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首页> 外文期刊>Journal of Organometallic Chemistry >Tetra and octa substituted Zn(II) and Cu(II) phthalocyanines: Synthesis, characterization and investigation as hole-transporting materials for inverted type-perovskite solar cells
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Tetra and octa substituted Zn(II) and Cu(II) phthalocyanines: Synthesis, characterization and investigation as hole-transporting materials for inverted type-perovskite solar cells

机译:TETRA和OCTA取代的Zn(II)和Cu(II)酞菁:作为倒立型钙钛矿太阳能电池的空穴输送材料的合成,表征和调查

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Metallophthalocyanines (MPcs) are used as cost-effective and thermally stable hole-transporting materials (HTMs) in the production of perovskite solar cells (PSCs). Unlike the mostly used n-i-p type PSCs, there are a few studies based on p-i-n type PSC with pthalocyanine HTMs. Here, for the first time, both tetra and octa substituted zinc and copper phthalocyanines have been studied as hole transporting materials in the inverted-type (p-i-n) PSCs without using any dopant material. The developed tetra substituted ZnPc and CuPc possess four dichlorophenylthio groups, and the octa-substituted Pcs have eight dichlorophenylthio groups in their peripheral position which enhance their solubility in perovskite-friendly solvent and improved thin film quality. In the inverted solar cell (ITO/HTM/CH(3)NH(3)Pbl(3)/PCBM/Al), methylammonium lead iodide (MAPI) was used as the active layer and [6,6]-phenyl-C61-butyric acid methyl ester (PC61BM) as the electron transport material. Devices based on tetra substituted zinc and copper Pcs, as dopant-free HTMs, indicated significant efficiency enhancement and cell stability compared to similar octa substituted Pcs. While the open-circuit voltage (V-oc) for the reference PEDOT:PSS was measured 0.77 V, for tetra substituted CuPc was found to be 0.83 V. Due to higher Voc value, tetra substituted CuPc is an appropriate candidate that can replace expensive and unstable HTMs that are currently used in PSCs. (C) 2020 Elsevier B.V. All rights reserved.
机译:金属酞菁(MPC)用作生产钙钛矿太阳能电池(PSC)的成本效益和热稳定的空穴传输材料(HTMS)。与主要使用的N-I-P型PSC不同,存在基于P-I-N型PSC的少数研究,具有pthalocyanine HTM。这里,首次,已经在不使用任何掺杂剂材料的情况下作为倒置(P-I-N)PSC中的空穴传输材料作为空穴传输材料的TETRA和OCTA取代的锌和铜酞菁。所开发的Tetra取代的ZnPC和Cupc具有四种二氯苯硫基,并且八藻取代的PC在其周围位置具有八个二氯苯硫基,可增强它们在钙钛矿友好型溶剂中的溶解度和改善的薄膜质量。在倒置太阳能电池(ITO / HTM / CH(3)NH(3)PBL(3)/ PCBM / Al)中,使用甲基铅碘化物(MAPI)作为活性层,[6,6] - 苯基-C61 - 丁酸甲酯(PC61BM)作为电子传输材料。与无掺杂剂HTMS的基于Tetra取代锌和铜PC的器件表明与类似的Octa取代的PC相比显着提高效率增强和细胞稳定性。虽然参考PEDOT的开路电压(V-OC):测量0.77V,对于TETRA取代的CUPC被发现为0.83 V.由于较高的VOC值,TETRA取代CUPC是可以更换昂贵的合适候选者并在PSCS中使用的不稳定HTM。 (c)2020 Elsevier B.v.保留所有权利。

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