Andrei Virgil, Reuillard Bertrand, Reisner Erwin
Christian Doppler Laboratory for Sustainable SynGas Chemistry, Department of Chemistry, University of Cambridge, Cambridge, UK.
Nat Mater. 2020 Feb;19(2):189-194. doi: 10.1038/s41563-019-0501-6. Epub 2019 Oct 21.
The photoelectrochemical (PEC) production of syngas from water and CO represents an attractive technology towards a circular carbon economy. However, the high overpotential, low selectivity and cost of commonly employed catalysts pose challenges for this sustainable energy-conversion process. Here we demonstrate highly tunable PEC syngas production by integrating a cobalt porphyrin catalyst immobilized on carbon nanotubes with triple-cation mixed halide perovskite and BiVO photoabsorbers. Empirical data analysis is used to clarify the optimal electrode selectivity at low catalyst loadings. The perovskite photocathodes maintain selective aqueous CO reduction for one day at light intensities as low as 0.1 sun, which provides pathways to maximize daylight utilization by operating even under low solar irradiance. Under 1 sun irradiation, the perovskite-BiVO PEC tandems sustain bias-free syngas production coupled to water oxidation for three days. The devices present solar-to-H and solar-to-CO conversion efficiencies of 0.06 and 0.02%, respectively, and are able to operate as standalone artificial leaves in neutral pH solution.
通过水和一氧化碳进行光电化学(PEC)合成气生产是实现循环碳经济的一项具有吸引力的技术。然而,常用催化剂的高过电位、低选择性和成本给这种可持续能源转换过程带来了挑战。在此,我们通过将固定在碳纳米管上的钴卟啉催化剂与三阳离子混合卤化物钙钛矿和BiVO光吸收剂相结合,展示了高度可调谐的PEC合成气生产。采用经验数据分析来阐明低催化剂负载量下的最佳电极选择性。钙钛矿光阴极在低至0.1太阳光照强度下可维持选择性的水溶液中一氧化碳还原一天,这为即使在低太阳辐照度下运行以最大限度地利用日光提供了途径。在1太阳光照下,钙钛矿 - BiVO PEC串联电池在无偏压的情况下维持合成气生产并耦合水氧化三天。这些装置的太阳能到氢气和太阳能到一氧化碳的转换效率分别为0.06%和0.02%,并且能够在中性pH溶液中作为独立的人工叶片运行。