Acoustic Shock-Wave-Induced Crystallographically Order-Disorder Switchable Phase Transition of Ammonium Sulfate Crystal: X-Ray Diffraction and Raman Spectroscopic Approach

Sivakumar Aswathappa,Eniya Palaniyasan, Sahaya Jude Dhas Sathiyadhas,Lidong Dai, Raju Suresh Kumar,Abdulrahman I. Almansour, Kalyana Sundar Jeyaperumal,Martin Britto Dhas Sathiyadhas Amalapushpam

PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS(2024)

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摘要
In this framework, the authors have intended to examine the phase-transition probability of ammonium sulfate (NH4)2SO4 under dynamic shock loaded conditions, whereby it is authenticated from the observations that the title crystal undergoes the process of reversible phase transition of crystallographic nature. The observed phase-transition sequence is Pnam (crystalline) -> Pnam (crystalline) -> distorted Pnam (semicrystalline) -> Pnam (crystalline) -> Pnam (crystalline) under the exposure of 0, 1, 2, 3, and 4 shocks, respectively, such that the order of the transition is evaluated by diffraction and spectroscopic techniques. The obtained differential scanning calorimetry and thermogravimetric analysis results provide the crystalline-state ammonium sulfate which has higher thermal stability than that of the disordered-state ammonium sulfate. Analyzing the acquired results of the analytical experiments, the authentication can be arrived at such that the phase transition of reversible nature is enforced by the molecular distortions followed by the occurrence of rotational disorder involving ammonium and sulfate groups of ions influenced by the impulsion of shock waves thereby the title crystal can be a potential material for molecular switching applications. Herein, the reversible phase transition of ordered to disordered state of ammonium sulfate (NH4)2SO4 single crystal under dynamic shock loaded conditions with respect to number of shock pulses is reported and the results are evaluated by X-Ray diffraction and Raman spectroscopic results.image (c) 2024 WILEY-VCH GmbH
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关键词
ammonium sulfates,molecular distortions,shock waves,switchable phase transitions
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