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Constructing a AZO/TiO_2 Core/Shell Nanocone Array with Uniformly Dispersed Au NPs for Enhancing Photoelectrochemical Water Splitting

机译:用均匀分散的Au NP构建Azo / TiO_2核心/壳纳米芯阵列,用于增强光电化学水分裂

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摘要

Constructing core/shell nanostructures with optimal structure and composition could maximize the solar light utilization. Here, using an Al nanocone array as a substrate, a well-defined regular array of AZO/TiO2 core/shell nanocones with uniformly dispersed Au nanoparticles (AZO/TiO2/Au NCA) is successfully realized through three sequential steps of atomic layer deposition, physical vapor deposition, and annealing processes. By tuning the structural and compositional parameters, the advantages of light trapping and short carrier diffusion from the core/shell nanocone array, as well as the surface plasmon resonance and catalytic effects from the Au nanoparticles can be maximally utilized. Accordingly, a remarkable photoelectrochemical (PEC) performance can be acquired and the photocurrent density of the AZO/ TiO2/Au NCA electrode reaches up to 1.1 mA cm(-2) at 1.23 V, versus reversible hydrogen electrode (RHE) under simulated sunlight illumination, which is five times that of a flat AZO/TiO2 electrode (0.22 mA cm(-2)). Moreover, the photoconversion of the AZO/TiO2 /Au NCA electrode approaches 0.73% at 0.21 V versus RHE, which is one of the highest values with the lowest applied bias ever reported in Au/TiO2 PEC composites. These results demonstrate a feasible route toward the scalable fabrication of well-modulated core/shell nanostructures and can be easily applied to other metal/semiconductor composites for high-performance PEC.
机译:用最佳结构和组成构建芯/壳纳米结构可以最大化太阳光线利用。这里,使用Al纳米核素阵列作为基板,通过三个原子层沉积成功地实现了具有均匀分散的Au纳米颗粒(Azo / TiO 2 / Au NCA)的亚氮/ TiO 2核/壳纳米核苷的明确定义的常规阵列。物理气相沉积和退火过程。通过调节结构和组成参数,可以最大地利用来自芯/壳纳米核苷阵列的光捕获和短载波扩散的优点,以及表面等离子体共振和来自Au纳米颗粒的催化效果。因此,可以获得显着的光电化学(PEC)性能,并且偶氮/ TiO2 / Au NCA电极的光电流密度在1.23V下达到1.1mAcm(-2),而在模拟的阳光照射下的可逆氢电极(RHE) ,这是扁平Azo / TiO2电极的五倍(0.22 mA cm(-2))。此外,Azo / TiO2 / Au NCA电极的光电激化在0.21V的0.73%与RHE处,这是Au / TiO2 Pec复合材料中常用的最低施用偏差的最高值之​​一。这些结果表明了朝向良好调制的芯/壳纳米结构的可扩展制造的可行途径,并且可以容易地应用于用于高性能PEC的其他金属/半导体复合材料。

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  • 来源
    《Advanced energy materials》 |2016年第1期|1501496.1-1501496.8|共8页
  • 作者单位

    Tech Univ Ilmenau Inst Phys & IMN MacroNano ZIK D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Inst Phys & IMN MacroNano ZIK D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Inst Phys & IMN MacroNano ZIK D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Inst Phys & IMN MacroNano ZIK D-98693 Ilmenau Germany|Chinese Acad Sci Inst Semicond Key Lab Semicond Mat Sci Beijing 100083 Peoples R China;

    Tech Univ Ilmenau Inst Phys & IMN MacroNano ZIK D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Inst Phys & IMN MacroNano ZIK D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Inst Phys & IMN MacroNano ZIK D-98693 Ilmenau Germany|Shanghai Univ Inst Nanochem & Nanobiol Shanghai 200444 Peoples R China;

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