Supramolecular coordination: self-assembly of finite two- and three-dimensional ensembles.
Supramolecular coordination: self-assembly of finite two- and three-dimensional ensembles.
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DOI:
10.1021/cr200077m
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发表时间:
2011-11-09
期刊:
影响因子:
62.1
通讯作者:
Stang, Peter J.
中科院分区:
文献类型:
--
作者:
Chakrabarty, Rajesh;Mukherjee, Partha Sarathi;Stang, Peter J.
Fascination with supramolecular chemistry over the past few decades has led to the synthesis of an ever-increasing number of elegant and intricate functional structures with sizes that approach nanoscopic dimensions. Today, it has grown into a mature field of modern science whose interfaces with many disciplines have provided invaluable opportunities for crossing boundaries both inside and between the fields of chemistry, physics, and biology. This chemistry is of continuing interest for synthetic chemists, partly because of the fascinating physical and chemical properties and the complex and varied aesthetically pleasing structures that supramolecules possess. For scientists seeking to design novel molecular materials exhibiting unusual sensing, magnetic, optical, and catalytic properties, and for researchers investigating the structure and function of biomolecules, supramolecular chemistry provides limitless possibilities. Thus, it transcends the traditional divisional boundaries of science and represents a highly interdisciplinary field. In the early 1960s, the discovery of “crown ethers”,“cryptands”, and “spherands” by Pedersen, 1 Lehn, 2 and Cram3, respectively, led to the realization that small, complementary molecules can be made to recognize each other through noncovalent interactions such as hydrogen bonding, chargeÀcharge, donorÀacceptor,
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