Beyond the common supramolecular helical polymers in solutions, controlling single-crystal helical self-assembly with precisely defined chirality and architectures has been challenging. Here, we report that simply merging static homochiral amino acids with dynamic chiral disulfides can produce a class of building blocks featuring supramolecular helical single-crystal self-assembly with unusual stereodivergency. Analysis of 20 single-crystal structures of 1,2-dithiolanes gives an atom-precision understanding of the chirality transfer from the molecular to supramolecular level, featuring homochiral and heterochiral helical supramolecular self-assembly in the solid state. The underlying structure-assembly relationship reveals that the synergis...
Solid-state superstructures, resulting from assemblies programmed by homochirality, are attracting c...
We report coordination polymers forming from Ag+ and a chiral thiol ligand that bears a β-turn struc...
Strong amplification of chirality occurs in dynamic, but highly ordered, helical columns in n-butano...
Beyond the common supramolecular helical polymers in solutions, controlling single-crystal helical s...
Beyond the common supramolecular helical polymers in solutions, controlling single-crystal helical s...
Controlling dynamic stereochemistry is an important challenge, as it is not only inherent to protein...
The functions of complex crystalline systems derived from supramolecular biological and non-biologic...
Self-assembly plays an important role in the formation of many (chiral) biological structures, such ...
Chiral recognition as well as chirality transfer in supramolecular self-assembly and on-surface coor...
Helicity switching in biological and artificial systems is a fundamental process that allows for the...
Control over the helical organization of synthetic supramolecular systems is intensively pursued to ...
Solid-state superstructures, resulting from assemblies programmed by homochirality, are attracting c...
We report coordination polymers forming from Ag+ and a chiral thiol ligand that bears a β-turn struc...
Strong amplification of chirality occurs in dynamic, but highly ordered, helical columns in n-butano...
Beyond the common supramolecular helical polymers in solutions, controlling single-crystal helical s...
Beyond the common supramolecular helical polymers in solutions, controlling single-crystal helical s...
Controlling dynamic stereochemistry is an important challenge, as it is not only inherent to protein...
The functions of complex crystalline systems derived from supramolecular biological and non-biologic...
Self-assembly plays an important role in the formation of many (chiral) biological structures, such ...
Chiral recognition as well as chirality transfer in supramolecular self-assembly and on-surface coor...
Helicity switching in biological and artificial systems is a fundamental process that allows for the...
Control over the helical organization of synthetic supramolecular systems is intensively pursued to ...
Solid-state superstructures, resulting from assemblies programmed by homochirality, are attracting c...
We report coordination polymers forming from Ag+ and a chiral thiol ligand that bears a β-turn struc...
Strong amplification of chirality occurs in dynamic, but highly ordered, helical columns in n-butano...