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Inorganic Photochemistry and Solar Energy Harvesting: Current Developments and Challenges to Solar Fuel Production

机译:无机光化和太阳能收集:太阳能燃料生产的当前发展和挑战

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The large and continuous use of fossil fuels as a primary energy source has led to several environmental problems, such as the increase of the greenhouse effect. In order to minimize these problems, attention has been drawn to renewable energy production. Solar energy is an attractive candidate as renewable source due to its abundance and availability. For this, it is necessary to develop devices able to absorb sunlight and convert it into fuels or electricity in a economical, technical and sustainable way. The so-called artificial photosynthesis has called the attention of researchers due to the possibility of using solar photocatalysts in converting water and CO2 into fuels. This manuscript presents a review of the recent developments of hybrid systems based on molecular photocatalysts immobilized on semiconductor surfaces for solar fuel production through water oxidation and CO2 reduction and also discusses the current challenges for the potential application of these photocatalyst systems.
机译:大型和连续使用化石燃料作为主要能源导致了几个环境问题,例如温室效应的增加。为了最大限度地减少这些问题,已被引起可再生能源生产。由于其丰富和可用性,太阳能是一个有吸引力的候选来源作为可再生来源。为此,有必要开发能够吸收阳光的设备,并以经济,技术和可持续的方式将其转换为燃料或电力。由于在将水和二氧化碳转化为燃料中的可能性,所谓的人造光合作用导致研究人员的注意力引起了研究人员的注意。该手稿提出了基于固定在半导体表面上的分子光催化剂通过水氧化和二氧化碳减少的半导体表面固定在半导体表面上的分子光催化的综述,并探讨了这些光催化剂系统潜在应用的当前挑战。

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