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Mechanical Control of Relaxation Using Intact Cardiac Trabeculae
Published on: February 17, 2023
New limits of secondary β-relaxation
Satya N Tripathy1,2, Marzena Rams-Baron1,2, Zaneta Wojnarowska1,2
1Institute of Physics, University of Silesia, Uniwersytecka 4, 40-007 Katowice, Poland.
Abstract:
Glass is an ultraviscous liquid that ceases to flow on a laboratory timescale but continues to relax on a geological timescale. Quintessentially, it has become hopeless for humans to explore the equilibrium behavior of glass, although the technology of glass making witness a remarkable advance. In this work, we propose a novel thermodynamic path to prepare a high density amorphous state of matter (carvedilol dihydrogen phosphate) using high pressure. In addition, we provide the impeccable experimental evidence of heterogeneous nature of secondary β-relaxation and probe its properties to understand the various aspects of pressure densified glass, such as dynamics, packing and disorder. These features are expected to provide new horizons to glass preparation and functional response to pharmaceutical applications.
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