LYH

研究员(自然科学)

Supervisor of Doctorate Candidates

Supervisor of Master's Candidates

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茶园校区钧智楼B210

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Paper Publications

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Structural engineering strategies of advanced aluminum-based photocatalysts for sustainable energy and environmental applications

Release time:2026-05-29
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Impact Factor:
13.1
DOI number:
10.1021/acscatal.5c08919
Affiliation of Author(s):
美国化学会
Journal:
ACS Catalysis
Place of Publication:
美国华盛顿特区
Key Words:
Aluminum-based Photocatalysts; Nano Structures; Synthetic Methods; Catalytic Mechanisms; Energy and Environmental Applications
Abstract:
Aluminum-based photocatalysts offer a platform for clean energy conversion and environmental remediation due to their tunable surface chemistry, high surface area, and earth abundance. Their localized surface plasmon resonance effect extends light absorption across the UV-IR region, promoting charge separation and improving photocatalytic performance. The structural diversity of aluminum-based materials, including layered hydroxides, mesoporous and hierarchical architectures, and composite oxides, enables versatile performance optimization. This review highlights recent progress in synthesis, structural modulation, and applications in hydrogen evolution, CO2 reduction, nitrogen fixation, and pollutant degradation. Key strategies such as morphology control, defect and dopant engineering, heterojunction construction, and plasmonic enhancement are summarized to address issues of surface oxidation and the size-dependent spectral response. Finally, perspectives on future challenges and opportunities are discussed toward developing aluminum-based photocatalytic systems with improved efficiency and multifunctionality.
First Author:
张祎
Co-author:
DF,段有雨
Indexed by:
SCI
Correspondence Author:
LYH
Document Type:
Journal Article
Volume:
16
Issue:
5
Page Number:
4193-4231
ISSN No.:
2155-5435
Translation or Not:
no
Date of Publication:
2026-02-04
Included Journals:
SCI