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Mutual induced-fit controlled signal amplification of hydrogen-bonded capsule formation.

Authors :
Kaur, Sarvjeet
Sharma, Bhanu
Lin, E. S.
Lee, M. M.
Kumar, Gulshan
Chandrasekhar, V.
Shih-Sheng Sun
Singh, Ashutosh S.
Source :
Journal of the Chinese Chemical Society; Nov2023, Vol. 70 Issue 11, p2016-2021, 6p
Publication Year :
2023

Abstract

Mutual induced-fit is well known process in biological system and playing crucial role in enzymatic catalysis, peptide-bond synthesis, protein synthesis, etc..., proceeds by mutual interactions of two or more than two components. However, in an artificial system, to mimic such process is challenging, especially by purely organic components. In this report, we have shown importance of mutual induced-fit in signal amplification of hydrogen-bonded capsule formation. Two different types of highly flexible ligands (one N-bridged and another triazine-bridged) are used. N-bridged tripodal ligand acting as clip over the adduct obtained from triazine-bridged ligand, bringing the resultant adduct in the cone-shape conformation. The resulting cone-shape conformation undergo solvent polarity dependent hydrogen-bonded capsule formation as a sole product. In absence of N-bridged tripodal ligand, only 50% capsule formation is observed through ¹H NMR at 100 mM concentration. However, in the presence of N-bridged tripodal ligand, organic components undergo mutual interactions to opt the cone-shape conformation and 100% capsule is formed (independent of concentration). The complete process is characterized by IR-spectra, ¹H and <superscript>13</superscript>C NMR spectra, concentration dependent ¹H NMR titration spectra, ¹H-¹H COSY, ¹H-¹H NOESY, DOSY NMR, high resolution ESI mass spectra, and also by energy-minimized structure. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00094536
Volume :
70
Issue :
11
Database :
Complementary Index
Journal :
Journal of the Chinese Chemical Society
Publication Type :
Academic Journal
Accession number :
174584751
Full Text :
https://doi.org/10.1002/jccs.202300289