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A force awakens: exploiting solar energy beyond photosynthesis

机译:一种力量唤醒:在光合作用之外开发太阳能

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摘要

In recent years, efforts to exploit sunlight, a free and abundant energy source, have sped up dramatically. Oxygenic photosynthetic organisms, such as higher plants, algae, and cyanobacteria, can convert solar energy into chemical energy very efficiently using water as an electron donor. By providing organic building blocks for life in this way, photosynthesis is undoubtedly one of the most important processes on Earth. The aim of light-driven catalysis is to harness solar energy, in the form of reducing power, to drive enzymatic reactions requiring electrons for their catalytic cycle. Light-driven enzymes have been shown to have a large number of biotechnological applications, ranging from the production of high-value secondary metabolites to the development of green chemistry processes. Here, we highlight recent key developments in the field of light-driven catalysis using biological components. We will also discuss strategies to design and optimize light-driven systems in order to develop the next generation of sustainable solutions in biotechnology.
机译:近年来,开发利用阳光这一自由和丰富的能源的努力已大大加快。含氧的光合生物,例如高等植物,藻类和蓝细菌,可以使用水作为电子供体,非常有效地将太阳能转化为化学能。通过以这种方式为生命提供有机组成部分,光合作用无疑是地球上最重要的过程之一。光驱动催化的目的是利用降低功率形式的太阳能来驱动需要电子进行催化循环的酶促反应。光驱动酶已被证明具有大量的生物技术应用,从高价值的次级代谢产物的产生到绿色化学过程的发展。在这里,我们重点介绍了使用生物成分的光驱动催化领域的最新关键发展。我们还将讨论设计和优化光驱动系统的策略,以便开发生物技术的下一代可持续解决方案。

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