Locking high energy 1D chain of dichloromethane molecules containing abnormally short Cl⋯Cl contacts of 2.524 Å inside organic crystals

1D helical channels can be created by “sticky” end-mediated formation of 1D helical stacks composed of short cavity-containing helices and are able to host 1D chains of dichloromethane molecules containing extraordinarily short intermolecular Cl⋯Cl contacts of 2.524 Å in length that computationally...

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Main Authors: Huo, Yan-Ping, Zhang, Kun, Zhou, Feng, Fu, Haoliang, Ong, Wei Qiang, Ye, Ruijuan, Yuan, Weixing, Lu, Yu-Jing, Su, Haibin, Zeng, Huaqiang
Other Authors: School of Materials Science & Engineering
Format: Article
Language:English
Published: 2013
Online Access:https://hdl.handle.net/10356/99033
http://hdl.handle.net/10220/17239
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-990332020-06-01T10:13:52Z Locking high energy 1D chain of dichloromethane molecules containing abnormally short Cl⋯Cl contacts of 2.524 Å inside organic crystals Huo, Yan-Ping Zhang, Kun Zhou, Feng Fu, Haoliang Ong, Wei Qiang Ye, Ruijuan Yuan, Weixing Lu, Yu-Jing Su, Haibin Zeng, Huaqiang School of Materials Science & Engineering 1D helical channels can be created by “sticky” end-mediated formation of 1D helical stacks composed of short cavity-containing helices and are able to host 1D chains of dichloromethane molecules containing extraordinarily short intermolecular Cl⋯Cl contacts of 2.524 Å in length that computationally destabilize the host–guest complex by 14.94 kcal mol^−1. 2013-11-05T04:15:03Z 2019-12-06T20:02:31Z 2013-11-05T04:15:03Z 2019-12-06T20:02:31Z 2012 2012 Journal Article Zhou, F., Fu, H., Ong, W. Q., Ye, R., Yuan, W., Lu, Y.-J., et al. (2012). Locking high energy 1D chain of dichloromethane molecules containing abnormally short Cl⋯Cl contacts of 2.524 Å inside organic crystals. Organic & Biomolecular Chemistry, 10(29), 5525-5528. https://hdl.handle.net/10356/99033 http://hdl.handle.net/10220/17239 10.1039/c2ob25888a en Organic & biomolecular chemistry
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
description 1D helical channels can be created by “sticky” end-mediated formation of 1D helical stacks composed of short cavity-containing helices and are able to host 1D chains of dichloromethane molecules containing extraordinarily short intermolecular Cl⋯Cl contacts of 2.524 Å in length that computationally destabilize the host–guest complex by 14.94 kcal mol^−1.
author2 School of Materials Science & Engineering
author_facet School of Materials Science & Engineering
Huo, Yan-Ping
Zhang, Kun
Zhou, Feng
Fu, Haoliang
Ong, Wei Qiang
Ye, Ruijuan
Yuan, Weixing
Lu, Yu-Jing
Su, Haibin
Zeng, Huaqiang
format Article
author Huo, Yan-Ping
Zhang, Kun
Zhou, Feng
Fu, Haoliang
Ong, Wei Qiang
Ye, Ruijuan
Yuan, Weixing
Lu, Yu-Jing
Su, Haibin
Zeng, Huaqiang
spellingShingle Huo, Yan-Ping
Zhang, Kun
Zhou, Feng
Fu, Haoliang
Ong, Wei Qiang
Ye, Ruijuan
Yuan, Weixing
Lu, Yu-Jing
Su, Haibin
Zeng, Huaqiang
Locking high energy 1D chain of dichloromethane molecules containing abnormally short Cl⋯Cl contacts of 2.524 Å inside organic crystals
author_sort Huo, Yan-Ping
title Locking high energy 1D chain of dichloromethane molecules containing abnormally short Cl⋯Cl contacts of 2.524 Å inside organic crystals
title_short Locking high energy 1D chain of dichloromethane molecules containing abnormally short Cl⋯Cl contacts of 2.524 Å inside organic crystals
title_full Locking high energy 1D chain of dichloromethane molecules containing abnormally short Cl⋯Cl contacts of 2.524 Å inside organic crystals
title_fullStr Locking high energy 1D chain of dichloromethane molecules containing abnormally short Cl⋯Cl contacts of 2.524 Å inside organic crystals
title_full_unstemmed Locking high energy 1D chain of dichloromethane molecules containing abnormally short Cl⋯Cl contacts of 2.524 Å inside organic crystals
title_sort locking high energy 1d chain of dichloromethane molecules containing abnormally short cl⋯cl contacts of 2.524 å inside organic crystals
publishDate 2013
url https://hdl.handle.net/10356/99033
http://hdl.handle.net/10220/17239
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