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Host-guest supramolecular chemistry at solid-liquid interface:An important strategy for preparing two-dimensional functional nanostructures 被引量:6

Host-guest supramolecular chemistry at solid-liquid interface:An important strategy for preparing two-dimensional functional nanostructures
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摘要 Supramolecular self-assembly,an important strategy in nanotechnology,has been widely studied in the past two decades.In this review,we have introduced the recent progress on construction of two-dimensional(2D)nanostructures by host-guest supramolecular chemistry at solid-liquid interface,and the interactions between the host assembly and the guest molecules are the major concerns.At first,the hydrogen bonds connected hybrid structures are discussed.And then we have paid a close attention on the surface-confined condensation reactions that has flourished recently in direct preparing novel nanostructures with increasing structural complexity.In the end,the cavity confinement of the 2D supramolecular host-guest architectures has been studied.On the basis of the above-mentioned interactions,a group of functional hybrid structures have been prepared.Notably,scanning tunneling microscopy(STM),a unique technique to probe the surface morphology and information at the single molecule level,has been used to probe the formed structures on highly oriented pyrolytic graphite(HOPG)surface. Supramolecular self-assembly,an important strategy in nanotechnology,has been widely studied in the past two decades.In this review,we have introduced the recent progress on construction of two-dimensional(2D)nanostructures by host-guest supramolecular chemistry at solid-liquid interface,and the interactions between the host assembly and the guest molecules are the major concerns.At first,the hydrogen bonds connected hybrid structures are discussed.And then we have paid a close attention on the surface-confined condensation reactions that has flourished recently in direct preparing novel nanostructures with increasing structural complexity.In the end,the cavity confinement of the 2D supramolecular host-guest architectures has been studied.On the basis of the above-mentioned interactions,a group of functional hybrid structures have been prepared.Notably,scanning tunneling microscopy(STM),a unique technique to probe the surface morphology and information at the single molecule level,has been used to probe the formed structures on highly oriented pyrolytic graphite(HOPG)surface.
出处 《Science China Chemistry》 SCIE EI CAS 2014年第1期13-25,共13页 中国科学(化学英文版)
基金 supports from the National Basic Research Program of China(2011CB932303,2013CB934200) the National Natural Science Foundation of China(21073048,51173031,91127043)are also gratefully acknowledged
关键词 self-assembly STM hydrogen bond host-guest chemistry supramocular coordination Schiff-base reaction self-assembly,STM,hydrogen bond,host-guest chemistry,supramocular coordination,Schiff-base reaction
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  • 1SONG XuChun1, ZHAO Yang2, ZHENG YiFan3, YANG E1 & LIU ZhiSheng1 1Institute of Physical Chemistry, Department of Chemistry, Fujian Normal University, Fuzhou 350007, China,2Department of Chemistry, Henan Normal University, Xinxiang 453007, China,3College of Chemical Engineering & Materials Science, Zhejiang University of Technology, Hangzhou 310014, China.Synthesis of three-dimensional hierarchical cobalt hydroxide microstructures[J].Science China Chemistry,2010,53(4):841-845. 被引量:1
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