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Entropy of resilience: Formulism and validation using strained-induced surface wettability study on thin film alloys
Journal article   Peer reviewed

Entropy of resilience: Formulism and validation using strained-induced surface wettability study on thin film alloys

Ping Wu, Boon Teoh Tan, Jae-In Jeong, Ji-Hoon Yang, Shunnian Wu and Franklin Anariba
Journal of alloys and compounds, Vol.846, p.156357
15/12/2020

Abstract

Chemistry Chemistry, Physical Materials Science Materials Science, Multidisciplinary Metallurgy & Metallurgical Engineering Physical Sciences Science & Technology Technology
To circumvent the lack of interfacial tension data, we introduced a new material thermodynamics property termed as entropy of resilience S-R to promote the application of Young's equation. Derived from Helmholtz free energy analysis, this property relates to a specimen's reduction in entropy and heat formation process. Moreover, we demonstrate a non-linear entropy-strain relationship, and proposed entropy change can be characterized by tensile tests and water contact angle measurements. Hence, water contact angle change is established as a second-degree polynomial function of strain, validated by surface wetting measurement of intrinsically strained thin film NiTi. Accordingly, a similar to 60 degrees increase in water contact angle can be interpreted as an entropy reduction of 38.61 Jkg(-1)K(-1). This newly defined concept of entropy of resilience corresponds to a new paradigm shift wherein entropy is regarded as the predominate thermodynamic driver of surface wetting. (C) 2020 Elsevier B.V. All rights reserved.

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