首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Influence of Molecular Orientation on Charge-Transfer Processes at Phthalocyanine/Metal Oxide Interfaces and Relationship to Organic Photovoltaic Performance
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Influence of Molecular Orientation on Charge-Transfer Processes at Phthalocyanine/Metal Oxide Interfaces and Relationship to Organic Photovoltaic Performance

机译:酞菁/金属氧化物界面上分子取向对电荷转移过程的影响及其与有机光伏性能的关系

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The effect of the molecular orientation distribution of the first monolayer of donor, molecules at the hole harvesting contact in an organic photovoltaic (OPV) on device efficiency-was investigated. Two zinc phthalocyanine(ZnPc) phosphonic acids (PA) deposited on indium tin oxide (ITO) electrodes are compared: ZnPC(PA)(4) contains PA linkers in all four quadrants, and ZnPcPA contains a PA linker in one quadrant. ZnPcPA. monolayers exhibited a broad distribution of molecular orientations Whereas ZnPc(PA)(4) adsorption produced a monolayer with a narrower orientation distribution with the molecular plane more parallel to the ITO surface, We used potential-modulated attenuated total reflectance spectroelectrochemistry (PM-ATR) to characterize the charge-transfer kinetics of these films and show that the highest rate constants correspond: to ZnPc subpopulations that are oriented more parallel to the ITO surface plane. For ZnPc(PA)(4), rate constants exceeded 10(4) s(-1) and are among the highest ever reported for a surfaceconfined, redox couple, which is attributable to both its Orientation and the small ZnPc-electrode separation distance. The performance of OPVs with ITO hole-harvesting contacts modified with ZnPc(PA)(4) was comparable to that achieved with highly activated bare ITO contacts, whereas for ZnPcPA-modified contacts, the OPV performance was similar to that-observed with (hole-blocking) alkyl-PA modifiers. These results demonstrate the synergism between molecular structure, energetics, and dynamics at interfaces in OPVs.
机译:研究了供体的第一个单分子层的分子取向分布,即有机光伏(OPV)中空穴收集接触处的分子对器件效率的影响。比较了沉积在铟锡氧化物(ITO)电极上的两种锌酞菁(ZnPc)膦酸(PA):ZnPC(PA)(4)在所有四个象限中均包含PA连接子,而ZnPcPA在一个象限中均包含PA连接器。 ZnPcPA。单层表现出广泛的分子取向分布,而ZnPc(PA)(4)吸附产生的单层具有较窄的取向分布,分子平面与ITO表面更平行,我们使用电势调制的衰减全反射光谱电化学(PM-ATR)表征这些薄膜的电荷转移动力学并表明最高速率常数对应于:ZnPc亚群,其取向与ITO表面更加平行。对于ZnPc(PA)(4),速率常数超过10(4)s(-1),并且是表面受限的氧化还原对报告的最高值,这归因于其取向和小的ZnPc-电极分离距离。具有ZnPc(PA)(4)修饰的ITO空穴收集触点的OPV的性能可与高度活化的裸ITO触点实现的性能相媲美,而对于ZnPcPA修饰的触点,OPV的性能与(孔得到的)相似-封端)烷基-PA改性剂。这些结果证明了OPV界面分子结构,能量学和动力学之间的协同作用。

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