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Latest Review Papers in Physical Chemistry and Chemical Physics 2024

A special issue of International Journal of Molecular Sciences (ISSN 1422-0067). This special issue belongs to the section "Physical Chemistry and Chemical Physics".

Deadline for manuscript submissions: 20 October 2025 | Viewed by 969

Special Issue Editor

Special Issue Information

Dear Colleagues,

This Special Issue aims to collect high-quality review papers in all the fields of Physical Chemistry and Chemical Physics. We encourage researchers from related fields to contribute review papers highlighting the latest developments in Physical Chemistry and Chemical Physics, or to invite relevant experts and colleagues to do so. Full-length comprehensive reviews will be preferred.

Dr. Victor Borovkov
Guest Editor

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Keywords

  • heterogeneous structures
  • alignment and surface phenomena
  • quantum theory
  • statistical and classical mechanics
  • molecular structure
  • chemical kinetics
  • dynamics
  • kinetics
  • photochemistry
  • spectroscopy

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Published Papers (1 paper)

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Review

27 pages, 8371 KiB  
Review
Electrochromic Efficiency in AxB(1−x)Oy-Type Mixed Metal Oxide Alloys
by Zoltán Lábadi, Noor Taha Ismaeel, Péter Petrik and Miklós Fried
Int. J. Mol. Sci. 2025, 26(8), 3547; https://doi.org/10.3390/ijms26083547 - 10 Apr 2025
Viewed by 252
Abstract
Electrochromic materials have a wide range of energy-effective applications, such as in mirrors, smart windows, automobile sunroofs, and display devices. The electrochromic behavior of mixed metal oxides is focused on in this review. Extra heat absorbed by buildings is one of the major [...] Read more.
Electrochromic materials have a wide range of energy-effective applications, such as in mirrors, smart windows, automobile sunroofs, and display devices. The electrochromic behavior of mixed metal oxides is focused on in this review. Extra heat absorbed by buildings is one of the major problems in our modern era, so electrochromic films have been used as components of smart windows to reduce heat absorption through glass windows. Transition metal (W, V, Ti, Mo, and Ni) oxides are considered popular electrochromic materials for this purpose. Smart windows consist of electrochromic material layers (such as metal oxide layers) and solid electrolytes sandwiched between transparent conductive layers. Few publications have studied the use of mixtures of different metal oxides as electrochromic materials. This study focuses on the results of investigations of such multicomponent materials, such as the effects on the electrochromic properties of mixed metal oxides and how they contrast with pure metal oxides. Reviewing these papers, we found WO3- and MoO3-based mixtures to be the most promising, especially the magnetron-sputtered, amorphous WO3(40%)–MoO3(60%) composition, which had 200–300 cm2/C coloration efficiency. The mixed oxide materials reported in this review have room for development (and even commercialization) in the oxide-based electrochromic device market. Full article
(This article belongs to the Special Issue Latest Review Papers in Physical Chemistry and Chemical Physics 2024)
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