修车大队一品楼qm论坛51一品茶楼论坛,栖凤楼品茶全国楼凤app软件 ,栖凤阁全国论坛入口,广州百花丛bhc论坛杭州百花坊妃子阁

oe1(光电查) - 科学论文

2 条数据
?? 中文(中国)
  • Semiconducting carbon nanotubes in photovoltaic blends: The case of pTB7:PC <sub/>60</sub> BM:(6,5) SWNT

    摘要: Blends of carbon nanotubes with conjugated polymer and fullerene derivatives are complex nanocomposite systems, which have recently attracted great research interest for their photovoltaic ability. Therefore, gaining a better understanding of the excitonic dynamics in such materials can be important to boost the efficiency of excitonic solar cells. Here, we studied the photophysics of a ternary system in which the polymer PTB7 and the fullerene derivative PCBM are integrated with (6,5) single walled carbon nanotubes. We highlight the contribution of SWNTs in the exciton dissociation and in the charge transfer process. These findings can be useful for the exploitation of these multi-component systems for organic photovoltaic and, in general, optoelectronic applications.

    关键词: excitonic dynamics,PCBM,photovoltaic blends,PTB7,SWNTs,carbon nanotubes

    更新于2025-10-22 19:40:53

  • Hole Transfer Promoted by a Viscosity Additive in an All-Polymer Photovoltaic Blend

    摘要: Viscosity modi?ers are widely applied to improve the mechanical compliance of organic optoelectronic devices. However, the e?ect of the viscosity additives on the charge dynamics remains poorly understood. Here, we report the observation of markedly di?erent e?ects of a high-viscosity polymeric additive on the electron- and hole-transfer dynamics in all-polymer organic photovoltaic blends. By using ultrafast transient absorption spectroscopy, we determine that hole transfer from charge-transfer excitations in the acceptor is markedly promoted while the electron transfer from local excitations in the donor remains nearly unchanged upon introduction of viscosity additives into the blends. We argue that the modi?cation of dielectric screening is the mechanism underlying the e?ect of the additive on the charge dynamics. This ?nding suggests a new strategy for designing high-performance ?exible organic photovoltaic devices by manipulating the dielectric environment.

    关键词: electron transfer,hole transfer,viscosity additives,dielectric screening,all-polymer photovoltaic blends

    更新于2025-09-19 17:13:59