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首页> 外文期刊>ACS applied materials & interfaces >Side-Chain Engineering of Benzodithiophene-Bridged Dimeric Porphyrin Donors for All-Small-Molecule Organic Solar Cells
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Side-Chain Engineering of Benzodithiophene-Bridged Dimeric Porphyrin Donors for All-Small-Molecule Organic Solar Cells

机译:全小分子有机太阳能电池的苯二碳尼桥桥桥桥二聚体供体的侧链工程

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Two new A-D-A small-molecule donors (C8T-BDTDP and C8ST-BDTDP) are prepared from benzodithiophene (BDT)-linked dimeric porphyrin (DP), which differ in side chains of BDT linkers with 4,8-bis[5-(2-ethylhexyl)thiophen-2-yl]benzo[1,2-b:4,5-b']dithiophene (C8T-BDT) for the former and 4,8-bis{5-[(2-ethylhexyl)thio]-2-thienyl}benzo[1,2-b: 4,5-b']-dithiophene (C8ST-BDT) for the latter. Both dimeric porphyrin donors show strongly UV-visible to near-infrared absorption. Compared to C8T-BDTDP, C8ST-BDTDP with an alkylthiothienyl-substituted BDT linker exhibits more intense absorption bands in the film and a lower highest occupied molecular orbital energy level. The blend film of the electron acceptor 6TIC with the respective dimeric porphyrin donor displays a broad photon response from 400 to 900 nm, unfortunately, with an absorption valley at ca. 600 nm. The device based on C8ST-BDTDP/6TIC demonstrates a promising power conversion efficiency (PCE) of 10.39% with a high short-circuit current density (J(SC)) of 19.53 mA cm(-2), whereas the device based on C8T-BDTDP/6TIC shows a slightly lower PCE of 8.73% with a J(SC) of 17.75 mA cm(-2). The better performance for C8ST-BDTDP/6TIC is mainly attributed to efficient charge dissociation and transportation because of the smooth surface morphology and highly ordered crystalline packing.
机译:两种新的ADA小分子供体(C8T-BDTDP和C8ST-BDTDP)由苯二苯甲烷(BDT) - 链接的二聚体卟啉(DP)制备,其在BDT接头的侧链中不同于4,8-BIS [5-(2 - 噻吩-2-基]苯并[1,2-B:4,5-B']用于前者的二苯丙胺烯(C8T-BDT)和4,8-双(2-乙基己基)硫虫] -2-噻吩基}苯并[1,2-B:4,5-B'] - 后者的二噻吩(C8ST-BDT)。二聚体卟啉供体均显示出近红外吸收的强烈紫外线。与C8T-BDTDP相比,具有烷基噻吩基取代的BDT接头的C8ST-BDTDP在膜中表现出更强烈的吸收带和较低的占用分子轨道能量水平。具有相应的二聚体卟啉供体的电子受体6TIC的混合膜显示出400至900nm的宽光子响应,不幸的是,在CA的吸收谷有吸收谷。 600纳米。基于C8ST-BDTDP / 6TIC的设备演示了10.39%的有希望的功率转换效率(PCE),带有19.53 mA cm(-2)的高短路电流密度(J(SC)),而基于C8T的设备-BDTDP / 6TIC显示稍低的PCE为8.73%,j(sc)为17.75 mA cm(-2)。由于表面形态光滑和高度有序的晶体包装,C8ST-BDTDP / 6TIC的更好性能主要归因于有效的充电解离和运输。

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