Affiliation:
1. Department of Chemistry and Biochemistry University of South Carolina Columbia SC 29208 USA
2. Savannah River National Laboratory Aiken SC 29808 USA
3. Chair of Inorganic and Metal-Organic Chemistry Department of Chemistry Technical University of Munich Lichtenbergstrasse 4 85748 Garching Germany
Abstract
AbstractCooperative behavior and orthogonal responses of two classes of coordinatively integrated photochromic molecules towards distinct external stimuli were demonstrated on the first example of a photo‐thermo‐responsive hierarchical platform. Synergetic and orthogonal responses to temperature and excitation wavelength are achieved by confining the stimuli‐responsive moieties within a metal–organic framework (MOF), leading to the preparation of a novel photo‐thermo‐responsive spiropyran‐diarylethene based material. Synergistic behavior of two photoswitches enables the study of stimuli‐responsive resonance energy transfer as well as control of the photoinduced charge transfer processes, milestones required to advance optoelectronics development. Spectroscopic studies in combination with theoretical modeling revealed a nonlinear effect on the material electronic structure arising from the coordinative integration of photoresponsive molecules with distinct photoisomerization mechanisms. Thus, the reported work covers multivariable facets of not only fundamental aspects of photoswitch cooperativity, but also provides a pathway to modulate photophysics and electronics of multidimensional functional materials exhibiting thermo‐photochromism.
Funder
National Science Foundation
South Carolina EPSCoR
Camille and Henry Dreyfus Foundation
Subject
General Chemistry,Catalysis
Cited by
13 articles.
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