Oligoethylene Glycol Side Chains Increase Charge Generation in Organic Semiconductor Nanoparticles for Enhanced Photocatalytic Hydrogen Evolution

  • Kosco, Jan; 
  • Gonzalez-Carrero, Soranyel; 
  • Howells, Calvyn T.; 
  • Zhang, Weimin; 
  • Moser, Maximilian; 
  • ... Cha, Hyojung; 
  • 외 12명
Citations

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91
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85

초록

Organic semiconductor nanoparticles (NPs) composed of an electron donor/acceptor (D/A) semiconductor blend have recently emerged as an efficient class of hydrogen-evolution photocatalysts. It is demonstrated that using conjugated polymers functionalized with (oligo)ethylene glycol side chains in NP photocatalysts can greatly enhance their H-2-evolution efficiency compared to their nonglycolated analogues. The strategy is broadly applicable to a range of structurally diverse conjugated polymers. Transient spectroscopic studies show that glycolation facilitates charge generation even in the absence of a D/A heterojunction, and further suppresses both geminate and nongeminate charge recombination in D/A NPs. This results in a high yield of photogenerated charges with lifetimes long enough to efficiently drive ascorbic acid oxidation, which is correlated with greatly enhanced H-2-evolution rates in the glycolated NPs. Glycolation increases the relative permittivity of the semiconductors and facilitates water uptake. Together, these effects may increase the high-frequency relative permittivity inside the NPs sufficiently, to cause the observed suppression of exciton and charge recombination responsible for the high photocatalytic activities of the glycolated NPs.

키워드

hydrogen; nanoparticles; organic semiconductors; photocatalysts; solar fuels; POLYMER PHOTOCATALYSTS; DIELECTRIC-CONSTANT; CONJUGATED POLYMERS; WATER; EFFICIENT; MOBILITY; ENERGY; TIO2
제목
Oligoethylene Glycol Side Chains Increase Charge Generation in Organic Semiconductor Nanoparticles for Enhanced Photocatalytic Hydrogen Evolution
저자
Kosco, Jan; Gonzalez-Carrero, Soranyel; Howells, Calvyn T.; Zhang, Weimin; Moser, Maximilian; Sheelamanthula, Rajendar; Zhao, Lingyun; Willner, Benjamin; Hidalgo, Tania C.; Faber, Hendrik; Purushothaman, Balaji; Sachs, Michael; Cha, Hyojung; Sougrat, Rachid; Anthopoulos, Thomas D.; Inal, Sahika; Durrant, James R.; McCulloch, Iain
DOI
10.1002/adma.202105007
발행일
2022-06
유형
Article
저널명
Advanced Materials
권
34
호
22