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首页> 外文期刊>RSC Advances >Quantum size effect and catalytic activity of nanosized single-crystalline spherical β-Ga2O3 particles by thermal annealing of liquid metal nanoparticles
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Quantum size effect and catalytic activity of nanosized single-crystalline spherical β-Ga2O3 particles by thermal annealing of liquid metal nanoparticles

机译:液态金属纳米粒子热退火制备纳米球形单晶β-Ga 2 O 3 颗粒的量子尺寸效应和催化活性

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摘要

We report on the synthesis of nanosized single-crystalline spherical β-Ga2O3 particles (GONP) by thermal annealing of gallium nanoparticles (GaNP), which previously has been prepared under ultrasonication. GONP displayed a spherical morphology and the particle size reflected that of GaNP. The nanoparticles have been confirmed as crystalline β-Ga2O3 by powder X-ray diffraction. The selected area electron diffraction patterns obtained from a whole particle of one GONP represented production of single-crystalline nanoparticle. Furthermore, the dispersibility and stability of GONP in solvent dramatically improved through silica coating (GO@SiO2 NP). Photoluminescence spectroscopy indicated that the GO@SiO2 NP exhibited a light blue emission at 445 nm under excitation at 240 nm. Diffuse reflectance spectroscopy demonstrated that the band gap of GO@SiO2 NP (Eg = 4.89 eV) was hypsochromically shifted compared to that of bulk Ga2O3 (Eg(bulk) = 4.56 eV) due to the quantum size effect of β-Ga2O3. Additionally, silica particle-supported GONP (GONP/MCM-41) showed catalytic activity for the benzylation of benzene with benzyl chloride. Thus, the GONP presented here will have potential applications in LED phosphors, optoelectronic devices, and supported catalysts.
机译:我们报道了纳米单晶球形β-Ga 2 O 3 颗粒(GONP)的合成。镓纳米颗粒(GaNP)的热退火,该退火先前已在超声作用下制备。 GONP显示出球形形态,并且粒径反映了GaNP的粒径。粉末X射线衍射已证实该纳米颗粒为晶体β-Ga 2 O 3 。从一个GONP的整个颗粒获得的所选区域电子衍射图代表单晶纳米颗粒的产生。此外,通过二氧化硅涂层(GO @ SiO 2 NP)大大提高了GONP在溶剂中的分散性和稳定性。光致发光光谱表明,GO @ SiO 2 NP在240 nm激发下在445 nm处呈现浅蓝色发射。漫反射光谱表明,GO @ SiO 2 NP( E g = 4.89 eV)与批量Ga 2 O 3 E g (bulk = 4.56 eV),这是由于β-Ga 2 的量子尺寸效应small> O 3 。此外,二氧化硅颗粒负载的GONP(GONP / MCM-41)对苯与苄基氯的苄基化反应具有催化活性。因此,此处介绍的GONP将在LED荧光粉,光电器件和负载型催化剂中具有潜在的应用。

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