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Advances and Recent Trends in Heterogeneous Photo(Electro)-Catalysis for Solar Fuels and Chemicals

机译:太阳能和化学品的非均相光(电)催化的研究进展和最新趋势

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In the context of a future renewable energy system based on hydrogen storage as energy-dense liquid alcohols co-synthesized from recycled CO2, this article reviews advances in photocatalysis and photoelectrocatalysis that exploit solar (photonic) primary energy in relevant endergonic processes, viz., H2 generation by water splitting, bio-oxygenate photoreforming, and artificial photosynthesis (CO2 reduction). Attainment of the efficiency (10%) mandated for viable techno-economics (USD 2.00–4.00 per kg H2) and implementation on a global scale hinges on the development of photo(electro)catalysts and co-catalysts composed of earth-abundant elements offering visible-light-driven charge separation and surface redox chemistry in high quantum yield, while retaining the chemical and photo-stability typical of titanium dioxide, a ubiquitous oxide semiconductor and performance “benchmark”. The dye-sensitized TiO2 solar cell and multi-junction Si are key “voltage-biasing” components in hybrid photovoltaic/photoelectrochemical (PV/PEC) devices that currently lead the field in performance. Prospects and limitations of visible-absorbing particulates, e.g., nanotextured crystalline α-Fe2O3, g-C3N4, and TiO2 sensitized by C/N-based dopants, multilayer composites, and plasmonic metals, are also considered. An interesting trend in water splitting is towards hydrogen peroxide as a solar fuel and value-added green reagent. Fundamental and technical hurdles impeding the advance towards pre-commercial solar fuels demonstration units are considered.
机译:在未来的可再生能源系统的背景下,该系统基于氢存储作为由回收的CO 2 共同合成的能量密集型液体醇,本文综述了利用太阳能(光子)一次能源的光催化和光电化学催化的进展。在相关的发光过程中,即通过水分解,生物加氧光重整和人工光合作用(CO 2 还原)生成H 2 。要达到可行的技术经济要求的效率(> 10%)(每公斤H 2 2.00–4.00美元)并在全球范围内实施,取决于光(电)催化剂和复合材料的发展。 -由富含地球元素的催化剂提供可见光驱动的电荷分离和表面氧化还原化学,具有高量子产率,同时保留了二氧化钛,无处不在的氧化物半导体和性能“基准”的典型化学和光稳定性。染料敏化的TiO 2 太阳能电池和多结Si是光伏/光电化学混合(PV / PEC)器件中目前处于性能领先地位的关键“偏压”组件。纳米结构的晶体α-Fe 2 O 3 ,gC 3 N 4 等可见光吸收颗粒的前景与局限性还考虑了C / N基掺杂剂,多层复合材料和等离激元金属敏化的sub>和TiO 2 。水分解的一个有趣趋势是将过氧化氢用作太阳能和增值绿色试剂。考虑了阻碍向商用前太阳能燃料示范装置发展的基本和技术障碍。

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