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OPTICALLY THIN LIGHT-ABSORBERS FOR INCREASING PHOTOCHEMICAL ENERGY-CONVERSION EFFICIENCIES

机译:用于增加光化学能转换效率的光学上薄的吸光剂

摘要

Photochemical energy conversion is more efficient when a single light-absorbing unit is split into multiple light-absorbing units (N) that are each 1/N as thick as the single light-absorbing unit and thus use the same amount of material as the single light-absorbing unit. For electrocatalytic parameters relevant to water electrolysis, the maximum efficiency for solar-to-fuel conversion from a 1.75 eV bandgap material increases from approximately 1% for a single light-absorbing unit to greater than 20% for 128 identical stacked light-absorbing units. Alterations in utilization of photons results in a better match of the light-absorber power output to the load of the chemical transformation and in the case of high-quality light-absorbers there is an added benefit from radiative coupling between the light-absorbing units via photon recycling.
机译:当将单个吸光单元拆分为多个吸光单元(N)时,光化学能转换效率更高,每个吸光单元的厚度是单个吸光单元的1 / N,因此使用与单个吸光单元相同的材料量光吸收单元。对于与水电解有关的电催化参数,从1.75 eV带隙材料转换太阳能的最大效率从单个吸光单元的大约1%增加到128个相同堆叠的吸光单元的大于20%。光子利用的变化会导致光吸收器的输出功率与化学转化的负载更好地匹配,并且在使用高质量的光吸收器的情况下,光吸收单元之间的辐射耦合通过光子回收。

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