Alternation of Metal-Bridged Metallacycle Skeletons: From Ruthenapentalyne to Ruthenapentalene and Ruthenaindene Derivative

Alternation of Metal-Bridged Metallacycle Skeletons: From Ruthenapentalyne to Ruthenapentalene and Ruthenaindene Derivative
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金属桥金属环骨架的交替:从Ruthenapentalyne到Ruthenapentalene和Ruthenaindene衍生物

DOI:
10.1002/cjoc.201800362
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发表时间:
2018-10
影响因子:
5.4
通讯作者:
Haiping Xia
Haiping Xia
中科院分区:
化学2区
文献类型:
--
作者:
Jinhua Li;Huijun Kang;Kaiyue Zhuo;Qingde Zhuo;Hong Zhang;Yu-Mei Lin;Haiping Xia

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四氢呋喃与一种当量的异氰化物反应,通过亲核加成反应生成稀有的三茂烯络合物。当使用过量的异氰酸酯时,金属桥联的Ruthenaindene衍生物可以被分离出来,并通过一个碳的异氰化物插入到红环中而形成。络合物3代表第一个在桥头位置带有第二排过渡金属的茂金属衍生物。Ruthenapentalyne通过Ruthenapentalene向Ruthenaindene衍生物的转化是很有意义的,并可推广到其他多环Ruthaturycle的合成。这些独特的金属环在可见光范围内表现出相当大的稳定性和广泛的光谱吸收,使其在光电材料中具有潜在的应用前景。
The reaction of ruthenapentalyne with one equivalent of isocyanide led to the formation of a rare ruthenapentalene complex by nucleophilic addition. When excess isocyanides were used, the metal‐bridged ruthenaindene derivatives can be isolated and were formed by one carbon of isocyanide insertion into the ruthenacycle. Complexes3represent the first metallaindene derivatives with a second‐row transition metal at the bridge‐head position. The transformations from ruthenapentalyne via ruthenapentalene to ruthenaindene derivatives are of interest and can be extended to the syntheses of other polycyclic ruthenacycles. These unique metallacycles exhibit considerable stability and broad spectral absorption spanning the visible spectrum, enabling their potential applications in photoelectric materials.
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