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Electronic Structure Modulation of Metal–Organic Frameworks for Hybrid Devices
Author(s) -
Keith T. Butler,
Christopher H. Hendon,
Aron Walsh
Publication year - 2014
Publication title -
acs applied materials and interfaces
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.535
H-Index - 228
eISSN - 1944-8252
pISSN - 1944-8244
DOI - 10.1021/am507016r
Subject(s) - materials science , modulation (music) , metal organic framework , nanotechnology , metal , electronic structure , electronics , engineering physics , optoelectronics , electrical engineering , organic chemistry , metallurgy , adsorption , computational chemistry , chemistry , engineering , philosophy , aesthetics
The study of metal-organic frameworks has largely been motivated by their structural and chemical diversity; however, these materials also possess rich physics, including optical, electronic, and magnetic activity. If these materials are to be employed in devices, it is necessary to develop an understanding of their solid-state behavior. We report an approach to calculate the effect of strain on the band structure of porous frameworks. The origin of the bidirectional absolute deformation potentials can be described from perturbations of the organic and inorganic building blocks. The unified approach allows us to propose several uses for hybrid materials, beyond their traditionally posited applications, including gas sensing, photoelectrochemistry, and as hybrid transistors.

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