Laboratory for Systems Chemistry

Prof. Gonen Ashkenasy Research Group

Signaling in Systems Chemistry

Programing Gold Nanoparticles Formation and Assembly Using a Dynamic Bistable Network

Indrajit Maity, Dharm Dev, Kingshuk Basu, Nathaniel Wagner, Gonen Ashkenasy

Living cells exploit bistable and oscillatory behaviors as memory mechanisms, facilitating the integration of transient stimuli into sustained molecular responses that control downstream functions. Synthetic bistable networks have also been studied as memory entities, but have rarely been utilized to control orthogonal functions in coupled dynamic systems. We herein present a new cascade pathway, for which we have exploited a well-characterized switchable peptide-based replicating network, operating far from equilibrium, that yields two alternative steady-state outputs, which in turn serve as the input signals for consecutive processes that regulate various features of Au nanoparticle shape and assembly. This study further sheds light on how bridging together the fields of systems chemistry and nanotechnology may open up new opportunities for the dynamically controlled design of functional materials.

Publication language English
Pages 4512-4517
Volume 60
Issue number 9
Publication status Published - 23.02.2021

Keywords

dynamic networks
molecular evolution
nanotechnology
nonequilibrium processes
supramolecular chemistry

ASJC Scopus subject areas

Catalysis
General Chemistry
Access to Document
10.1002/anie.202012837
Other files and links
Link to publication in Scopus