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首页> 外文期刊>Materials Chemistry Frontiers >A novel bifunctional A–D–A type small molecule for efficient organic solar cells
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A novel bifunctional A–D–A type small molecule for efficient organic solar cells

机译:一种新颖的双官能A-D-A小分子高效有机太阳能电池

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摘要

A novel A–D–A type small molecule named DTFBR was designed and synthesized, in which the fused rings of fluorene, benzothiadiazole and rhodamine were employed as the core donor, bridge acceptor and terminal acceptor unit respectively. DTFBR exhibited a broad absorption band covering the wavelength range from 350 nm to 700 nm and the HOMO and LUMO energy levels are -5.54 eV and -3.68 eV, respectively. Moreover, DTFBR showed bipolar carrier transport behavior, evidenced by the SCLC measurement, where the electron and hole mobilities are calculated to be 2.21 x 10~(-4) cm~2 V~(-1) s~(-1) and 8.95 x 10~(-5) cm~2 V~(-1) s~(-1), respectively. The appropriate energy levels and bipolar carrier transport properties make DTFBR a promising bifunctional photovoltaic material. It can function as the acceptor when it is paired with a poly(3- hexylthiophene) (P3HT) donor, yielding a power conversion efficiency (PCE) of 3.7%. When [6,6]-phenyl- C_(71)-butyric acid methyl ester (PC_(71)BM) was used as the acceptor, it can function well as a donor and the corresponding organic solar cells (OSCs) showed a PCE of 2.5% with a high open-circuit voltage (V_(oc)) of ~1.1 V. Our results shed new light on multifunctional photovoltaic material design and OSC application.
机译:一个新颖的小分子,名叫DTFBR A-D-A类型设计和合成,融合芴环,benzothiadiazole和若丹明被雇佣为核心的捐赠者,桥受体和终端受体单元分别。表现出广泛的吸收带覆盖波长范围从350纳米到700纳米-5.54 eV和HOMO和LUMO能级分别-3.68 eV。双载波传输行为,证明了这一点SCLC测量,电子和洞机动性计算是2.21 x 10 ~ (4)厘米~ 2 V ~(1) ~(1)和8.95 x 10 ~(5)厘米~ 2 V ~ (1)s ~(1),分别。水平和双载波传输特性使DTFBR承诺双官能光伏材料。搭配了一个聚(3 - hexylthiophene) (P3HT)捐赠者,产生一个电源转换效率(PCE)的3.7%。酸甲酯(PC_ (71) BM)是用作捐赠者和受体,它可以函数相应的有机太阳能电池(osc)显示PCE的2.5%高开路电压(V_ (oc)) ~ 1.1 V。设计和多功能光电材料OSC的应用程序。

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