
This break-through artificial photosynthesis system has four general components: (1) harvesting solar energy, (2) generating reducing equivalents, (3) reducing CO2 to biosynthetic intermediates, and (4) producing value-added chemicals.
在自然光合作用系统中,树叶捕获太阳能然后将二氧化碳与水合成生物质。在该人工光合系统中,纳米线捕获太阳能后将电子传递给细菌,细菌将二氧化碳与水合成所需要的产物。
原文检索:Chong Liu, Joseph J. Gallager, Kelsey K. Sakimoto et al, Nanowire–Bacteria Hybrids for Unassisted Solar Carbon Dioxide Fixation to Value-Added Chemicals. 2015. Nano Lett., Article ASAP.DOI:10.1021/acs.nanolett.5b01254
苏郁洁 编译自:http://newscenter.lbl.gov/2015/04/16/major-advance-in-artificial-photosynthesis/