催化作用
碳纤维
环境科学
温室气体
可持续能源
二氧化碳
化学能
全球变暖
碳循环
具有碳捕获和储存功能的生物能源
废物管理
反应堆设计
环境化学
碳中和
清洁能源
空气污染
环境污染
二氧化碳电化学还原
污染
减缓气候变化
气候变化
化学工业
生产(经济)
碳中性燃料
碳捕获和储存(时间表)
环境保护
材料科学
比例(比率)
碳化合物
高效能源利用
工艺工程
生化工程
合理设计
负二氧化碳排放
纳米技术
化学工程
碳足迹
碳纳米管负载催化剂
能源
化学
作者
Zhenhai Xia,Huanyu Jin,Yao Zheng,Yan Jiao,Shi-Zhang Qiao,Denny Gunawan,Rahman Daiyan,Rose Amal,Tom Lawson,Liming Dai
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2025-11-19
卷期号:11 (47)
标识
DOI:10.1126/sciadv.ady9164
摘要
For millions of years, Earth’s carbon cycle remained stable, but anthropogenic emissions drive severe air pollution and climate change. Addressing this crisis necessitates innovative decarbonization strategies, where carbon catalysts emerge as an innovative solution, replacing critical minerals for zero-carbon emissions. These catalysts can be synthesized from carbon dioxide and used to convert feedstocks into valuable chemicals and fuels, reducing energy demands and emissions while promoting clean energy and green chemical production. In this review, we explore the catalytic mechanisms at the atomic scale by examining the origins and design principles of carbon catalysts for carbon dioxide conversion. A framework is proposed for the rational design of the active sites for carbon-carbon and carbon-nitrogen couplings, facilitating the production of high-value multicarbon (C 2+ ) hydrocarbons and nitrogen-containing chemicals. The potential of these catalysts to transform the energy and chemical industries is highlighted together with key challenges and further directions in carbon science toward sustainable solutions.
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