Electrochromic Efficiency in AxB(1−x)Oy-Type Mixed Metal Oxide Alloys DOI Open Access

Z. Lábadi,

Noor Taha Ismaeel, P. Petrik

et al.

International Journal of Molecular Sciences, Journal Year: 2025, Volume and Issue: 26(8), P. 3547 - 3547

Published: April 10, 2025

Electrochromic materials have a wide range of energy-effective applications, such as in mirrors, smart windows, automobile sunroofs, and display devices. The electrochromic behavior mixed metal oxides is focused on this review. Extra heat absorbed by buildings one the major problems our modern era, so films been used components windows to reduce absorption through glass windows. Transition (W, V, Ti, Mo, Ni) are considered popular for purpose. Smart consist material layers (such oxide layers) solid electrolytes sandwiched between transparent conductive layers. Few publications studied use mixtures different materials. This study focuses results investigations multicomponent materials, effects properties how they contrast with pure oxides. Reviewing these papers, we found WO3- MoO3-based be most promising, especially magnetron-sputtered, amorphous WO3(40%)–MoO3(60%) composition, which had 200–300 cm2/C coloration efficiency. reported review room development (and even commercialization) oxide-based device market.

Language: Английский

Functional gel materials for next-generation electrochromic devices and applications DOI
Yuyang Wang,

Sun Xiao-yan,

Quanbing Liu

et al.

Chemical Society Reviews, Journal Year: 2025, Volume and Issue: unknown

Published: Jan. 1, 2025

This review underscores the essential role of gel materials in electrochromic technology, offering a comprehensive analysis gelation chemistry and valuable insights into practical deployment gel-based devices.

Language: Английский

Citations

0

Versatile, Adaptable, and Stretchable Electrochromic Energy Storage Systems DOI
Aliakbar Jafari, Ahmed Al‐Ostaz, Sasan Nouranian

et al.

Polymers for Advanced Technologies, Journal Year: 2025, Volume and Issue: 36(3)

Published: March 1, 2025

ABSTRACT Electrochromic energy storage devices (EESDs) have emerged as innovative technologies in and smart materials, generating considerable interest for numerous applications, such wearables, windows, color‐changing sunglasses. EESDs consist of two primary categories: electrochromic supercapacitors (ESCs) batteries (ECBs). These are particularly appreciated their multifunctional features, which allow them to alter color response different charge densities. The performance efficiency rely on three essential components: (I) the current collector or substrate (cc/substrate), serves conductive base device; (II) electrolyte, supports ion movement improves overall electrochemical performance; (III) materials (ECMs), responsible changes functions. Careful selection optimization these components crucial enhancing devices' efficiency, stability, lifespan. Advanced flexible stretchable shown significant potential. Their natural flexibility facilitates seamless incorporation into curved surfaces diverse shapes, making especially suitable wearable other cutting‐edge applications. However, this also brings challenges, including concerns related delamination, material dissociation, degradation over time. A thorough investigation is progressing conversion systems. Grasping vital creating sustainable solutions improving capabilities.

Language: Английский

Citations

0

Electrochromic Efficiency in AxB(1−x)Oy-Type Mixed Metal Oxide Alloys DOI Open Access

Z. Lábadi,

Noor Taha Ismaeel, P. Petrik

et al.

International Journal of Molecular Sciences, Journal Year: 2025, Volume and Issue: 26(8), P. 3547 - 3547

Published: April 10, 2025

Electrochromic materials have a wide range of energy-effective applications, such as in mirrors, smart windows, automobile sunroofs, and display devices. The electrochromic behavior mixed metal oxides is focused on this review. Extra heat absorbed by buildings one the major problems our modern era, so films been used components windows to reduce absorption through glass windows. Transition (W, V, Ti, Mo, Ni) are considered popular for purpose. Smart consist material layers (such oxide layers) solid electrolytes sandwiched between transparent conductive layers. Few publications studied use mixtures different materials. This study focuses results investigations multicomponent materials, effects properties how they contrast with pure oxides. Reviewing these papers, we found WO3- MoO3-based be most promising, especially magnetron-sputtered, amorphous WO3(40%)–MoO3(60%) composition, which had 200–300 cm2/C coloration efficiency. reported review room development (and even commercialization) oxide-based device market.

Language: Английский

Citations

0