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Complexation of ferrocene derivatives by the cucurbit[7]uril host: A comparative study of the cucurbituril and cyclodextrin host families

Authors
Jeon, Woo SungMoon, KwangyulPark, Sang HyunChun, HyungpilKo, Young HoLee, Jin YongLee, Eun SungSamal, ShashadharSelvapalam, NarayananRekharsky, Mikhail V.Sindelar, VladimirSobransingh, DavidInoue, YoshihisaKaifer, Ángel E.Kim, Kimoon.
Issue Date
Aug-2005
Publisher
American Chemical Society
Citation
Journal of the American Chemical Society, v.127, no.37, pp 12984 - 12989
Pages
6
Indexed
SCIE
SCOPUS
Journal Title
Journal of the American Chemical Society
Volume
127
Number
37
Start Page
12984
End Page
12989
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/46426
DOI
10.1021/ja052912c
ISSN
0002-7863
1520-5126
Abstract
The formation of inclusion complexes between cucurbit[7]uril (CB[7]) and ferrocene and its derivatives has been investigated. The X-ray crystal structure of the 1:1 inclusion complex between ferrocene and CB[7] revealed that the guest molecule resides in the host cavity with two different orientations. Inclusion of a set of five water-soluble ferrocene derivatives in CB[7] was investigated by 1H NMR spectroscopy and calorimetric and voltammetric techniques. Our data indicate that all neutral and cationic guests form highly stable inclusion complexes with CB[7], with binding constants in the 10 9-1010 M-1 and 1012-1013 M-1 ranges, respectively. However, the anionic ferrocenecarboxylate, the only negatively charged guest among those surveyed, was not bound by CB[7] at all. These results are in sharp contrast to the known binding behavior of the same guests to β-cyclodextrin (β-CD), since all the guests form stable inclusion complexes with β-CD, with binding constants in the range 103-104 M-1. The electrostatic surface potentials of CB[6], CB[7], and CB[8] and their size-equivalent CDs were calculated and compared. The CD portals and cavities exhibit low surface potential values, whereas the regions around the carbonyl oxygens in CBs are significantly negative, which explains the strong affinity of CBs for positively charged guests and also provides a rationalization for the rejection of anionic guests. Taken together, our data suggest that cucurbiturils may form very stable complexes. However, the host-guest interactions are very sensitive to some structural features, such as a negatively charged carboxylate group attached to the ferrocene residue, which may completely disrupt the stability of the complexes. © 2005 American Chemical Society.
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ERICA 공학대학 (ERICA 에너지바이오학과)
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