光催化
背景(考古学)
能量载体
制氢
太阳能
化石燃料
氢
化学能
生化工程
有机合成
工艺工程
材料科学
纳米技术
化学
催化作用
有机化学
工程类
古生物学
电气工程
生物
作者
Miriam Marchi,Michele Melchionna,Paolo Fornasiero
标识
DOI:10.1002/9783527835423.ch8
摘要
A switch from a fossil-based energy sector to sustainable energy sources has become one of the pressing requirements of modern society. In this context, the role of molecular hydrogen (H 2 ) as a green energy carrier has gained a central role in the energy transition. The exploitation of pure visible light for hydrogen production, in which solar energy is converted into chemical energy by means of a photocatalyst and an appropriate hydrogen source, represents an appealing way to produce this valuable energy vector. Moreover, photocatalytic H 2 evolution reactions can be coupled with a wide range of selective organic transformations, such as oxidation of alcohols and coupling reactions, in order to achieve dual functionality, simultaneously yielding clean H 2 and value-added chemicals. Cooperative organic synthesis and H 2 production represent an attractive and growing branch of photocatalysis in the last decade, but many efforts still need to be invested in. A considerate choice and effective optimization of suitable heterogeneous photocatalysts for these dual-functional processes are of crucial importance to overcome low efficiencies and identify cost-effective industrial applications.
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