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The Bonding Characteristics and Electronic and Magnetic Properties of Organometallic Sandwich Clusters and Nanowires

机译:有机金属夹心团簇和纳米线的键合特性及电磁性能

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Metal-ligand sandwich clusters and molecular wires, which are constituted by metal atoms and organic/inorganic ligands, show potential applications in molecular recognition, catalysis, nanocomposites, optoelectronic, and biological sensors due to their unique structure, electronic, magnetic, and optical properties. This review focuses on recent progress on organometallic sandwich complexes composed of 3d-transition metal or 4(5)f-lanthanide metal with polycyclic hydrocarbon rings like benzene, naphthalene, anthracene, pentalene, or cyclooctatetraene molecules and their hybrid sandwich structures. The stability, bonding characteristics, molecular magnetism, electronic, and transport properties are discussed. Current challenge and prospects in this field are also addressed. (c) 2014 Wiley Periodicals, Inc.
机译:由金属原子和有机/无机配体组成的金属配体夹心簇和分子线,由于其独特的结构,电子,磁性和光学特性,在分子识别,催化,纳米复合材料,光电和生物传感器中显示出潜在的应用。这篇综述集中在由3d过渡金属或4(5)f-镧系金属与多环烃环(如苯,萘,蒽,戊烯或环辛三烯分子)组成的有机金属夹心复合物及其混合夹心结构的最新进展。讨论了稳定性,键合特性,分子磁性,电子和传输性质。还解决了该领域的当前挑战和前景。 (c)2014年威利期刊有限公司

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