supported by the National Natural Science Foundation of China(22471113,22101108,22171123);the Natural Science Foundation of Henan Province(242300421139,232300421232);the Science and Technology Innovation Talent Program of the University in Henan Province(25HASTIT001).
The selective construction of sophisticated supramolecular topologies has always attracted the remarkable attention of researchers.Thus;various molecular knots and catenanes have recently been reported and were obtain...
supported by the National Science Foundation of China(22031003,21720102004,and 22301040);the Shanghai Science Technology Committee(19DZ2270100).
Comprehensive Summary Triple interlocked systems represent highly intricate topological structures,formed by entwining two mechanically interlocked cages.Achieving controlled and straightforward construction of these ...
the National Science Foundation of China(grant nos.22031003 and 21720102004);the Shanghai Science Technology Committee,China(grant no.19DZ2270100);the Shanghai Post-doctoral Excellence Program,China(grant no.2022009).
Designing and stereoselectively constructing chiral mechanically interlocked molecules(MIMs)is a goal that many chemists are pursuing due to their potential in the development of functional molecular machines involved...
supported by the National Natural Science Foundation of China(Nos.22101108 and 22171123);the Shanghai Science and Technology Committee(No.19DZ2270100);training Plan for Young Core Teachers in Higher Education of Henan Province(No.2021GGJS131);Natural Science Foundation of Henan Province(No.232300421232)。
A variety of research reports on novel supramolecular topologies have been published over the last years.However,it is still a great challenge to tap into the inner functional properties of these complexes.Herein,two ...
support from the National Natural Science Foundation of China(grant nos.21991132,21925102,92056118,22101010,22201016,and 22201017);the National Key R&D Program of China(grant no.2020YFA0908100);the Beijing National Laboratory for Molecular Sciences(grant no.BNLMSCXXM-202006)。
The expansion of protein topological diversity requires new and efficient synthetic tools.Herein,we report the second and third generations of the SpyStapler-mediated SpyTag/BDTag ligation system for the efficient syn...
This work was supported by the National Natural Science Foundation of China(Nos.22031003 and 21720102004);the Shanghai Science Technology Committee(No.19DZ2270100).
The construction of interlocked topologies by metal-cation-template methods has been extensively explored.However,construction of these species using template-free chemical self-assembly methods is hard to rationally ...
Research into mechanically interlocked molecules,such as catenanes,rotaxanes and molecular knots,has been gaining momentum in recent decades,not only because of their intriguing structures and topological importance,b...
This work was supported by the National Science Foundation of China(Nos.21531002,21720102004,21801045,22031003);the Shanghai Science and Technology Committee(No.19DZ2270100).
Herein,we report an artificially assembled interlocked system that features adaptive self-assembly and induced-fit transformation properties in the presence of appropriate guest molecules.By careful choice of solvent ...
supported by the National Natural Science Foundation of China(21531002,21720102004 and 21801045);the Shanghai Science and Technology Committee(19DZ2270100).
Despite extensive research and several stunning breakthroughs in the synthesis of interlocked molecular species,[3]catenanes;Borromean rings and ring-in-ring complexes are exceedingly rare and their targeted synthesis...
financially supported by the National students’ project for innovation and entrepreneurship training program (No. 201910345046)
Interlocked-ring polymers,also known as polycatenanes,possess an interesting molecular architecture.These polymers are composed of many interlocked rings in a linear chain.The topological constrain between neighboring...