A1 publication
Journal title
Chemical Science
Journal title year
2021
Impact factor and ranking
9.969
Journal ranking
25/179 [Q1]
Publication date
March 2021
Volume, issue & page range or art. n
12, (15), Pages 5682 - 5687.
Year
2021
Abstract
Mercury porosimetry and in situ high pressure single crystal X-ray diffraction revealed the wine-rack CUK-1 MOF as a unique crystalline material capable of a fully reversible mechanical pressure-triggered structural contraction. The near-absence of hysteresis upon cycling exhibited by this robust MOF, akin to an ideal molecular spring, is associated with a constant work energy storage capacity of 40 J/gr. Molecular simulations were further deployed to uncover the free-energy landscape behind this unprecedented pressure-responsive phenomenon in the area of compliant hybrid porous materials. This discovery is of utmost importance from the perspective of instant energy storage and delivery.
Software
QuickFF
Research line
Model development
Nanoporous materials - physics
Biblio
Biblio Link to UGent repository