zhang, Kun Lu, Xiangnan Sun, Zhixiang Wei. Constructing High‐Performance All‐Small‐Molecule Ternary Solar Cells with the Same Third Component but Different Mechanisms for Fullerene and Non‐fullerene Systems. Advanced Energy Materials[J]. 2019, 第 8 作者  通讯作者  9(16): https://www.doi.org/10.1002/aenm.201900190.
[31] Guo, Lidan, Zhu, Xiangwei, Sun, Su, Cong, Chuanbo, Zhou, Qiong, Sun, Xiangnan, Liu, Yunqi. Flexible semi-transparent organic transistors and circuits based on easily prepared polyphenyleneoxide dielectric. ORGANIC ELECTRONICS[J]. 2019, 第 6 作者  通讯作者  69: 308-312, http://dx.doi.org/10.1016/j.orgel.2019.03.043.
[32] Guo, Lidan, Gu, Xianrong, Zhu, Xiangwei, Sun, Xiangnan. Recent Advances in Molecular Spintronics: Multifunctional Spintronic Devices. ADVANCED MATERIALS[J]. 2019, 第 4 作者  通讯作者  31(45): http://dx.doi.org/10.1002/adma.201805355.
[33] Yang, Jing, An, Ning, Sun, Su, Sun, Xiangnan, Nakano, Masahiro, Takimiya, Kazuo, Xiao, Bo, Zhou, Erjun. The effect of alkyl chain branching positions on the electron mobility and photovoltaic performance of naphthodithiophene diimide (NDTI)-based polymers. SCIENCE CHINA-CHEMISTRY[J]. 2019, 第 4 作者  通讯作者  62(12): 1649-1655, https://www.sciengine.com/doi/10.1007/s11426-019-9645-1.
[34] Guo, Lidan, Qin, Yang, Gu, Xianrong, Zhu, Xiangwei, Zhou, Qiong, Sun, Xiangnan. Spin Transport in Organic Molecules. FRONTIERS IN CHEMISTRY[J]. 2019, 第 6 作者  通讯作者  7: https://doaj.org/article/771d74bcd576492fa1b9cd4ce2f30ad6.
[35] Yang, Jing, Chen, Fan, Xiao, Bo, Sun, Su, Sun, Xiangnan, Tajima, Keisuke, Tang, Ailing, Zhou, Erjun. Modulating the Symmetry of Benzodithiophene by Molecular Tailoring for the Application in Naphthalene Diimide-Based N-Type Photovoltaic Polymers. SOLAR RRL[J]. 2018, 第 5 作者2(4): http://dx.doi.org/10.1002/solr.201700230.
[36] Mu, Wenjing, Sun, Su, Zhang, Jing, Jiao, Mingyang, Wang, Wentao, Liu, Yanwei, Sun, Xiangnan, Jiang, Lang, Chen, Bozhen, Qi, Ting. Advantage of arch-shaped structure on transistor performances over linear-shaped structure in dibenzothienopyrrole semiconductors. ORGANIC ELECTRONICS[J]. 2018, 第 7 作者61: 78-86, http://dx.doi.org/10.1016/j.orgel.2018.06.044.
[37] Xiao, Bo, Tang, Ailing, Yang, Jing, Mahmood, Asif, Sun, Xiangnan, Zhou, Erjun. Quinoxaline-Containing Nonfullerene Small-Molecule Acceptors with a Linear A(2)-A(1)-D-A(1)-A(2) Skeleton for Poly(3-hexylthiophene)-Based Organic Solar Cells. ACS APPLIED MATERIALS & INTERFACES[J]. 2018, 第 5 作者10(12): 10254-10261, http://dx.doi.org/10.1021/acsami.8b00216.
[38] XianRongGu, LiDanGuo, XiangNanSun. Recent spinterfacial studies targeted to spin manipulation in molecular spintronic devices. Chinese Physics B[J]. 2018, 第 3 作者  通讯作者  27(10): 107202-107202, https://cpb.iphy.ac.cn/EN/10.1088/1674-1056/27/10/107202.
[39] 谷现荣, 郭立丹, 孙向南. Recent spinterfacial studies targeted to spin manipulation in molecular spintronic devices. 中国物理B:英文版[J]. 2018, 第 3 作者27(10): 96-106, http://lib.cqvip.com/Qikan/Article/Detail?id=676565775.
[40] Zhang, Rui, Wang, Xiangxue, Yu, Shujun, Wen, Tao, Zhu, Xiangwei, Yang, Fangxu, Sun, Xiangnan, Wang, Xiangke, Hu, Wenping. Ternary NiCo2Px Nanowires as pH-Universal Electrocatalysts for Highly Efficient Hydrogen Evolution Reaction. ADVANCED MATERIALS[J]. 2017, 第 7 作者  通讯作者  29(9): https://www.webofscience.com/wos/woscc/full-record/WOS:000396149800019.
[41] Sun, Xiangnan, Velez, Saul, Atxabal, Ainhoa, BedoyaPinto, Amilcar, Parui, Subir, Zhu, Xiangwei, Llopis, Roger, Casanova, Felix, Hueso, Luis E. A molecular spin-photovoltaic device. SCIENCE[J]. 2017, 第 1 作者357(6352): 677-+, http://dx.doi.org/10.1126/science.aan5348.
[42] Atxabal, Ainhoa, Braun, Slawomir, Arnold, Thorsten, Sun, Xiangnan, Parui, Subir, Liu, Xianjie, Gozalvez, Cristian, Llopis, Roger, MateoAlonso, Aurelio, Casanova, Felix, Ortmann, Frank, Fahlman, Mats, Hueso, Luis E. Energy Level Alignment at Metal/Solution-Processed Organic Semiconductor Interfaces. ADVANCED MATERIALS[J]. 2017, 第 4 作者29(19): https://www.webofscience.com/wos/woscc/full-record/WOS:000401170600030.
[43] Sun, Xiangnan, BedoyaPinto, Amilcar, Mao, Zupan, Gobbi, Marco, Yan, Wenjing, Guo, Yunlong, Atxabal, Ainhoa, Llopis, Roger, Yu, Gui, Liu, Yunqi, Chuvilin, Andrey, Casanova, Felix, Hueso, Luis E. Active Morphology Control for Concomitant Long Distance Spin Transport and Photoresponse in a Single Organic Device. ADVANCED MATERIALS[J]. 2016, 第 1 作者28(13): 2609-+, https://www.doi.org/10.1002/adma.201503831.
[44] Atxabal, A, Ribeiro, M, Parui, S, Urreta, L, Sagasta, E, Sun, X, Llopis, R, Casanova, F, Hueso, L E. Spin doping using transition metal phthalocyanine molecules. NATURE COMMUNICATIONS[J]. 2016, 7(1): https://doaj.org/article/25aa7ec648db4eb1b171539956691ffa.
[45] Belen Marco, A, Gozalvez, Cristian, Olano, Mikel, Sun, Xiangnan, Atxabal, Ainhoa, MelleFranco, Manuel, Hueso, Luis E, MateoAlonso, Aurelio. Bis(triisopropylsilylethynyl)-substituted pyrene-fused tetraazaheptacene: synthesis and properties. PHYSICAL CHEMISTRY CHEMICAL PHYSICS[J]. 2016, 第 4 作者18(17): 11616-11619, https://www.webofscience.com/wos/woscc/full-record/WOS:000375623100005.
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