A chiral spherical molecular assembly held together by 60 hydrogen bonds
Тип публикации: Journal Article
Дата публикации: 1997-10-01
scimago Q1
wos Q1
БС1
SJR: 18.288
CiteScore: 78.1
Impact factor: 48.5
ISSN: 00280836, 14764687
Multidisciplinary
Краткое описание
Spontaneous self-assembly processes that lead to discretespherical molecular structures are common in nature. Sphericalviruses1 (such ashepatitis B) and fullerenes2 are well-known examples inwhich non-covalent and covalent forces,respectively, direct the assembly of smaller subunits intolarger superstructures. A common feature of theseshell-like architectures is their ability to encapsulateneutral and/or charged guests whose size, shape and chemicalexteriors complement those of the host's innersurface3,4. Their interiors can often beregarded as a new phase of matter5, capable of controlling the flowof reactants, transients and products, and of catalysingreactions of both chemical and biological relevance. Suchproperties have inspired the recent emergence ofmonomolecular5,6,7 and supramolecular dimeric molecularcapsules8,9, many of which have been basedon the head-to-head alignment of bowl-shapedpolyaromatic macrocycles such as calix[4]arenes5,7,9. But true structural mimicry offrameworks akin to viruses and fullerenes, which are based onthe self-assembly of n > 3 subunits,and where surface curvature is supplied by edge sharing of regularpolygons, has remained elusive. Here we present anexample of such a system: a chiral spherical molecular assemblyheld together by 60 hydrogen bonds (1) (Fig. 1). We demonstrate the ability of 1, which consists of six calix[4]resorcinarenes 2 and eight water molecules, to self-assemble and maintain its structure in apolar media and to encapsulate guest species within a well-defined cavity that possesses an internal volume of about 1,375 Å3. Single crystal X-ray analysis shows that its topology resembles that of a spherical virus1 and conforms to the structure of a snub cube, one of the 13 Archimedean solids10.
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MacGillivray L. R., Atwood J. L. A chiral spherical molecular assembly held together by 60 hydrogen bonds // Nature. 1997. Vol. 389. No. 6650. pp. 469-472.
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MacGillivray L. R., Atwood J. L. A chiral spherical molecular assembly held together by 60 hydrogen bonds // Nature. 1997. Vol. 389. No. 6650. pp. 469-472.
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TY - JOUR
DO - 10.1038/38985
UR - https://doi.org/10.1038/38985
TI - A chiral spherical molecular assembly held together by 60 hydrogen bonds
T2 - Nature
AU - MacGillivray, Leonard R.
AU - Atwood, Jerry L.
PY - 1997
DA - 1997/10/01
PB - Springer Nature
SP - 469-472
IS - 6650
VL - 389
SN - 0028-0836
SN - 1476-4687
ER -
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@article{1997_MacGillivray,
author = {Leonard R. MacGillivray and Jerry L. Atwood},
title = {A chiral spherical molecular assembly held together by 60 hydrogen bonds},
journal = {Nature},
year = {1997},
volume = {389},
publisher = {Springer Nature},
month = {oct},
url = {https://doi.org/10.1038/38985},
number = {6650},
pages = {469--472},
doi = {10.1038/38985}
}
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MacGillivray, Leonard R., and Jerry L. Atwood. “A chiral spherical molecular assembly held together by 60 hydrogen bonds.” Nature, vol. 389, no. 6650, Oct. 1997, pp. 469-472. https://doi.org/10.1038/38985.