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首页> 外文期刊>Molecular Systems Design & Engineering >Molecular engineering of α and β peripherally tri-halogenated substituted boron subphthalocyanines as mixed alloys to control physical and electrochemical properties for organic photovoltaic applications
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Molecular engineering of α and β peripherally tri-halogenated substituted boron subphthalocyanines as mixed alloys to control physical and electrochemical properties for organic photovoltaic applications

机译:分子工程α和β的影子tri-halogenated代替硼subphthalocyanines合金混合控制物理和电化学性质有机光伏应用

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摘要

The chirality feature of C1 and C3 boron subphthalocyanines (BsubPcs) is an attractive property in material science and supramolecular chemistry. Normally in the field, enantiomeric mixtures are separated through a standard process. The goal of this study was to determine if the mixture of BsubPc enantiomers could form a mixed alloyed composition in the solid state, which is very relevant to their potential application in the organic electronic field. We present the synthesis and physical characteristics of a selection of four chiral BsubPc mixtures. These BsubPcs are specifically trichlorinated and trifluorinated in the periphery, such as Cl-βF3BsubPc, Cl-αF3BsubPc, Cl-βCl3BsubPc and Cl-αCl3BsubPc. The isomeric (C1/C3) ratios of each BsubPc were determined by NMR. Single-crystal XRD of all four BsubPc mixtures showed that the C1 and C3 isomers co-crystallized within their respective lattices forming solid-state mixed alloyed compositions. The structures of Cl-αF3BsubPc and Cl-βF3BsubPc crystallized in the same lattice as Cl-BsubPc, with some expansion of the unit cell volume, while the trichlorinated BsubPcs did not due to the large van der Waals radii of the chlorine atoms. This set of mixed alloyed BsubPcs was also integrated into organic solar cells/photovoltaics (OSCs/OPVs) as both non-fullerene electron acceptors and as electron donors. It was confirmed that these BsubPc isomers/enantiomers are applicable in OPVs as mixed alloyed compositions, with more promising functionality as non-fullerene electron acceptors given their significant contribution to the EQE spectra. Further molecular engineering of these materials will be made to enhance their OPV performance and to explore their bifunctional charge carrier mobility roles.
机译:的手性特征C1和C3硼subphthalocyanines (BsubPcs)是一种吸引力房地产在材料科学和超分子化学。通过一个标准的混合物分离的过程。如果BsubPc对映体的混合物可以形成一个混合固态合金成分,这是非常相关的他们的潜力有机电子领域的应用。合成和物理选择四个手性的特征BsubPc混合物。trichlorinated和trifluorinated外围,比如Cl -βF3BsubPc, Cl -αF3BsubPc,Cl -βCl3BsubPc和Cl -αCl3BsubPc。每个BsubPc (C1 / C3)的比率决定核磁共振。混合显示,C1和C3同分异构体co-crystallized在各自的晶格形成固态混合合金成分。的结构Cl -αF3BsubPc和Cl -βF3BsubPc固定在同一晶格Cl-BsubPc,与一些单位细胞体积的膨胀,虽然trichlorinated BsubPcs没有由于范德瓦耳斯半径大的氯原子。集成到有机太阳能电池/光电(osc /口服脊髓灰质炎疫苗)既是non-fullerene电子受体作为电子给体。证实了这些BsubPc同分异构体和对映体适用于口服脊髓灰质炎疫苗是混合合金吗成分,更有前途的功能作为non-fullerene电子受体考虑到他们重大贡献EQE光谱。进一步的分子工程这些材料将提高其口服脊髓灰质炎疫苗的性能和探索他们的双官能团的电荷载体流动的角色。

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