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关于举行美国犹他大学Peter J. Stang教授学术报告的通知

时间:2018-12-04 11:54      发布人:何秋云      阅读:20

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报告题目:Abiological Self-Assembly: Predesigned Metallacycles and Metallacages via Coordination

报 告 人:Peter J. Stang 教授美国犹他大学

邀 请 人:唐本忠 院士

报告时间:2018年12月7日(星期五)上午10:00

报告地点:北区科技园1号楼发光材料与器件国家重点实验室N308A报告厅

 

关于举行美国犹他大学Peter J. Stang教授学术报告的通知 – QQ邮箱 body {background:#fff;color:#000;font-weight:normal;font-family:”lucida Grande”,Verdana,”Microsoft YaHei”;padding:0 7px 6px 4px;margin:0;}.MacOS body {font-family:”lucida Grande”,Verdana;}.qmbox{padding:0;}.qm_con_body_content{height:auto;min-height:100px;_height:100px;word-wrap:break-word;font-size:14px;font-family: “lucida Grande”,Verdana,”Microsoft YaHei”;}.MacOS .qm_con_body_content{font-family: “lucida Grande”,Verdana;}body.thumb_list_readmail {padding:0;}.thumb_list_readmail #nextnewDiv,.thumb_list_readmail #nextmail_top,.thumb_list_readmail #nextmail_bt{display:none;}

报告摘要:

The use of just two types of building blocks, linear and angular, in conjunction with symmetry considerations allows the rational design of a wide range of metallocyclic polygons and polyhedra via the coordination motif.1-3 We have used this approach to self-assemble a variety of 2D supramolecular polygons such as triangles, rectangles, squares, hexagons, etc. as well as a number of 3D supramolecular polyhedra: truncated tetrahedra, triginal prisms, cubooctahedra4 and dodecahedra.5 An example of the methodology is illustrated in Figure 1. More recently we have functionalized these rigid supramolecular scaffolds with different electroactive, host-guest, dendritic (Figure 2), and hydrophobic/hydrophilic moieties and have investigated the properties of these multifunctionalized supramolecular species.6 Additionally, we have begun to explore the self-assembly of 2D polygons and 3D polyhedra on a variety of surfaces with the aim of developing their potential to be used in device settings.7-12 These novel, supramolecular ensembles are characterized by physical and spectral means. The design strategy, formation, characterization and potential uses of these novel metallocyclic assemblies will be discussed, along with our very recent results.

 

References

  1. S.R. Seidel, P. J. Stang, Acc. Chem. Res., 35, 972-983 (2002).
  2. S. Leininger, B. Olenyuk, P. J. Stang, Chem. Rev., 100, 853-908 (2000).
  3. P. J. Stang, B. Olenyuk, Acc. Chem. Res., 20, 502-518 (1997).
  4. B. Olenyuk, J. A. Whiteford, A. Fechtenkötter, P. J. Stang, Nature, 398, 796-799 (1999).
  5. B. Olenyuk, M. D. Levin, J. A. Whiteford, J. E. Shield, P. J. Stang, J. Am. Chem. Soc., 121,

10434-10435 (1999).

  1. S. S. Li; B. H. Northrop, Q. H. Yuan, L. J. Wan, P. J. Stang, Acc. Chem. Res., 42, 249-259 (2009).
  2. R. Chakrabarty, P. S. Mukherjee, P. J. Stang, Chem. Rev., 111, 6810-6918 (2011).
  3. T. R. Cook, Y.-R. Zheng, P.J. Stang, Chem. Rev., 113, 734-777 (2013).
  4. T. R. Cook, V. Vajpayee, M. H. Lee, P. J. Stang, K.-W. Chi, Acc. Chem. Res., 46, 2464-2474 (2013).
  5. I. V. Grishagin, J. B. Pollock, S. Kushal, T. R. Cook, P. J. Stang, B. Z. Olenyuk, Proc. Nat. Acad. Sci., 111, 18448-18453 (2014).
  6. T. R. Cook, P. J. Stang, Chem. Rev., 115, 7001-7045 (2015).
  7. M. L. Saha, X. Yan, P. J. Stang, Acc. Chem. Res., 49, 2527-2539 (2016).

 

 

个人简介:

Peter J. Stang教授是国际著名的化学家,美国加州大学伯克利分校化学博士,普林斯顿大学博士后,1997—2007年曾任美国犹他大学理学院院长,2000年当选美国国家科学院院士,2002年当选美国艺术与科学院院士,2006年当选中国科学院外籍院士,2007年当选匈牙利科学院外籍院士。2000—2001年曾担任美国化学会《有机化学杂志》(JOC)的主编,并于2002年开始担任国际上最著名的化学期刊之一《美国化学会志》(JACS)主编至今。Peter J. Stang教授主要从事超分子自组装和MOF的研究,在配位化学、有机金属及高价碘化学诸领域做出了重大的贡献,是分子构筑与分子组装领域论文被引用率最高的科学家之一。他已发表学术论文及综述568篇,H影响指数为86,论文总计被引用36650余次,拥有多项美国及世界专利。先后获美国国家科学勋章(美国总统予科学家、工程师和发明家的最高荣誉)、美国化学会F. A. Cotton杰出化学研究奖章、美国化学会Paul G. Gassman杰出贡献奖、Fred Basolo无机化学杰出研究奖、美国化学会Linus Pauling奖章、美国化学会碘化学创新研究应用奖、美国犹他州科学技术奖、美国化学会最高荣誉Priestley奖等诸多荣誉。