2018 AIChE Annual Meeting
(581e) Bio-Inspired Dynamic Templates for Directing Multi-Scale Assembly of Polymer Semiconductors
Authors
We ascribe these non-ideal morphologies to the kinetic mismatch between slow polymer assembly and crystallization (minutes to hours) and high-speed coating (seconds) originating from the complex polymer conformational degree of freedom and weak intermolecular interactions. Substrate surface properties have profound impact on the conjugated polymer multiscale assembly and ensuing crystallization process. Inspired by biomineralization templates in living systems capable of surface reconfiguration, we introduced the concept of dynamic templating for directing crystallization-triggered multi-scale assembly of conjugated polymers. Strong polymer-substrate interactions arising from both templateâs chemistry and dynamics decrease the free energy barrier to polymer heterogeneous nucleation and expedite polymer crystallization addressing the disparity in time scales of polymer assembly and high-throughput coating. Resultantly, highly ordered highly crystalline polymer thin films over large area (>1cm2) was obtained not attainable by simply varying coating conditions and substrate surface chemistry. We developed robust solution processable gel dynamic templates that effectively enhance conjugated polymer crystallization and also induce exceptional charge carrier concentration in field effect transistors, making our generic methodology a potential candidate for commercialization of printed polymer semiconductor devices.