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Photoelectrode Characteristics of Partially Hydrolyzed Aluminum Phthalocyanine Chloride/Fullerene C60 Composite Nanoparticles Working in a Water Phase

机译:在水相中部分水解的酞菁铝氯化物/富勒烯C60复合纳米粒子的光电电极特性

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摘要

Photoelectrochemical measurements were used to study the photoelectrode characteristics of composite nanoparticles composed of fullerene C60 and partially hydrolyzed aluminum phthalocyanine chloride (AlPc). In cyclic voltammetry measurements, the electrodes coated with the composite nanoparticles were found to have photoanodic [electron donor: 2-mercaptoethanol (ME)] and photocathodic (electron acceptor: O2) characteristics similar to those of the vapor-deposited p junction electrode. Their photoanodic features were further investigated with respect to the transient photocurrent response to light irradiation and the dependence on ME concentration (under potentiostatic conditions), from which it was noted that there was a decrease in the initial spiky photocathodic current and saturation of the steady-state photoanodic current at a higher ME concentration. Thus, the reaction kinetics was probably dominated by charge transport process. Moreover, external and internal quantum efficiency spectrum measurements indicated that the composite nanoparticles responded to the full spectrum of visible light (<880 nm) for both the photoanodic and photocathodic current. The present research will assist comprehension of photocatalytic behavior of the composite nanoparticles.
机译:光电化学测量用于研究由富勒烯C60和部分水解的铝酞菁铝(AlPc)组成的复合纳米颗粒的光电极特性。在循环伏安法测量中,发现涂有复合纳米颗粒的电极具有与气相沉积的p / n结电极相似的光阳极[电子给体:2-巯基乙醇(ME)]和光阴极(电子受体:O2)特性。 。根据瞬态光电流对光辐照的响应以及对ME浓度的依赖性(在恒电位条件下),进一步研究了它们的光阳极特性,从中可以看出,初始尖峰光阴极电流减少了,而稳态阴极的饱和度降低了。 ME浓度较高的状态下的光阳极电流。因此,反应动力学可能主要由电荷传输过程决定。此外,外部和内部量子效率光谱测量结果表明,复合纳米颗粒对可见光(<880 nm)的光阳极和光阴极电流均具有响应。本研究将有助于理解复合纳米粒子的光催化行为。

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