期刊文献+

Exciton dissociation dynamics and light-driven H2 generation in colloidal 2D cadmium chalcogenide nanoplatelet heterostructures 被引量:2

Exciton dissociation dynamics and light-driven H2 generation in colloidal 2D cadmium chalcogenide nanoplatelet heterostructures
原文传递
导出
摘要 Solar-to-H2 conversion is attracting much research attention as a potential approach to meet global renewable energy demands. Although significant advances have been made using metal-tipped colloidal cadmium chalcogenide zero-dimensional (0D) quantum dots and one-dimensional (1D) nanorod heterostructures in solar-to-H2 conversion, their efficiency may be further enhanced using an emerging class of colloidal cadmium chalcogenide nanocrystals, namely two-dimensional (2D) nanoplatelets (NPLs), because of their unique properties. In this review, we summarize the recent advances on exciton dissociation dynamics and light-driven H2 generation performance of colloidal nanoplatelet heterostructures. Following an introduction on the electronic structure of 2D NPLs, we discuss the dynamics of exciton dissociation by electron transfer to molecular acceptors. The exciton quenching dynamics of CdS NPL-Pt and CdSe NPL-Pt heterostructures are compared to highlight the effect of material properties on the relative contributions of the energy-transfer and electron- transfer pathways. Representative solar-to-H2 conversion performances of 2D NPL-metal heterostructures are discussed and compared with those of 1D nanorod-metal heterostructures. Finally, we discuss the challenges in further improving the solar-to-fuel conversion efficiencies of these systems. Solar-to-H2 conversion is attracting much research attention as a potential approach to meet global renewable energy demands. Although significant advances have been made using metal-tipped colloidal cadmium chalcogenide zero-dimensional (0D) quantum dots and one-dimensional (1D) nanorod heterostructures in solar-to-H2 conversion, their efficiency may be further enhanced using an emerging class of colloidal cadmium chalcogenide nanocrystals, namely two-dimensional (2D) nanoplatelets (NPLs), because of their unique properties. In this review, we summarize the recent advances on exciton dissociation dynamics and light-driven H2 generation performance of colloidal nanoplatelet heterostructures. Following an introduction on the electronic structure of 2D NPLs, we discuss the dynamics of exciton dissociation by electron transfer to molecular acceptors. The exciton quenching dynamics of CdS NPL-Pt and CdSe NPL-Pt heterostructures are compared to highlight the effect of material properties on the relative contributions of the energy-transfer and electron- transfer pathways. Representative solar-to-H2 conversion performances of 2D NPL-metal heterostructures are discussed and compared with those of 1D nanorod-metal heterostructures. Finally, we discuss the challenges in further improving the solar-to-fuel conversion efficiencies of these systems.
出处 《Nano Research》 SCIE EI CAS CSCD 2018年第6期3031-3049,共19页 纳米研究(英文版)
关键词 colloidal nanoplatelets semiconductor-metal heterostructures exciton dissociation electron transfer hydrogen generation colloidal nanoplatelets semiconductor-metal heterostructures exciton dissociation electron transfer hydrogen generation
  • 相关文献

参考文献1

二级参考文献10

  • 1Sun BQ,Marx E,Greenham NC.Photovoltaic devices using blends of branched Cdse nanoparticles and conjugated polymers[].Nano Letters.2003
  • 2Sun BQ,Zou GF,Shen XJ,Zhang XH.Exciton dissociation and photovoltaic effect in germanium nanocrystals and poly (3- hexylthiophene) composites[].Applied Physics Letters.2003
  • 3Kamat PV,Tvrdy K,Baker DR,Radich JG.Beyond photovoltaics: Semiconductor nanoarchitectures for liquid-junction solar cells[].Chemical Reviews.2010
  • 4Kamat P.Quantum dot solar cells. Semiconductor nanocrystals as light harvesters[].J Phys Chem C.2008
  • 5Tisdale WA,Williams KJ,Timp BA,Norris DJ,Aydil ES,Zhu X-Y.Hot-electron transfer from semiconductor nanocrystals[].Science.2010
  • 6Sambur JB,Novet T,Parkinson BA.Multiple exciton collection in a sensitized photovoltaic system[].Science.2010
  • 7Tachibana Y,Akiyama HY,Ohtsuka Y,Torimoto T,Kuwabata S.Cds quantum dots sensitized TiO2 sandwich type photoelectro- chemical solar cells[].Chemistry Letters.2007
  • 8Huang J,Huang Z,Yang Y,Zhu H,Lian T.Multiple exciton dissociation in Cdse quantum dots by ultrafast electron transfer to adsorbed methylene blue[].Journal of the American Chemical Society.2010
  • 9Pattantyus-Abraham AG,Kramer IJ,Barkhouse A R,Wang X,Konstantatos G,Debnath R,Levina L,Raabe I,Nazeeruddin MK,Gratzel M.Depleted-heterojunction colloidal quantum dot solar cells[].ACS Nano.2010
  • 10Plass R,Pelet S,Krueger J,Gratzel M,Bach U.Quantum dot sensitization of organic-inorganic hybrid solar cells[].Journal of Physical Chemistry B.2002

同被引文献29

引证文献2

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部