基本信息
赵新  男  博导  中国科学院上海有机化学研究所
电子邮件: xzhao@mail.sioc.ac.cn
通信地址: 上海市徐汇区零陵路345号
邮政编码: 200032

招生信息

   
招生专业
070303-有机化学
招生方向
物理有机化学
有机材料化学

教育背景

2003-08--2008-02 哈佛大学,芝加哥大学 博士后
1998-09--2003-07 中科院上海有机化学研究所 研究生,理学博士
1990-09--1994-07 北京师范大学 大学本科,理学学士
学历
-- 研究生
学位
-- 博士

工作经历

   
工作简历
2014-03~现在, 中科院上海有机化学研究所, 研究员、课题组长
2008-05~2014-02,中科院上海有机机化学研究所, 课题组长,副研究员
1994-07~1998-08,云南省楚雄师范高等专科学校, 助教

专利与奖励

   
专利成果
[1] 赵新, 林沨, 卢健. 一种共价有机框架及其制备方法. CN: CN107540801A, 2018-01-05.
[2] 赵新, 尹志坚, 占田广. 二维超分子多孔聚合物、其单体化合物及制备方法. CN: CN107353242A, 2017-11-17.
[3] 赵新, 尹志坚. 中空球状共价有机框架材料、制备方法、用途及其中间体. CN: CN106832268A, 2017-06-13.
[4] 赵新, 鲁玺龙, 周天佑. 一类基于三蝶烯骨架的有机多孔聚合物及其制备和应用. CN: CN104371112A, 2015-02-25.
[5] 赵新, 黎占亭, 林沨, 占田广, 章康达. 新型紫精化合物及其制备. CN: CN104292151A, 2015-01-21.
[6] 赵新, 文强. 一种含氮三齿配体有机微孔聚合物材料及其制备与应用. CN: CN104211928A, 2014-12-17.
[7] 赵新, 齐巧艳, 计国桢, 陆建刚, 邢健. 一种L-肌肽的制备方法. CN: CN103193712A, 2013-07-10.

出版信息

   
发表论文
[1] Han, XiangHao, Liang, RongRan, Zhou, ZhiBei, Qi, QiaoYan, Zhao, Xin. Converting an amorphous covalent organic polymer to a crystalline covalent organic framework mediated by a repairing agent. CHEMICAL COMMUNICATIONS[J]. 2023, 59(17): 2461-2464, http://dx.doi.org/10.1039/d2cc05800f.
[2] Shi, Qiang, Cao, Liping, Chen, Yong, Guo, Huanfang, Liu, Yu, Tu, Tao, Wang, Feng, Wang, Junli, Wang, Leyong, Xie, Yongshu, Yang, Cheng, Zhao, Xin. In memoriam Professor Wei Jiang, one of the young editorial board members. CHINESE CHEMICAL LETTERS. 2023, 34(4): http://dx.doi.org/10.1016/j.cclet.2023.108138.
[3] ZhiJian Yin, ShuYan Jiang, Na Liu, QiaoYan Qi, ZongQuan Wu, TianGuang Zhan, Xin Zhao. Toward a Two-Dimensional Supramolecular Organic Framework with High Degree of Internal Order via Amphiphilic Modification. 中国化学会会刊(英文)[J]. 2022, 4(1): 141-150, http://lib.cqvip.com/Qikan/Article/Detail?id=7108813600.
[4] Zhou, ZhiBei, Han, XiangHao, Qi, QiaoYan, Gan, ShiXian, Ma, DeLi, Zhao, Xin. A Facile, Efficient, and General Synthetic Method to Amide-Linked Covalent Organic Frameworks. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2022, 144(3): 1138-1143, http://dx.doi.org/10.1021/jacs.1c12392.
[5] Zhou, ZhiBei, Tian, PengJu, Yao, Jin, Lu, Ya, Qi, QiaoYan, Zhao, Xin. Toward azo-linked covalent organic frameworks by developing linkage chemistry via linker exchange. NATURE COMMUNICATIONS[J]. 2022, 13(1): https://doaj.org/article/6105a3d19dee4580b7130cf7e5c70eac.
[6] Gan, ShiXian, Jia, Chao, Qi, QiaoYan, Zhao, Xin. A facile and scalable synthetic method for covalent organic nanosheets: ultrasonic polycondensation and photocatalytic degradation of organic pollutants. CHEMICAL SCIENCE[J]. 2022, 13(4): 1009-1015, http://dx.doi.org/10.1039/d1sc05504f.
[7] Han, XiangHao, Chu, JiaQi, Wang, WenZhuang, Qi, QiaoYan, Zhao, Xin. A two-step solvothermal procedure to improve crystallinity of covalent organic frameworks and achieve scale-up preparation. CHINESE CHEMICAL LETTERS[J]. 2022, 33(5): 2464-2468, http://dx.doi.org/10.1016/j.cclet.2021.11.066.
[8] Lu, Ya, Zhou, ZhiBei, Qi, QiaoYan, Yao, Jin, Zhao, Xin. Polyamide Covalent Organic Framework Membranes for Molecular Sieving. ACS APPLIED MATERIALS & INTERFACES[J]. 2022, 14(32): 37019-37027, http://dx.doi.org/10.1021/acsami.2c07753.
[9] Liu, HongKun, Lei, YiFei, Tian, PengJu, Wang, Hui, Zhao, Xin, Li, ZhanTing, Zhang, DanWei. Fe(bpy)(3)(2+)-based porous organic polymers with boosted photocatalytic activity for recyclable organic transformations. JOURNAL OF MATERIALS CHEMISTRY A[J]. 2021, 9(10): 6361-6367, http://dx.doi.org/10.1039/d0ta12267j.
[10] Ma, DeLi, Qian, Cheng, Qi, QiaoYan, Zhong, ZhongRi, Jiang, GuoFang, Zhao, Xin. Effects of connecting sequences of building blocks on reticular synthesis of covalent organic frameworks. NANO RESEARCH[J]. 2021, 14(2): 381-386, http://lib.cqvip.com/Qikan/Article/Detail?id=7103999361.
[11] Zhang, Xiang, Fan, Yu, Zhan, TianGuang, Qi, QiaoYan, Zhao, Xin. A thiophene-derived hexaazatriphenylene (HAT) fluorescent sensor for the selective detection of Ag+ ion. TETRAHEDRON LETTERS[J]. 2021, 68: http://dx.doi.org/10.1016/j.tetlet.2021.152911.
[12] Lu, BingYi, Wang, ZhiQing, Cui, FuZhi, Li, JiangYu, Han, XiangHao, Qi, QiaoYan, Ma, DeLi, Jiang, GuoFang, Zeng, XianXiang, Zhao, Xin. A Covalent Organic Framework with Extended pi-Conjugated Building Units as a Highly Efficient Recipient for Lithium-Sulfur Batteries. ACS APPLIED MATERIALS & INTERFACES[J]. 2020, 12(31): 34990-34998, http://dx.doi.org/10.1021/acsami.0c08984.
[13] Liu, Na, Shi, Liangfeng, Han, Xianghao, Qi, QiaoYan, Wu, ZongQuan, Zhao, Xin. A heteropore covalent organic framework for adsorptive removal of Cd(II) from aqueous solutions with high efficiency. CHINESE CHEMICAL LETTERS[J]. 2020, 31(2): 386-390, http://dx.doi.org/10.1016/j.cclet.2019.06.050.
[14] Xin Zhao. A Study on Constitutional Isomerism in Covalent Organic Frameworks: Controllable Synthesis, Transformation, and Distinct Difference in Properties. CCS Chem. 2020, 2, 139–145.. 2020, [15] Shen, JiChuang, Jiang, WeiLing, Guo, WenDi, Qi, QiaoYan, Ma, DeLi, Lou, Xiaobing, Shen, Ming, Hu, Bingwen, Yang, HaiBo, Zhao, Xin. A rings-in-pores net: crown ether-based covalent organic frameworks for phase-transfer catalysis. CHEMICAL COMMUNICATIONS[J]. 2020, 56(4): 595-598, https://www.webofscience.com/wos/woscc/full-record/WOS:000506632200019.
[16] Zhou, XiaoHe, Fan, Yu, Li, WanXia, Zhang, Xiang, Liang, RongRan, Lin, Feng, Zhan, TianGuang, Cui, Jiecheng, Liu, LiJuan, Zhao, Xin, Zhang, KangDa. Viologen derivatives with extended pi-conjugation structures: From supra-/molecular building blocks to organic porous materials. CHINESE CHEMICAL LETTERSnull. 2020, 31(7): 1757-1767, http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000548928800007.
[17] Cui, FuZhi, Liang, RongRan, Qi, QiaoYan, Jiang, GuoFang, Zhao, Xin. Efficient Removal of Cr(VI) from Aqueous Solutions by a Dual-Pore Covalent Organic Framework. ADVANCED SUSTAINABLE SYSTEMS[J]. 2019, 3(4): [18] ShuYan Jiang, Xin Zhao. Soluble Two-dimensional Supramolecular Organic Frameworks(SOFs):An Emerging Class of 2D Supramolecular Polymers with Internal Longrange Orders. 高分子科学:英文版[J]. 2019, 1-10, http://lib.cqvip.com/Qikan/Article/Detail?id=7001285243.
[19] Cui, FuZhi, Xie, JiaoJiao, Jiang, ShuYan, Gan, ShiXian, Ma, DeLi, Liang, RongRan, Jiang, GuoFang, Zhao, Xin. A gaseous hydrogen chloride chemosensor based on a 2D covalent organic framework. CHEMICAL COMMUNICATIONS[J]. 2019, 55(31): 4550-4553, [20] Jiang, ShuYan, Gan, ShiXian, Zhang, Xi, Li, Hui, Qi, QiaoYan, Cui, FuZhi, Lu, Jian, Zhao, Xin. Aminal-Linked Covalent Organic Frameworks through Condensation of Secondary Amine with Aldehyde. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2019, 141(38): 14981-14986, https://www.webofscience.com/wos/woscc/full-record/WOS:000488322500007.
[21] 吴义鹏, 王泽坤, 王辉, 张丹维, 赵新, 黎占亭. 一个强荧光三维超分子有机框架的构建及其对苦味酸的选择性传感. 化学学报[J]. 2019, 77(8): 735-740, http://lib.cqvip.com/Qikan/Article/Detail?id=7100111818.
[22] Jiang, ShuYan, Zhao, Xin. Soluble Two-dimensional Supramolecular Organic Frameworks (SOFs): An Emerging Class of 2D Supramolecular Polymers with Internal Long-range Orders. CHINESE JOURNAL OF POLYMER SCIENCE[J]. 2019, 37(1): 1-10, http://lib.cqvip.com/Qikan/Article/Detail?id=7001285243.
[23] Wu YiPeng, Wang ZeKun, Wang Hui, Zhang DanWei, Zhao Xin, Li ZhanTing. Self-Assembly of a Highly Fluorescent Three-Dimensional Supramolecular Organic Framework and Selective Sensing for Picric Acid. ACTA CHIMICA SINICA[J]. 2019, 77(8): 735-740, https://www.webofscience.com/wos/woscc/full-record/WOS:000485153600006.
[24] Lu, Jian, Lin, Feng, Wen, Qiang, Qi, QiaoYan, Xu, JiaQiang, Zhao, Xin. Large- scale synthesis of azine- linked covalent organic frameworks in water and promoted by water. NEW JOURNAL OF CHEMISTRY[J]. 2019, 43(16): 6116-6120, https://www.webofscience.com/wos/woscc/full-record/WOS:000465091000002.
[25] Liu ChuanZhi, Wang Hui, Zhang DanWei, Zhao Xin, Li ZhanTing. Study on Halogen Bonding of Organofluorine Compounds in China. CHINESE JOURNAL OF ORGANIC CHEMISTRY[J]. 2019, 39(1): 28-37, [26] Xiang, MengHui, Qi, QiaoYan, Zheng, Xing, Zhao, Xin. An amphiphilic supramolecular polymer: Construction, self-assembly and pH-responsive behavior in water. TETRAHEDRON LETTERS[J]. 2019, 60(26): 1727-1731, http://dx.doi.org/10.1016/j.tetlet.2019.05.058.
[27] Liu, ChuanZhi, Wang, Hui, Zhang, DanWei, Zhao, Xin, Li, ZhanTing. Study on Halogen Bonding of Organofluorine Compounds in China. CHINESE JOURNAL OF ORGANIC CHEMISTRY[J]. 2019, 39(1): 28-37, http://dx.doi.org/10.6023/cjoc201812026.
[28] Liang, RongRan, Xu, ShunQi, Pang, ZhongFu, Qi, QiaoYan, Zhao, Xin. Self-sorted pore-formation in the construction of heteropore covalent organic frameworks based on orthogonal reactions. CHEMICAL COMMUNICATIONS[J]. 2018, 54(8): 880-883, https://www.webofscience.com/wos/woscc/full-record/WOS:000423464900003.
[29] Liang, RongRan, Zhao, Xin. Heteropore covalent organic frameworks: a new class of porous organic polymers with well-ordered hierarchical porosities. ORGANIC CHEMISTRY FRONTIERSnull. 2018, 5(22): 3341-3356, https://www.webofscience.com/wos/woscc/full-record/WOS:000449412800020.
[30] Youshi Lan, Xianghao Han, Minman Tong, Hongliang Huang, Qingyuan Yang, Dahuan Liu, Xin Zhao, Chongli Zhong. Materials genomics methods for high-throughput construction of COFs and targeted synthesis. NATURE COMMUNICATIONS[J]. 2018, 9(1): https://doaj.org/article/b8cd9afb753f4ce19f8d9afc57c8e957.
[31] Yan, XiaoYang, Lin, MengDi, Zheng, SiTai, Zhan, TianGuang, Zhang, Xiang, Zhang, KangDa, Zhao, Xin. Recent advances of hexaazatriphenylene (HAT) derivatives: Their applications in self-assembly and porous organic materials. TETRAHEDRON LETTERS[J]. 2018, 59(7): 592-604, http://dx.doi.org/10.1016/j.tetlet.2018.01.004.
[32] Li, Huiqing, Qi, QiaoYan, Zhao, Xin, Li, Guosheng, Chen, Xiong, Zhang, HuiJun, Lin, Jianbin. Synthesis of novel 2D in-plane anisotropic covalent organic frameworks through a solvent modulated orthogonal strategy. POLYMER CHEMISTRY[J]. 2018, 9(32): 4288-4293, https://www.webofscience.com/wos/woscc/full-record/WOS:000442615300002.
[33] Qian, Cheng, Liu, EnCheng, Qi, QiaoYan, Xu, Kaijia, Jiang, GuoFang, Zhao, Xin. A design strategy for the construction of 2D heteropore covalent organic frameworks based on the combination of C-2v and D-3h symmetric building blocks. POLYMER CHEMISTRY[J]. 2018, 9(3): 279-283, https://www.webofscience.com/wos/woscc/full-record/WOS:000423016700003.
[34] Zhu, MingWei, Xu, ShunQi, Wang, XiaoZhong, Chen, Yingqi, Dai, Liyan, Zhao, Xin. The construction of fluorescent heteropore covalent organic frameworks and their applications in spectroscopic and visual detection of trinitrophenol with high selectivity and sensitivity. CHEMICAL COMMUNICATIONS[J]. 2018, 54(18): 2308-2311, https://www.webofscience.com/wos/woscc/full-record/WOS:000426701900029.
[35] 樊煜, 林沨, 徐晓娜, 徐甲强, 赵新. 基于葫芦脲8包结增强供体-受体作用构筑“刚-柔”型超分子共聚物. 高分子学报[J]. 2017, 1-6, http://www.corc.org.cn/handle/1471x/2194377.
[36] Xin Zhao. A Case Study on the Influence of Substituents on Interlayer Stacking of 2D Covalent Organic Frameworks. Chem. Eur. J.. 2017, [37] Pang, ZhongFu, Zhou, TianYou, Liang, RongRan, Qi, QiaoYan, Zhao, Xin. Regulating the topology of 2D covalent organic frameworks by the rational introduction of substituents. CHEMICAL SCIENCE[J]. 2017, 8(5): 3866-3870, https://www.webofscience.com/wos/woscc/full-record/WOS:000400553000068.
[38] Zhan Tianguang, Lin Mengdi, Wu Lin, Zhang Xiang, Zhang Liang, Zhao Xin, Zhang Kangda. Proton-anion Ion-pair Recognition by a Hexaazatri- phenylene-Hexaurea Receptor. 中国化学:英文版[J]. 2017, 35(4): 392-396, http://lib.cqvip.com/Qikan/Article/Detail?id=672412951.
[39] Tian, Yuan, Xu, ShunQi, Liang, RongRan, Qian, Cheng, Jiang, GuoFang, Zhao, Xin. Construction of two heteropore covalent organic frameworks with Kagome lattices. CRYSTENGCOMM[J]. 2017, 19(33): 4877-4881, https://www.webofscience.com/wos/woscc/full-record/WOS:000408204300004.
[40] 孙广军, 聂承斌, 赵新, 黎占亭. C—H…O氢键驱动的1,2,3-三氮唑折叠体:评估分子间C—H…X~-(X=Cl, Br, I)和C—H…N氢键的稳定性. 有机化学[J]. 2017, 37(7): 1757-1763, http://sciencechina.cn/gw.jsp?action=detail.jsp&internal_id=6046374&detailType=1.
[41] Lin, Feng, Liang, Rongran, Qi, Qiaoyan, Zhan, Tianguang, Li, Zhanting, Zhao, Xin. Construction of Vesicles, Micro/Nanorods and Ultralong Nanotubes through the Self-Assembly of Non-Classical Amphiphiles with Rigid Conformation. CHINESE JOURNAL OF CHEMISTRY[J]. 2017, 35(4): 429-434, http://lib.cqvip.com/Qikan/Article/Detail?id=672412958.
[42] Zhao, Xin, Li, ZhanTing. Special Issue Dedicated to Professor Xi-Kui Jiang on the Occasion of His 90th Birthday. CHINESE JOURNAL OF CHEMISTRY. 2017, 35(4): 379-379, http://lib.cqvip.com/Qikan/Article/Detail?id=672412949.
[43] Sun, Guangjun, Nie, Chengbin, Zhao, Xin, Li, Zhanting. Intramolecular C-H center dot center dot center dot O Hydrogen Bonding-Driven 1,2,3-Trazole Foldamers: Assessment of Intermolecular C-H center dot center dot center dot X-(X=Cl, Br, I) and C-H center dot center dot center dot N Hydrogen Bonding. CHINESE JOURNAL OF ORGANIC CHEMISTRY[J]. 2017, 37(7): 1757-1763, http://dx.doi.org/10.6023/cjoc201702012.
[44] Fan, Yu, Wen, Qiang, Zhan, TianGuang, Qi, QiaoYan, Xu, JiaQiang, Zhao, Xin. A Case Study on the Influence of Substitutes on Interlayer Stacking of 2D Covalent Organic Frameworks. CHEMISTRY-A EUROPEAN JOURNAL[J]. 2017, 23(24): 5668-5672, http://www.corc.org.cn/handle/1471x/2190767.
[45] Feng Lin, Rongran Liang, Qiaoyan Qi, Tianguang Zhan, Zhanting Li, Xin Zhao. Construction of Vesicles, Micro/Nanorods and Ultralong Nanotubes through the Self-Assembly of Non-Classical Amphiphiles with Rigid Conformation. 中国化学:英文版[J]. 2017, 35(4): 429-434, http://lib.cqvip.com/Qikan/Article/Detail?id=672412958.
[46] Fan, Yu, Lin, Feng, Xu, Xiaona, Xu, Jiaqiang, Zhao, Xin. Construction of a Rod-Coil Supramolecular Copolymer through CB8-encapsulation-enhanced Donor-Acceptor Interaction. ACTA POLYMERICA SINICA[J]. 2017, 80-85, https://www.webofscience.com/wos/woscc/full-record/WOS:000407638400001.
[47] Yin, ZhiJian, Wu, ZongQuan, Lin, Feng, Qi, QiaoYan, Xu, XiaoNa, Zhao, Xin. A supramolecular bottlebrush polymer assembled on the basis of cucurbit8uril-encapsulation-enhanced donor-acceptor interaction. CHINESE CHEMICAL LETTERS[J]. 2017, 28(6): 1167-1171, http://dx.doi.org/10.1016/j.cclet.2017.03.029.
[48] Xin Zhao, Zhan-Ting Li. Special Issue Dedicated to Professor Xi-Kui Jiang on the Occasion of His 90th Birthday. 中国化学:英文版[J]. 2017, 35(4): 379-379, http://lib.cqvip.com/Qikan/Article/Detail?id=672412949.
[49] Qian, Cheng, Qi, QaoYan, Jiang, GuoFang, Cui, FuZhi, Tian, Yuan, Zhao, Xin. Toward Covalent Organic Frameworks Bearing Three Different Kinds of Pores: The Strategy for Construction and COF-to-COF Transformation via Heterogeneous Linker Exchange. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2017, 139(19): 6736-6743, https://www.webofscience.com/wos/woscc/full-record/WOS:000401781900037.
[50] Zhao, Xin. Heteropore COFs: An Emerging Class of Crystalline Hierachically Porous Polymers. ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCESnull. 2017, 73: C301-C301, https://www.webofscience.com/wos/woscc/full-record/WOS:000481522000300.
[51] Yin, ZhiJian, Xu, ShunQi, Zhan, TianGuang, Qi, QiaoYan, Wu, ZongQuan, Zhao, Xin. Ultrahigh volatile iodine uptake by hollow microspheres formed from a heteropore covalent organic framework. CHEMICAL COMMUNICATIONS[J]. 2017, 53(53): 7266-7269, https://www.webofscience.com/wos/woscc/full-record/WOS:000404605000019.
[52] Xu, ShunQi, Liang, RongRan, Zhan, TianGuang, Qi, QiaoYan, Zhao, Xin. Construction of 2D covalent organic frameworks by taking advantage of the variable orientation of imine bonds. CHEMICAL COMMUNICATIONS[J]. 2017, 53(16): 2431-2434, https://www.webofscience.com/wos/woscc/full-record/WOS:000395872900004.
[53] Zhan, Tianguang, Lin, Mengdi, Wu, Lin, Zhang, Xiang, Zhang, Liang, Zhao, Xin, Zhang, Kangda. Proton-anion Ion-pair Recognition by a Hexaazatriphenylene-Hexaurea Receptor. CHINESE JOURNAL OF CHEMISTRY[J]. 2017, 35(4): 392-396, http://lib.cqvip.com/Qikan/Article/Detail?id=672412951.
[54] 赵新, 黎占亭. 求真爱美,以德为魂:纪念蒋锡夔院士. 科学通报[J]. 2017, 62(36): 4322-4324, http://lib.cqvip.com/Qikan/Article/Detail?id=674323682.
[55] Qian, Cheng, Xu, ShunQi, Jiang, GuoFang, Zhan, TianGuang, Zhao, Xin. Precision Construction of 2D Heteropore Covalent Organic Frameworks by a Multiple-Linking-Site Strategy. CHEMISTRY-A EUROPEAN JOURNAL[J]. 2016, 22(49): 17784-17789, https://www.webofscience.com/wos/woscc/full-record/WOS:000388471700036.
[56] Chen, ShiGui, Zhao, ZhiXiong, Jiang, XiaoNan, Wang, Lu, Zhou, TianYou, Lu, ChengLu, Zhao, Xin, Jiang, XiKui, Ma, Yuguo, Wang, RenXiao, Li, ZhanTing. Temperature-Responsive Chiral (A)(6)B Supramolecular Cages Based on Conformational Preferences. CHEMISTRY-AN ASIAN JOURNAL[J]. 2016, 11(4): 465-469, http://dx.doi.org/10.1002/asia.201501090.
[57] Qian, Cheng, Zhao, WeiHao, Tian, Yuan, Jiang, GuoFang, Zhan, TianGuang, Zhao, Xin. Synthesis, Photophysical and Electrochemical Properties, and Self-assembly Behavior of Two Hexaazatriphenylene Derivatives: A Single Bond Makes a Big Difference. CHEMISTRY-AN ASIAN JOURNAL[J]. 2016, 11(6): 839-843, https://www.webofscience.com/wos/woscc/full-record/WOS:000372897900006.
[58] Pang, ZhongFu, Xu, ShunQi, Zhou, TianYou, Liang, RongRan, Zhan, TianGuang, Zhao, Xin. Construction of Covalent Organic Frameworks Bearing Three Different Kinds of Pores through the Heterostructural Mixed Linker Strategy. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2016, 138(14): 4710-4713, [59] Tian, Yuan, Xu, ShunQi, Qian, Cheng, Pang, ZhongFu, Jiang, GuoFang, Zhao, Xin. Two-dimensional dual-pore covalent organic frameworks obtained from the combination of two D-2h symmetrical building blocks. CHEMICAL COMMUNICATIONS[J]. 2016, 52(78): 11704-11707, https://www.webofscience.com/wos/woscc/full-record/WOS:000385475700022.
[60] Xu, ShunQi, Zhan, TianGuang, Wen, Qiang, Pang, ZhongFu, Zhao, Xin. Diversity of Covalent Organic Frameworks (COFs): A 2D COF Containing Two Kinds of Triangular Micropores of Different Sizes. ACS MACRO LETTERS[J]. 2016, 5(1): 99-102, https://www.webofscience.com/wos/woscc/full-record/WOS:000368567100021.
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[125] Zhang, KangDa, Zhao, Xin, Wang, GuiTao, Liu, Yi, Zhang, Ying, Lu, HaoJie, Jiang, XiKui, Li, ZhanTing. Foldamers in pseudo2rotaxanes and 2rotaxanes: tuning the switching kinetics and metastability. TETRAHEDRON[J]. 2012, 68(23): 4517-4527, http://dx.doi.org/10.1016/j.tet.2011.10.116.
[126] Xiao, ZeYun, Wang, Lu, Zhao, Xin, Jiang, XiKui, Li, ZhanTing. Programed self-assembly of microstructures: self-sorting based on size-matched disk-like molecules and remarkable cooperative reinforcement of hydrogen-bonding and donor-acceptor interaction. TETRAHEDRON LETTERS[J]. 2011, 52(29): 3836-3839, http://dx.doi.org/10.1016/j.tetlet.2011.05.082.
[127] Xu, YunXiang, Zhan, TianGuang, Zhao, Xin, Fang, Qiang, Jiang, XiKui, Li, ZhanTing. Oligo(quinoxalineethynylene)s: synthesis, properties, and Ag+-mediated complanation. CHEMICAL COMMUNICATIONS[J]. 2011, 47(5): 1524-1526, http://dx.doi.org/10.1039/c0cc03501g.
[128] Xiao, ZeYun, Zhao, Xin, Jiang, XiKui, Li, ZhanTing. Tunable Coordinative Assembly of a Disc-Like Molecule and Metal Ions: From Mirospheres to Microtubes and Microrods. CHEMISTRY OF MATERIALS[J]. 2011, 23(6): 1505-1511, http://dx.doi.org/10.1021/cm103182e.
[129] Wang Lu, Wang Guitao, Zhao Xin, Jiang Xikui, Li Zhanting. Hydrogen Bonding-Directed Quantitative Self-Assembly of Cyclotriveratrylene Capsules and Their Encapsulation of C(60) and C(70). J. ORG. CHEM.[J]. 2011, 76(9): 3531-3535, http://ir.sioc.ac.cn/handle/331003/12774.
[130] 肖泽云, 赵新, 蒋锡夔, 黎占亭. Tunable Coordinative Assembly of a Disc-Like Molecule and Metal Ions: From Mirospheres to Microtubes and Microrods. CHEM. MAT.[J]. 2011, 23(6): 1505-1511, http://www.irgrid.ac.cn/handle/1471x/582614.
[131] Xu Yunxiang, Zhan Tianguang, Zhao Xin, Fang Qiang, Jiang Xikui, Li Zhanting. Oligo(quinoxalineethynylene)s: synthesis, properties, and Ag+-mediated complanation. CHEM. COMMUN.[J]. 2011, 47(5): 1524-1526, http://www.irgrid.ac.cn/handle/1471x/582615.
[132] 徐晓娜, 王璐, 赵新, 黎占亭. 两个手性胶囊分子的氢键介质的动态共价键合成. 高等学校化学学报[J]. 2011, 32(9): 2162-2168, http://lib.cqvip.com/Qikan/Article/Detail?id=39264699.
[133] Chen, ShiGui, Yu, Yue, Zhao, Xin, Ma, Yuguo, Jiang, XiKui, Li, ZhanTing. Highly Stable Chiral (A)(6)-B Supramolecular Copolymers: A Multivalency-Based Self-Assembly Process. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2011, 133(29): 11124-11127, http://dx.doi.org/10.1021/ja205059z.
[134] Shi, ZhuMing, Chen, ShiGui, Zhao, Xin, Jiang, XiKui, Li, ZhanTing. meta-Substituted benzamide oligomers that complex mono-, di- and tricarboxylates: folding-induced selectivity and chirality. ORGANIC & BIOMOLECULAR CHEMISTRY[J]. 2011, 9(23): 8122-8129, http://www.irgrid.ac.cn/handle/1471x/582619.
[135] 杜平, 孔军, 王贵涛, 赵新, 李光玉, 蒋锡夔, 黎占亭. Hydrogen Bonded Supramolecular Polymers in Both Apolar and Aqueous Media: Self-Assembly and Reversible Conversion of Vesicles and Gels. 中国化学:英文版[J]. 2011, 29(12): 2597-2605, http://lib.cqvip.com/Qikan/Article/Detail?id=40185162.
[136] Xin Zhao. Supramolecular Copolymers: A Multivalency-Based Self-Assembling Process. J. Am. Chem. Soc.. 2011, [137] Xin Zhao. Programmed Self-Assembly of Microstructures: Self-Sorting Based on Size-Matched Disc-Like Molecules and Remarkable Cooperative Reinforcement of Hydrogen-Bonding and Donor-Acceptor Interaction. Tetrahedron Lett.. 2011, [138] Zhang, KangDa, Zhao, Xin, Wang, GuiTao, Liu, Yi, Zhang, Ying, Lu, HaoJie, Jiang, XiKui, Li, ZhanTing. Foldamer-Tuned Switching Kinetics and Metastability of 2Rotaxanes. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION[J]. 2011, 50(42): 9866-9870, http://www.irgrid.ac.cn/handle/1471x/582620.
[139] Du Ping, Kong Jun, Wang Guitao, Zhao Xin, Li Guangyu, Jiang Xikui, Li Zhanting. Hydrogen Bonded Supramolecular Polymers in Both Apolar and Aqueous Media: Self-Assembly and Reversible Conversion of Vesicles and Gels. CHINESE JOURNAL OF CHEMISTRY[J]. 2011, 29(12): 2597-2605, http://lib.cqvip.com/Qikan/Article/Detail?id=40185162.
[140] Xu XiaoNa, Wang Lu, Zhao Xin, Li ZhanTing. Hydrogen-bonding-mediated Dynamic Covalent Synthesis of Two Chiral Capsular Compounds. CHEMICAL JOURNAL OF CHINESE UNIVERSITIES-CHINESE[J]. 2011, 32(9): 2162-2168, http://www.irgrid.ac.cn/handle/1471x/587708.
[141] Wang, GuiTao, Zhao, Xin, Li, ZhanTing. Hydrogen bonded arylamide-linked cholesteryl dimesogenic liquid crystals: a study of the length and side chain effects. TETRAHEDRON[J]. 2011, 67(1): 48-57, http://dx.doi.org/10.1016/j.tet.2010.11.046.
[142] Wang, Lu, Wang, GuiTao, Zhao, Xin, Jiang, XiKui, Li, ZhanTing. Hydrogen Bonding-Directed Quantitative Self-Assembly of Cyclotriveratrylene Capsules and Their Encapsulation of C-60 and C-70. JOURNAL OF ORGANIC CHEMISTRY[J]. 2011, 76(9): 3531-3535, http://dx.doi.org/10.1021/jo102577a.
[143] Xu Xiaona, Wang Lu, Zhao Xin, Li Zhanting. 两个手性胶囊分子的氢键介质的动态共价键合成. 高等学校化学学报[J]. 2011, 32(9): 2162-2168, http://lib.cqvip.com/Qikan/Article/Detail?id=39264699.
[144] You Liyan, Zhao Xin, Li Zhanting. Self-Assembly of Vesicles by a 2,6-Di(7-benzamidy)quinolin-2-yl) pyridine Derivative Tuned by an Amphiphilic Amide Chain. CHINESE JOURNAL OF CHEMISTRY[J]. 2010, 28(9): 1547-1552, http://www.irgrid.ac.cn/handle/1471x/587702.
[145] Du, Ping, Wang, GuiTao, Zhao, Xin, Li, GuangYu, Jiang, XiKui, Li, ZhanTing. Two novel quadruple hydrogen-bonding motifs: the formation of supramolecular polymers, vesicles, and organogels. TETRAHEDRON LETTERS[J]. 2010, 51(1): 188-191, http://dx.doi.org/10.1016/j.tetlet.2009.10.115.
[146] Xin Zhao. Vesicle Self-Assembly by Tetrathiafulvalene Derivatives in Both Polar and Nonpolar Solvents and Pseudo-Rotaxane Mediated Vesicles-to-Microtubes Transformation. Langmuir. 2010, [147] Shi, ZhuMing, Huang, Jin, Ma, Zhi, Zhao, Xin, Guan, Zhibin, Li, ZhanTing. Foldamers as Cross-Links for Tuning the Dynamic Mechanical Property of Methacrylate Copolymers. MACROMOLECULES[J]. 2010, 43(14): 6185-6192, http://dx.doi.org/10.1021/ma100952h.
[148] Xin Zhao. Construction of Microbelts through the Co-Assembly of a Disc-Like Molecule and Primary Alkyl Ammoniums: A Noncovalent Strategy to Mimic Covalently Bonded ?-Core-Alkyl Chain Structure. Langmuir. 2010, [149] Xu, YunXiang, Wang, GuiTao, Zhao, Xin, Jiang, XiKui, Li, ZhanTing. Controllable self-assemblies of micro/nano-tubes and vesicles from arylamides and their applications as templates to fabricate Pt micro/nano-tubes and hollow Pt nanospheres. SOFT MATTER[J]. 2010, 6(6): 1246-1252, http://www.irgrid.ac.cn/handle/1471x/582611.
[150] You Liyan, Zhao Xin, Li Zhanting. Self-Assembly of Vesicles by a 2,6-Di(7-benzamidy)quinolin-2-yl)pyridine Derivative Tuned by an Amphiphilic Amide Chaint. CHINESE JOURNAL OF CHEMISTRY[J]. 2010, 28(9): 1547-1552, http://sciencechina.cn/gw.jsp?action=detail.jsp&internal_id=4031534&detailType=1.
[151] Zhou, Cen, Cai, Wei, Wang, GuiTao, Zhao, Xin, Li, ZhanTing. Hydrogen-Bonded Shape-Persistent Aryl Hydrazide Polymers: Side-Chain-Tuned Formation of Vesicles and Organogels. MACROMOLECULAR CHEMISTRY AND PHYSICS[J]. 2010, 211(19): 2090-2101, http://dx.doi.org/10.1002/macp.201000259.
[152] 赵新, 黎占亭. Hydrogen bonded aryl amide and hydrazide oligomers: a new generation of preorganized soft frameworks. CHEMCOMMUN[J]. 2010, 46(10): 1601-1616, http://www.irgrid.ac.cn/handle/1471x/587704.
[153] Du Ping, Wang Guitao, Zhao Xin, Li Guangyu, Jiang Xikui, Li Zhanting. Two novel quadruple hydrogen-bonding motifs: the formation of supramolecular polymers, vesicles, and organogels. TETRAHEDRON LETT.[J]. 2010, 51(1): 188-191, http://dx.doi.org/10.1016/j.tetlet.2009.10.115.
[154] Zhao, Xin, Li, ZhanTing. Hydrogen bonded aryl amide and hydrazide oligomers: a new generation of preorganized soft frameworks. CHEMICAL COMMUNICATIONS[J]. 2010, 46(10): 1601-1616, http://dx.doi.org/10.1039/b924552a.
[155] Xiao, ZeYun, Zhao, Xin, Jiang, XiKui, Li, ZhanTing. Construction of Microbelts through the Coassembly of a Disclike Molecule and Primary Alkyl Ammoniums: A Noncovalent Strategy to Mimic Covalently Bonded pi-Core Alkyl Chain Structure. LANGMUIR[J]. 2010, 26(16): 13048-13051, http://www.irgrid.ac.cn/handle/1471x/582607.
[156] Lu, BenYe, Sun, GuangJun, Lin, JianBin, Jiang, XiKui, Zhao, Xin, Li, ZhanTing. Hydrogen-bonded benzylidenebenzohydrazide macrocycles and oligomers: testing the robust capacity of an amide chain in promoting the formation of vesicles. TETRAHEDRON LETTERS[J]. 2010, 51(29): 3830-3835, http://dx.doi.org/10.1016/j.tetlet.2010.05.076.
[157] Zhang, KangDa, Wang, GuiTao, Zhao, Xin, Jiang, XiKui, Li, ZhanTing. Vesicle Self-Assembly by Tetrathiafulvalene Derivatives in Both Polar and Nonpolar Solvents and Pseudo-Rotaxane Mediated Vesicle-to-Microtube Transformation. LANGMUIR[J]. 2010, 26(10): 6878-6882, http://www.irgrid.ac.cn/handle/1471x/582612.
[158] Xiao Zeyun, Zhao Xin, Jiang Xikui, Li Zhanting. Self-assembly of porphyrin-azulene-porphyrin and porphyrin-azulene conjugates. ORG. BIOMOL. CHEM.[J]. 2009, 7(12): 2540-2547, http://www.irgrid.ac.cn/handle/1471x/582597.
[159] Xiao, ZeYun, Zhao, Xin, Jiang, XiKui, Li, ZhanTing. Self-assembly of porphyrin-azulene-porphyrin and porphyrin-azulene conjugates. ORGANIC & BIOMOLECULAR CHEMISTRY[J]. 2009, 7(12): 2540-2547, http://www.irgrid.ac.cn/handle/1471x/582597.
[160] Xu, YunXiang, Wang, GuiTao, Zhao, Xin, Jiang, XiKui, Li, ZhanTing. Folding of Aromatic Amide-Based Oligomers Induced by Benzene-1,3,5-tricarboxylate Anion in DMSO. JOURNAL OF ORGANIC CHEMISTRY[J]. 2009, 74(19): 7267-7273, http://www.irgrid.ac.cn/handle/1471x/582593.
[161] Xu Yunxiang, Zhao Xin, Jiang Xikui, Li Zhanting. Organic nanotubes assembled from isophthalamides and their application as templates to fabricate Pt nanotubes. CHEM. COMMUN.[J]. 2009, 4212-4214, http://www.irgrid.ac.cn/handle/1471x/582596.
[162] Xu, YunXiang, Wang, GuiTao, Zhao, Xin, Jiang, XiKui, Li, ZhanTing. Self-Assembly of Vesicles from Amphiphilic Aromatic Amide-Based Oligomers. LANGMUIR[J]. 2009, 25(5): 2684-2688, http://www.irgrid.ac.cn/handle/1471x/582601.
[163] Xu, YunXiang, Zhao, Xin, Jiang, XiKui, Li, ZhanTing. Organic nanotubes assembled from isophthalamides and their application as templates to fabricate Pt nanotubes. CHEMICAL COMMUNICATIONS[J]. 2009, 4212-4214, http://www.irgrid.ac.cn/handle/1471x/582596.
[164] Xu Yunxiang, Wang Guitao, Zhao Xin, Jiang Xikui, Li Zhanting. Folding of Aromatic Amide-Based Oligomers Induced by Benzene-1,3,5-tricarboxylate Anion in DMSO. J. ORG. CHEM.[J]. 2009, 74(19): 7267-7273, http://www.irgrid.ac.cn/handle/1471x/582593.
[165] 张末星, 范翠青, 屠波, 赵新, 蒋锡夔, 黎占亭. Self-assembly of novel hetero3rotaxane, 2rotaxanes and 2catenane. CHIN. J. CHEM.[J]. 2003, 21(7): 739-745, http://lib.cqvip.com/Qikan/Article/Detail?id=8158710.
[166] 齐志奇, 王晓钟, 张末星, 邵学斌, 赵新, 李晓强, 蒋锡夔, 黎占亭. 四氢键二聚体和分子组装. 有机化学[J]. 2003, 23(5): 403-412, http://ir.sioc.ac.cn/handle/331003/12640.
[167] 齐志奇, 邵学斌, 赵新, 李晓强, 王晓钟, 张未星, 蒋锡夔, 黎占亭. 四氢键二聚体和分子组装. 有机化学[J]. 2003, 23(5): 403-412, http://ir.sioc.ac.cn/handle/331003/12640.
[168] 周艳霞, 陈光巨, 刘若庄, 赵新, 黎占亭. 新的异体四氢键二聚体结构的理论研究. 化学学报[J]. 2003, 61(7): 963-969, http://ir.sioc.ac.cn/handle/331003/20843.
[169] 赵新, 王晓钟, 蒋锡夔, 黎占亭, 陈广巨, 陈英奇. Hydrazide-based quadruply hydrogen-bonded heterodimers. Structure, Assembling selectivity, and supramolecular substitution. J. AM. CHEM. SOC.[J]. 2003, 125(49): 15128-15139, http://ir.sioc.ac.cn/handle/331003/12634.
[170] 赵新, 蒋锡夔, 黎占亭, 陈林, 陈燕, 赵学成. Self-assembly of novel3-and 2rotaxanes based on donor-acceptor and hydrogen-bonding interactions. Intensified inter-ring repulsion interaction and shuttling behavior. J. ORG. CHEM.[J]. 2003, 68(7): 2704-2712, http://ir.sioc.ac.cn/handle/331003/12644.

科研活动

   
科研项目
( 1 ) 高稳定性、高光学纯度的手性氢键二聚体的自组装构筑方法研究, 负责人, 国家任务, 2008-08--2009-07
( 2 ) 非共价键或可逆共价键调控的氮杂共轭体系自组装及其材料性能研究, 负责人, 国家任务, 2010-01--2012-12
( 3 ) 上海市2010年度“浦江人才计划”, 负责人, 地方任务, 2010-07--2012-06
( 4 ) 手性催化中的新概念、新方法, 参与, 国家任务, 2009-08--2011-08
( 5 ) 分子间相互作用的协同效应与自组装原理, 参与, 国家任务, 2009-01--2012-08
( 6 ) 自组装体系的物理有机化学, 负责人, 研究所自选, 2008-05--2011-11
( 7 ) 基于动态共价键或主-客体作用的二维聚合结构构筑, 负责人, 国家任务, 2015-01--2018-12
( 8 ) 缺电型π-共轭体系的构建、自组装及其性能研究, 负责人, 国家任务, 2012-01--2015-12
( 9 ) 共价键自组装:共价有机框架构筑中的物理有机化学, 参与, 国家任务, 2017-01--2021-12
( 10 ) 二维高分子, 负责人, 国家任务, 2018-01--2022-12
( 11 ) 晶态有序多级孔有机功能材料创制及其应用, 负责人, 地方任务, 2019-05--2022-04

指导学生

已指导学生

张英  硕士研究生  070303-有机化学  

文强  硕士研究生  070303-有机化学  

徐顺奇  硕士研究生  070303-有机化学  

庞中孚  硕士研究生  070303-有机化学  

阿如瀚  硕士研究生  070303-有机化学  

梁荣冉  博士研究生  070303-有机化学  

韩向豪  博士研究生  070303-有机化学  

蒋舒岩  博士研究生  070303-有机化学  

现指导学生

田鹏举  博士研究生  070305-高分子化学与物理  

王文壮  硕士研究生  070303-有机化学  

孙慧慧  硕士研究生  070303-有机化学  

周志贝  博士研究生  070303-有机化学  

贾超  博士研究生  070303-有机化学  

王桢学  硕士研究生  070303-有机化学  

赵馨  硕士研究生  070303-有机化学