Mechanically interlocked molecules are perhaps best known as components of molecular machines, a view further reinforced by the Nobel Prize in 2016 to Stoddart and Sauvage …
L Binks, C Tian, SDP Fielden… - Journal of the …, 2022 - ACS Publications
We report a new class of synthetic molecular pumps that use a stepwise information ratchet mechanism to achieve the kinetic gating required to sequester their macrocyclic substrates …
The click concept, as originally discussed by Sharpless, Finn, and Kolb, is both powerful and simple. Kolb et al. suggested that in the search for functional molecules, chemists should …
S Borsley, DA Leigh… - Angewandte Chemie …, 2024 - Wiley Online Library
Over the last two decades ratchet mechanisms have transformed the understanding and design of stochastic molecular systems—biological, chemical and physical—in a move away …
Mechanically interlocked molecules, such as rotaxanes and catenanes, are composed of two or more covalent subcomponents threaded through one another such that they cannot …
D Sluysmans, JF Stoddart - Trends in Chemistry, 2019 - cell.com
Mechanically interlocked molecules (MIMs), such as rotaxanes, catenanes, and molecular knots, have attracted significant interest because of their unique properties originating from …
MJ Power, DTJ Morris… - Journal of the …, 2023 - ACS Publications
Challenges for the development of efficacious new superbases include their ease of synthesis, chemical stability, and high basicity, while minimizing nucleophilicity is important …
C Tian, SDP Fielden, B Pérez-Saavedra… - Journal of the …, 2020 - ACS Publications
We report a one-step enantioselective synthesis of mechanically planar chiral [2] rotaxanes. Previous studies of such molecules have generally involved the separation of enantiomers …
C Kwamen, J Niemeyer - Chemistry–A European Journal, 2021 - Wiley Online Library
Mechanically interlocked molecules (MIMs) have gained attention in the field of catalysis due to their unique molecular properties. Central to MIMs, rotaxanes are highly promising …