2018
DOI: 10.1039/c8ta07036a
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A bright outlook on organic photoelectrochemical cells for water splitting

Abstract: A review on organic photoelectrochemical water splitting cells giving perspective on promising device architectures and materials.

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Cited by 55 publications
(61 citation statements)
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References 107 publications
(110 reference statements)
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“…Due to the rapid progress in strongly absorbing FREAs with highly tunable E g opt , where FREAs with broad absorption in the NIR region could be suitable for rear sub‐cell while narrow absorption in the visible region could be for front sub‐cell. Moreover, high V OC from a series connected tandem OSCs could be applied in applications such as water splitting . Tandem OSCs parameters are summarized in Table 7 .…”
Section: Other Aspects Of Frea Oscsmentioning
confidence: 99%
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“…Due to the rapid progress in strongly absorbing FREAs with highly tunable E g opt , where FREAs with broad absorption in the NIR region could be suitable for rear sub‐cell while narrow absorption in the visible region could be for front sub‐cell. Moreover, high V OC from a series connected tandem OSCs could be applied in applications such as water splitting . Tandem OSCs parameters are summarized in Table 7 .…”
Section: Other Aspects Of Frea Oscsmentioning
confidence: 99%
“…Moreover, high V OC from a series connected tandem OSCs could be applied in applications such as water splitting. [267] Tandem OSCs parameters are summarized in Table 7.…”
Section: Tandem Oscsmentioning
confidence: 99%
“…With regard to photocurrent value, it is related to the efficiency of exciton separation, which depends on the exciton binding energy (EB). The lower the binding energy, the easier the separation of hole and electron 28 . The EB is inversely…”
Section: Photoelectrocatalytic Synthesis 221 General Characteristimentioning
confidence: 99%
“…But more commonly, a photoelectrode is a multi-layered system. Although it is possible that the semiconductor is effective as both an electrocatalyst (that is, works with low overpotential) and a photocurrent generator, usually the efficiency can be increased by splitting the light-harvesting and the redox processes to two different materials 28 . Thanks to this, the best available catalytic and PV systems can be combined together, utilizing their optimal properties for a given purpose.…”
Section: Comparison Of Photoelectrodes and Photovoltaic Cellsmentioning
confidence: 99%
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