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Controlled Growth of Platinum Nanoparticles on Strontium Titanate Nanocubes by Atomic Layer Deposition

机译:通过原子层沉积控制铂纳米粒子在钛酸锶纳米粒子上的生长。

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摘要

With an eye toward using surface morphology to enhance heterogeneous catalysis, Pt nanoparticles are grown by atomic layer deposition (ALD) on the surfaces of SrTiO3 nanocubes. The size, dispersion, and chemical state of the Pt nanoparticles are controlled by the number of ALD growth cycles. The SrTiO3 nanocubes average 60 nm on a side with {001} faces. The Pt loading increases linearly with Pt ALD cycles to a value of 1.1 X 10(-6) g cm(-2) after five cycles. Scanning electron microscopy images reveal discrete, well-dispersed Pt nanoparticles. Small- and wide-angle X-ray scattering show that the Pt nanoparticle spacing and size increase as the number of ALD cycles increases. X-ray absorption spectroscopy shows a progression from platinum(II) oxide to metallic platinum and a decrease in Pt-O bonding with an increase in Pt-Pt bonding as the number of ALD cycles increases.
机译:着眼于利用表面形态来增强多相催化,Pt纳米颗粒通过原子层沉积(ALD)在SrTiO3纳米立方体的表面上生长。 Pt纳米粒子的大小,分散度和化学状态由ALD生长周期数控制。 SrTiO3纳米立方体的{001}面一侧平均为60 nm。在五个循环后,Pt负载随Pt ALD循环线性增加,达到1.1 X 10(-6)g cm(-2)的值。扫描电子显微镜图像显示离散的,分散良好的Pt纳米颗粒。小角度和广角X射线散射表明,随着ALD循环次数的增加,Pt纳米颗粒的间距和尺寸也会增加。 X射线吸收光谱显示随着ALD循环次数的增加,Pt-O键从Pt-Pt键增加到Pt-O键减少。

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