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Crystallographic characterization of Lu(2)C(2n) (2n = 76–90): cluster selection by cage size

The successful isolation and unambiguous crystallographic assignment of a series of lutetium-containing endohedral metallofullerenes (EMFs), Lu(2)C(2n) (2n = 76, 78, 80, 84, 86, 88, 90), reveal an unrecognized decisive effect of the cage size on the configuration of the encapsulated clusters. The mo...

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Autores principales: Shen, Wangqiang, Bao, Lipiao, Hu, Shuaifeng, Yang, Le, Jin, Peng, Xie, Yunpeng, Akasaka, Takeshi, Lu, Xing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6345353/
https://www.ncbi.nlm.nih.gov/pubmed/30774877
http://dx.doi.org/10.1039/c8sc03886d
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author Shen, Wangqiang
Bao, Lipiao
Hu, Shuaifeng
Yang, Le
Jin, Peng
Xie, Yunpeng
Akasaka, Takeshi
Lu, Xing
author_facet Shen, Wangqiang
Bao, Lipiao
Hu, Shuaifeng
Yang, Le
Jin, Peng
Xie, Yunpeng
Akasaka, Takeshi
Lu, Xing
author_sort Shen, Wangqiang
collection PubMed
description The successful isolation and unambiguous crystallographic assignment of a series of lutetium-containing endohedral metallofullerenes (EMFs), Lu(2)C(2n) (2n = 76, 78, 80, 84, 86, 88, 90), reveal an unrecognized decisive effect of the cage size on the configuration of the encapsulated clusters. The molecular structures of these compounds are unambiguously assigned as Lu(2)@T(d)(2)-C(76), Lu(2)@D(3h)(5)-C(78), Lu(2)@C(2v)(5)-C(80), Lu(2)@C(2v)(7)-C(84), Lu(2)@C(s)(8)-C(86), Lu(2)@C(s)(15)-C(86), Lu(2)@C(1)(26)-C(88), Lu(2)C(2)@C(2v)(9)-C(86), Lu(2)C(2)@C(s)(32)-C(88) and Lu(2)C(2)@D(2)(35)-C(88). Specifically, when the cage is relatively small, Lu(2)@C(2n) (2n = 76–86) are all dimetallofullerenes (di-EMFs) and a Lu–Lu single bond could be formed between the two lutetium ions inside the cages. However, when the cage expands further, the valence electrons forming the possible Lu–Lu bond donate to a readily inserted C(2)-unit, resulting in the formation of carbide EMFs, Lu(2)C(2)@C(2n) (2n = 86, 88). Consistently, our theoretical results reveal that all these EMFs are thermodynamically favorable isomers. Thus the comprehensive characterization of the series of Lu(2)C(76–90) isomers and the overall agreement between the experimental and theoretical results reveal for the first time that the exact configuration of the internal metallic cluster is determined by the cage size, taking a solid step towards the controlled synthesis of novel hybrid molecules which may have potential applications as building blocks of single molecule devices.
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spelling pubmed-63453532019-02-15 Crystallographic characterization of Lu(2)C(2n) (2n = 76–90): cluster selection by cage size Shen, Wangqiang Bao, Lipiao Hu, Shuaifeng Yang, Le Jin, Peng Xie, Yunpeng Akasaka, Takeshi Lu, Xing Chem Sci Chemistry The successful isolation and unambiguous crystallographic assignment of a series of lutetium-containing endohedral metallofullerenes (EMFs), Lu(2)C(2n) (2n = 76, 78, 80, 84, 86, 88, 90), reveal an unrecognized decisive effect of the cage size on the configuration of the encapsulated clusters. The molecular structures of these compounds are unambiguously assigned as Lu(2)@T(d)(2)-C(76), Lu(2)@D(3h)(5)-C(78), Lu(2)@C(2v)(5)-C(80), Lu(2)@C(2v)(7)-C(84), Lu(2)@C(s)(8)-C(86), Lu(2)@C(s)(15)-C(86), Lu(2)@C(1)(26)-C(88), Lu(2)C(2)@C(2v)(9)-C(86), Lu(2)C(2)@C(s)(32)-C(88) and Lu(2)C(2)@D(2)(35)-C(88). Specifically, when the cage is relatively small, Lu(2)@C(2n) (2n = 76–86) are all dimetallofullerenes (di-EMFs) and a Lu–Lu single bond could be formed between the two lutetium ions inside the cages. However, when the cage expands further, the valence electrons forming the possible Lu–Lu bond donate to a readily inserted C(2)-unit, resulting in the formation of carbide EMFs, Lu(2)C(2)@C(2n) (2n = 86, 88). Consistently, our theoretical results reveal that all these EMFs are thermodynamically favorable isomers. Thus the comprehensive characterization of the series of Lu(2)C(76–90) isomers and the overall agreement between the experimental and theoretical results reveal for the first time that the exact configuration of the internal metallic cluster is determined by the cage size, taking a solid step towards the controlled synthesis of novel hybrid molecules which may have potential applications as building blocks of single molecule devices. Royal Society of Chemistry 2018-10-30 /pmc/articles/PMC6345353/ /pubmed/30774877 http://dx.doi.org/10.1039/c8sc03886d Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by-nc/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Shen, Wangqiang
Bao, Lipiao
Hu, Shuaifeng
Yang, Le
Jin, Peng
Xie, Yunpeng
Akasaka, Takeshi
Lu, Xing
Crystallographic characterization of Lu(2)C(2n) (2n = 76–90): cluster selection by cage size
title Crystallographic characterization of Lu(2)C(2n) (2n = 76–90): cluster selection by cage size
title_full Crystallographic characterization of Lu(2)C(2n) (2n = 76–90): cluster selection by cage size
title_fullStr Crystallographic characterization of Lu(2)C(2n) (2n = 76–90): cluster selection by cage size
title_full_unstemmed Crystallographic characterization of Lu(2)C(2n) (2n = 76–90): cluster selection by cage size
title_short Crystallographic characterization of Lu(2)C(2n) (2n = 76–90): cluster selection by cage size
title_sort crystallographic characterization of lu(2)c(2n) (2n = 76–90): cluster selection by cage size
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6345353/
https://www.ncbi.nlm.nih.gov/pubmed/30774877
http://dx.doi.org/10.1039/c8sc03886d
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