钕修饰六羟基锡酸锶纳米棒的原位光沉积及其光催化性能

Q3 Engineering Micro and Nanosystems Pub Date : 2023-03-20 DOI:10.2174/1876402915666230320103405
L. Pei, Zizhan Sun, Xiaoyu Wang, Z. Xue, Z. Cai, C. Fan
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引用次数: 0

摘要

光催化剂的金属表面改性对提高半导体光催化剂的光催化性能是有效的。Nd可以作为改性金属用于增强氢氧化锶锡纳米棒的催化性能,因为它可以扩大光吸收范围,减少光生电子和空穴的复合。本研究的目的是合成nd修饰的SrSn(OH)6纳米棒,并考察其对结晶紫降解的光催化性能。采用简单的一步原位光沉积方法制备了钕修饰的SrSn(OH)6纳米棒。采用x射线衍射、透射电镜、高分辨率透射电镜、x射线光电子能谱、固体漫反射能谱、光致发光能谱和电化学阻抗能谱对制备的纳米棒进行分析。采用简单的一步原位光沉积方法制备了钕修饰的SrSn(OH)6纳米棒。采用x射线衍射、透射电镜、高分辨率透射电镜、x射线光电子能谱、固体漫反射光谱、光致发光光谱和电化学阻抗谱对制备的纳米棒进行了分析。Nd附着在纳米棒表面。Nd修饰的SrSn(OH)6纳米棒的带隙减小是因为纳米棒表面的Nd修饰。在紫外光照射下,nd修饰的SrSn(OH)6纳米棒对结晶紫(CV)的光催化性能比SrSn(OH)6纳米棒增强。Nd修饰的SrSn(OH)6纳米棒具有更低的电荷转移电阻和更有效的电荷分离能力,从而阻碍了电子和空穴(e−/h+)对的复合。清道夫实验报道了光催化反应中空穴、超氧自由基和羟基自由基是主要的活性物质。nd修饰的SrSn(OH)6纳米棒具有可回收性和可重复使用性,可用于CV降解。纳米级粒子附着在纳米棒的表面。Nd修饰的SrSn(OH)6纳米棒的带隙减小是因为纳米棒表面的Nd修饰。Nd修饰的SrSn(OH)6纳米棒在紫外光照射下对结晶紫(CV)的光催化性能比SrSn(OH)6纳米棒增强。Nd修饰的SrSn(OH)6纳米棒具有更低的电荷转移阻力和更有效的电荷分离能力,阻碍了电子和空穴(e−/h+)对的复合。清道夫实验表明,光催化反应中空穴、超氧自由基和羟基自由基是主要的活性物质。Nd修饰的SrSn(OH)6纳米棒具有可回收性和可重复使用性,可用于CV降解。Nd修饰的SrSn(OH)6纳米棒对结晶紫的光催化性能比未修饰的纳米棒增强。Nd修饰的SrSn(OH)6纳米棒对结晶紫的光催化性能比未修饰的纳米棒增强。
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In-situ Photo-deposition of Nd-modified Hexahydroxy Strontium Stannate Nanorods with Enhanced Photocatalytic Performance
Metal surface modification of the photocatalysts is effective for enhancing the photocatalytic properties of the semiconductor photocatalysts. Nd can be used as the modified metal for the enhancement of catalytic performance of the strontium tin hydroxide (SrSn(OH)6) nanorods due to expanding the light absorption range and reducing the recombination of the photo-generated electrons and holes. The aim of the research is to synthesize Nd-modified SrSn(OH)6 nanorods and investigate the enhanced photocatalytic performance for crystal violet degradation. Nd modified SrSn(OH)6 nanorods were prepared via a facile one-step in-situ photo-deposition route. The obtained nanorods were analyzed by X-ray diffraction, transmission electron microscopy, high-resolution transmission electron microscopy, X-ray photoelectron spectroscopy, solid diffuse reflectance spectra, photoluminescence spectroscopy, and electrochemical impedance spectroscopy. Nd modified SrSn(OH)6 nanorods were prepared via a facile one-step in-situ photo-deposition route. The obtained nanorods were analyzed by X-ray diffraction, transmission electron microscopy, high-resolution transmission electron microscopy, X-ray photoelectron spectroscopy, solid diffuse reflectance spectra, photoluminescence spectroscopy and electrochemical impedance spectroscopy. Nd attached to the surface of nanorods. The band gap of the Nd-modified SrSn(OH)6 nanorods was reduced due to Nd modification at the surface of nanorods. The Nd-modified SrSn(OH)6 nanorods showed enhanced photocatalytic properties for crystal violet (CV) degradation under ultraviolet (UV) light irradiation than the SrSn(OH)6 nanorods. Nd modified SrSn(OH)6 nanorods have lower charge transfer resistance and more efficient charge separation ability, thus hindering the recombination of the electrons and holes (e−/h+) pairs. Scavenger experiments reported that the holes, superoxide, and hydroxyl radicals are the main reactive species during the photocatalytic reaction. The Nd-modified SrSn(OH)6 nanorods were found to be recoverable and reusable for CV degradation. Nd nanoscale particles attach to the surface of the nanorods. The band gap of the Nd modified SrSn(OH)6 nanorods is reduced due to the Nd modification at the surface of the nanorods. The Nd modified SrSn(OH)6 nanorods show enhanced photocatalytic properties for crystal violet (CV) degradation under ultraviolet (UV) light irradiation than the SrSn(OH)6 nanorods. Nd modified SrSn(OH)6 nanorods have lower charge transfer resistant and more efficient charge separation ability hindering the recombination of the electrons and holes (e−/h+) pairs. Scavenger experiments show that the holes, superoxide and hydroxyl radicals are the main reactive species during the photocatalytic reaction. The Nd modified SrSn(OH)6 nanorods are recoverable and reusable for the CV degradation. The Nd modified SrSn(OH)6 nanorods showed enhanced photocatalytic performance towards crystal violet than un-modified nanorods. The Nd modified SrSn(OH)6 nanorods show enhanced photocatalytic performance towards crystal violet than un-modified nanorods.
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来源期刊
Micro and Nanosystems
Micro and Nanosystems Engineering-Building and Construction
CiteScore
1.60
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发文量
50
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