Similar to biological macromolecules such as DNA and proteins, the precise control over the monomer position in sequence-defined polymers is of paramount importance for tuning their structures and properties toward achieving specific functions. Here, we apply molecular network analysis on three-dimensional structures issued from molecular dynamics simulations to decipher how the chain organization of trifunctional catalytic oligomers is influenced by the oligomer sequence and the length of oligo(ethylene oxide) spacers. Our findings demonstrate that the tuning of their primary structures is crucial for favoring cooperative interactions between the catalytic units and thus higher catalytic activities. This combined approach can assist in est...
In contrast to biomacromolecules, synthetic polymers generally lack a defined monomer sequence, ther...
Confinement and cooperativity are important design principles used by Nature to optimize catalytic a...
The three-dimensional arrangement of natural and synthetic network materials determines their applic...
Similar to biological macromolecules such as DNA and proteins, the precise control over the monomer ...
The efficiency of cooperative catalysts is dependent on the probabilities of chance encounter betwee...
Millions of years of biological evolution have driven the development of highly sophisticated molecu...
Complex (supra)molecular systems are ubiquitous in living organisms as well as in synthetic context ...
Thesis (Ph.D.)--University of Washington, 2017-06Previously, general principles relating secondary s...
The study of proteins and their function is key to understanding how the cell works in normal and di...
The beneficial use of computer simulations to track the microstructuralevolution of individual speci...
Proteins and enzymes are large and complex biological molecules, characterized by unique three-dimen...
All key chemical transformations in biology are catalysed by linear oligomers. Catalytic properties ...
The control over comonomer sequences is barely studied in macromolecular science nowadays. This is a...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
Cellular processes often depend on interactions between proteins and the formation of macromolecular...
In contrast to biomacromolecules, synthetic polymers generally lack a defined monomer sequence, ther...
Confinement and cooperativity are important design principles used by Nature to optimize catalytic a...
The three-dimensional arrangement of natural and synthetic network materials determines their applic...
Similar to biological macromolecules such as DNA and proteins, the precise control over the monomer ...
The efficiency of cooperative catalysts is dependent on the probabilities of chance encounter betwee...
Millions of years of biological evolution have driven the development of highly sophisticated molecu...
Complex (supra)molecular systems are ubiquitous in living organisms as well as in synthetic context ...
Thesis (Ph.D.)--University of Washington, 2017-06Previously, general principles relating secondary s...
The study of proteins and their function is key to understanding how the cell works in normal and di...
The beneficial use of computer simulations to track the microstructuralevolution of individual speci...
Proteins and enzymes are large and complex biological molecules, characterized by unique three-dimen...
All key chemical transformations in biology are catalysed by linear oligomers. Catalytic properties ...
The control over comonomer sequences is barely studied in macromolecular science nowadays. This is a...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
Cellular processes often depend on interactions between proteins and the formation of macromolecular...
In contrast to biomacromolecules, synthetic polymers generally lack a defined monomer sequence, ther...
Confinement and cooperativity are important design principles used by Nature to optimize catalytic a...
The three-dimensional arrangement of natural and synthetic network materials determines their applic...