Engineering Ultrafast Photo-Induced Charge and Carbon Intermediates Transfer at Interface to Break the Activity-Selectivity Trade-Off in Direct Conversion of Methane to Methanol (Adv. Energy Mater. 6/2025)
Yuehan Cao, Wang Yu, Yi Li, Jie Meng, Kaibo Zheng, Chuan Huang, Xin Yang, Yuantao Yang, Fan Dong, Ying Zhou
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引用次数: 0
Abstract
Methane Conversion
In article number 2404871, Ying Zhou and co-workers introduce a breakthrough in photocatalytic methane-to-methanol conversion using BiOI/BN heterojunction nanosheets, employing interface engineering to enhance ultrafast charge transfer and stabilize the backtracking of intermediate to produce methanol. This achieves 15.5% methane conversion and 86.4% methanol selectivity under ambient conditions for 24 hours.
期刊介绍:
Established in 2011, Advanced Energy Materials is an international, interdisciplinary, English-language journal that focuses on materials used in energy harvesting, conversion, and storage. It is regarded as a top-quality journal alongside Advanced Materials, Advanced Functional Materials, and Small.
With a 2022 Impact Factor of 27.8, Advanced Energy Materials is considered a prime source for the best energy-related research. The journal covers a wide range of topics in energy-related research, including organic and inorganic photovoltaics, batteries and supercapacitors, fuel cells, hydrogen generation and storage, thermoelectrics, water splitting and photocatalysis, solar fuels and thermosolar power, magnetocalorics, and piezoelectronics.
The readership of Advanced Energy Materials includes materials scientists, chemists, physicists, and engineers in both academia and industry. The journal is indexed in various databases and collections, such as Advanced Technologies & Aerospace Database, FIZ Karlsruhe, INSPEC (IET), Science Citation Index Expanded, Technology Collection, and Web of Science, among others.