Unveiling the Mystery of Precision Catalysis: Dual‐Atom Catalysts Stealing the Spotlight DOI Open Access
Mengyang Zhang,

Xuchuan Cao,

Jie Dong

et al.

Small, Journal Year: 2024, Volume and Issue: unknown

Published: Dec. 26, 2024

In the era of atomic manufacturing, precise manipulation structures to engineer highly active catalytic sites has become a central focus in catalysis research. Dual-atom catalysts (DACs) have garnered significant attention for their superior activity, selectivity, and stability compared single-atom (SACs). However, comprehensive review that integrates geometric electronic factors influencing DAC performance remains limited. This systematically explores structure DAC, addressing key macroscopic parameters, such as spatial arrangements interatomic distances, well microscopic factors, including local coordination environments structures. Additionally, metal-support interactions (MSI) long-range (LSI) are comprehensively analyzed, which play pivotal yet underexplored role governing behavior. integration tailored functional groups is further discussed fine-tune properties, thereby optimizing intermediate adsorption, enhancing reaction kinetics, expanding multifunctionality various electrochemical environments. offers novel insights into rational design by elucidating intricate mechanisms underlying DACs' exceptional performance. Ultimately, DACs positioned critical players precision catalysis, highlighting potential drive breakthroughs across broad spectrum applications.

Language: Английский

When Electrocatalytic Nitrate Reduction Meets Copper-based Atomic Site Catalysts DOI
Xiaoqian Liu,

Tianyi Xiang,

Yuntao Liang

et al.

Journal of Materials Chemistry A, Journal Year: 2024, Volume and Issue: unknown

Published: Jan. 1, 2024

This manuscript comprehensively reviews the recent advancements in Cu-based atomic site catalysts NO 3 RR, following a sequential order with six sections: Introduction, Mechanism, SACs, SAAs, DACs, and Perspectives.

Language: Английский

Citations

3

Strategic facet engineering of bismuth‐based photocatalysts for the applications in solar‐to‐chemical conversion DOI Creative Commons

Joel Jie Foo,

Zi‐Jing Chiah,

Sue‐Faye Ng

et al.

InfoScience., Journal Year: 2024, Volume and Issue: unknown

Published: Oct. 5, 2024

Abstract Semiconductor photocatalysis is a promising tactic to simultaneously overcome global warming and the energy crisis as it can directly convert inexhaustible solar into clean fuels valuable chemicals, hence being employed in various applications. However, current performance of largely impeded by fast recombination photogenerated charge carriers insufficient light absorption. Among materials, bismuth‐based photocatalysts have stood out excellent candidates for efficient due their unique controllable crystal structures relatively narrow band gap. These features endow selective exposure active facets (facet engineering) wide absorption range, resulting tunable photocatalytic activity, selectivity, stability. Therefore, great potential use facet‐engineered applications (e.g., water splitting, CO 2 reduction, N fixation, H O production) achieve sustainable development. Herein, introduction provides overview this research, while synthesis, modification strategy, latest progress application were summarized highlighted review paper. Lastly, conclusion outlooks topic concluded give some insights direction focus future research.

Language: Английский

Citations

2

High-throughput Screening of Mechanically Interlocked Catenane Metal Complexes for Enhanced Electrocatalytic Activity DOI
Mohsen Tamtaji,

William A. Goddard,

Guanghao Chen

et al.

Journal of Materials Chemistry A, Journal Year: 2024, Volume and Issue: 12(48), P. 33948 - 33957

Published: Jan. 1, 2024

Metal complexes have been thoroughly studied for various electrochemical reactions.

Language: Английский

Citations

1

Plastic‐to‐Treasure: Innovative advances in photo/electro‐catalytic upcycling technologies for commodity chemicals and fuels DOI Creative Commons

Yu Xuan Leiu,

Kelvin O. Lim,

Zi‐Jing Chiah

et al.

EcoEnergy, Journal Year: 2024, Volume and Issue: unknown

Published: Nov. 27, 2024

Abstract Plastics are one of the greatest inventions 20 th century that bring convenience to mankind. Owing commercialization plastics, plastic pollution has become a petrifying environmental issue as demand for products overwhelms recycling rates. However, conventional methods (i.e., pyrolysis and gasification) require high pressure temperature treat waste plastic, resulting in ineluctably energy‐waste secondary pollution. On contrary, selective catalylic technologies provide green approach degrade plastics whilst also reforming them into value‐added chemicals fuels. In this review, innovative approaches, including photocatalysis, electrocatalysis, photoelectrocatalysis, have been comprehensively reviewed from perspective sustainable use resources. Distinctive emphasis is placed on highlighting merits each technology enlightening state‐of‐the‐art modification strategies strengthen pillars catalytic activities. The transformation with above techniques elaborated terms reaction conditions various substrates. With feasibility breakdown displayed study, insights challenges prospects upcycling underscored well facilitate society moving toward circular economy.

Language: Английский

Citations

0

Coupled metal atomic pairs for synergistic electrocatalytic CO2 reduction DOI
Xinyu Zhan,

Xinyi Fan,

Weixiang Li

et al.

Matter, Journal Year: 2024, Volume and Issue: 7(12), P. 4206 - 4232

Published: Dec. 1, 2024

Language: Английский

Citations

0

Unveiling the Mystery of Precision Catalysis: Dual‐Atom Catalysts Stealing the Spotlight DOI Open Access
Mengyang Zhang,

Xuchuan Cao,

Jie Dong

et al.

Small, Journal Year: 2024, Volume and Issue: unknown

Published: Dec. 26, 2024

In the era of atomic manufacturing, precise manipulation structures to engineer highly active catalytic sites has become a central focus in catalysis research. Dual-atom catalysts (DACs) have garnered significant attention for their superior activity, selectivity, and stability compared single-atom (SACs). However, comprehensive review that integrates geometric electronic factors influencing DAC performance remains limited. This systematically explores structure DAC, addressing key macroscopic parameters, such as spatial arrangements interatomic distances, well microscopic factors, including local coordination environments structures. Additionally, metal-support interactions (MSI) long-range (LSI) are comprehensively analyzed, which play pivotal yet underexplored role governing behavior. integration tailored functional groups is further discussed fine-tune properties, thereby optimizing intermediate adsorption, enhancing reaction kinetics, expanding multifunctionality various electrochemical environments. offers novel insights into rational design by elucidating intricate mechanisms underlying DACs' exceptional performance. Ultimately, DACs positioned critical players precision catalysis, highlighting potential drive breakthroughs across broad spectrum applications.

Language: Английский

Citations

0