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"FOS: Chemical engineering"
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Properties enhancement of carboxymethyl cellulose with thermo-responsive polymer as solid polymer electrolyte for zinc ion battery
by
Pornnapa Kasemsiri
,
Hiroshi Uyama
,
Manunya Okhawilai
in
Aqueous Zinc-Ion Batteries
,
Aqueous Zinc-Ion Battery Technology
,
Carboxymethyl cellulose
2020
Journal Article
Sink property of metallic glass free surfaces
2015
When heated to a temperature close to glass transition temperature, metallic glasses (MGs) begin to crystallize. Under deformation or particle irradiation, crystallization occurs at even lower temperatures. Hence, phase instability represents an application limit for MGs. Here, we report that MG membranes of a few nanometers thickness exhibit properties different from their bulk MG counterparts. The study uses in situ transmission electron microscopy with concurrent heavy ion irradiation and annealing to observe crystallization behaviors of MGs. For relatively thick membranes, ion irradiations introduce excessive free volumes and thus induce nanocrystal formation at a temperature linearly decreasing with increasing ion fluences. For ultra-thin membranes, however, the critical temperature to initiate crystallization is about 100 K higher than the bulk glass transition temperature. Molecular dynamics simulations indicate that this effect is due to the sink property of the surfaces which can effectively remove excessive free volumes. These findings suggest that nanostructured MGs having a higher surface to volume ratio are expected to have higher crystallization resistance, which could pave new paths for materials applications in harsh environments requiring higher stabilities.
Journal Article
Reusability, Long‐Life Storage and Highly Sensitive Zirconium Nitride (ZrN) Surface‐Enhanced Raman Spectroscopy (SERS) Substrate Fabricated by Reactive Gas‐Timing Rf Magnetron Sputtering
by
Tossaporn Lertvanithphol
,
Nguentra Sucheewa
,
Saran Youngjan
in
Biochemistry, Genetics and Molecular Biology
,
Biomedical Applications of Spectroscopy Techniques
,
Biomedical Engineering
2023
Journal Article