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Enhanced surface-and-interface coupling in Pd-nanoparticle-coated LaAlO3/SrTiO3 heterostructures : strong gas- and photo-induced conductance modulation

机译:钯纳米颗粒包覆的LaAlO3 / SrTiO3异质结构中增强的表面和界面耦合:强大的气体和光诱导电导调制

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摘要

Pd nanoparticle (NP) coated LaAlO3/SrTiO3 (LAO/STO) heterointerface exhibits more notable conductance (G) change while varying the ambient gas (N2, H2/N2, and O2) and illuminating with UV light (wavelength: 365 nm) than a sample without the NPs. Simultaneous Kelvin probe force microscopy and transport measurements reveal close relationships between the surface work function (W) and G of the samples. Quantitative analyses suggest that a surface adsorption/desorption-mediated reaction and redox, resulting in a band-alignment modification and charge-transfer, could explain the gas- and photo-induced conductance modulation at the LAO/STO interface. Such surface-and-interface coupling enhanced by catalytic Pd NPs is a unique feature, quite distinct from conventional semiconductor hetero-junctions, which enables the significant conductance tunability at ultrathin oxide heterointerfaces by external stimuli.
机译:钯纳米颗粒(NP)涂覆的LaAlO3 / SrTiO3(LAO / STO)异质界面在改变环境气体(N2,H2 / N2和O2)并使用紫外线(波长:365 nm)照明时表现出更显着的电导(G)变化。没有NP的样品。同时进行的开尔文探针力显微镜和传输测量揭示了样品的表面功函数(W)和G之间的密切关系。定量分析表明,表面吸附/解吸介导的反应和氧化还原,导致能带取向改性和电荷转移,可以解释在LAO / STO界面上气体和光诱导的电导调制。这种由催化Pd NP增强的表面和界面耦合是一个独特的功能,与常规的半导体异质结截然不同,传统的半导体异质结可以通过外部刺激在超薄氧化物异质界面上实现显着的电导可调性。

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