Empowering Green Energy Storage Systems with MXene for a Sustainable Future DOI
MA Zaed, Norulsamani Abdullah, K.H. Tan

et al.

The Chemical Record, Journal Year: 2024, Volume and Issue: unknown

Published: Sept. 24, 2024

Abstract Green energy storage systems play a vital role in enabling sustainable future by facilitating the efficient integration and utilization of renewable sources. The main problems related to two‐dimensional (2D) materials are their difficult synthesis process, high cost, bulk production, which hamper performance. In recent years, MXenes have emerged as highly promising for enhancing performance devices due unique properties, including surface area, excellent electrical thermal conductivity, exceptional chemical stability. This paper presents comprehensive scientific approach that explores potential empowering green systems. Which indicates novelty article. reviews latest advances MXene techniques. Furthermore, investigates application various technologies, such lithium‐ion batteries, supercapacitors, emerging devices. electrodes flexible transparent is also discussed. Moreover, highlights addressing key challenges storage, capacity, improving cycling stability, promoting fast charging discharging rates. Additionally, industrial cost estimation explored. As output work, we analyzed HF modified acid (LiF HCl) established methods synthesis. Due showing extraordinary results applications. Making composite hydrothermal method one methods. underscores significant contributions advancing systems, paving way driven To facilitate research, this article includes technical recommendations further research gaps topic.

Language: Английский

Electronic and vacancy engineering of ruthenium doped hollow-structured NiO/Co3O4 nanoreactors for low-barrier electrochemical urea-assisted energy-saving hydrogen production DOI
Jiaxin Li, Yan Lv, Xueyan Wu

et al.

Journal of Colloid and Interface Science, Journal Year: 2024, Volume and Issue: 683, P. 600 - 611

Published: Dec. 28, 2024

Language: Английский

Citations

3

Synthesis of a novel highly active single-atom nanozyme Cu-N-C with high surface area as a laccase-mimicking catalyst for the efficient catalytic aerobic oxidative synthesis of pyridines and quinazolinones at room temperature DOI

Hamzeh Veisi,

Amin Rostami

Applied Surface Science Advances, Journal Year: 2025, Volume and Issue: 27, P. 100758 - 100758

Published: May 5, 2025

Language: Английский

Citations

0

Heteroatom Doping Promoting CoP for Driving Water Splitting DOI
Wenjing Cheng, Huimin Yang, Tingjian Wang

et al.

The Chemical Record, Journal Year: 2023, Volume and Issue: 24(1)

Published: April 26, 2023

Abstract CoP nanomaterials have been extensively regarded as one of the most promising electrocatalysts for overall water splitting due to their unique bifunctionality. Although great promise future applications, some important issues should also be addressed. Heteroatom doping has widely acknowledged a potential strategy improving electrocatalytic performance and narrowing gap between experimental study industrial applications. Recent years witnessed rapid development heteroatom‐doped splitting. Aiming provide guidance more effective CoP‐based electrocatalysts, we herein organize comprehensive review this interesting field, with special focus on effects heteroatom catalytic CoP. Additionally, many are discussed, structure‐activity relationship is manifested. Finally, systematic conclusion outlook well organized direction field.

Language: Английский

Citations

8

Modification of carbon nanofibers for boosting oxygen electrocatalysis DOI
Changming Ding, Yitao Zhao,

Zhiyong Qiao

et al.

Physical Chemistry Chemical Physics, Journal Year: 2024, Volume and Issue: 26(18), P. 13606 - 13621

Published: Jan. 1, 2024

A comprehensive review of the recent progress in modification carbon fibers for boosting oxygen electrocatalysis is summarized.

Language: Английский

Citations

2

Empowering Green Energy Storage Systems with MXene for a Sustainable Future DOI
MA Zaed, Norulsamani Abdullah, K.H. Tan

et al.

The Chemical Record, Journal Year: 2024, Volume and Issue: unknown

Published: Sept. 24, 2024

Abstract Green energy storage systems play a vital role in enabling sustainable future by facilitating the efficient integration and utilization of renewable sources. The main problems related to two‐dimensional (2D) materials are their difficult synthesis process, high cost, bulk production, which hamper performance. In recent years, MXenes have emerged as highly promising for enhancing performance devices due unique properties, including surface area, excellent electrical thermal conductivity, exceptional chemical stability. This paper presents comprehensive scientific approach that explores potential empowering green systems. Which indicates novelty article. reviews latest advances MXene techniques. Furthermore, investigates application various technologies, such lithium‐ion batteries, supercapacitors, emerging devices. electrodes flexible transparent is also discussed. Moreover, highlights addressing key challenges storage, capacity, improving cycling stability, promoting fast charging discharging rates. Additionally, industrial cost estimation explored. As output work, we analyzed HF modified acid (LiF HCl) established methods synthesis. Due showing extraordinary results applications. Making composite hydrothermal method one methods. underscores significant contributions advancing systems, paving way driven To facilitate research, this article includes technical recommendations further research gaps topic.

Language: Английский

Citations

2