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BN/Ag hybrid nanomaterials with petal-like surfaces as catalysts and antibacterial agents

机译:具有花瓣状表面作为催化剂和抗菌剂的BN / Ag杂化纳米材料

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摘要

BN/Ag hybrid nanomaterials (HNMs) and their possible applications as novel active catalysts and antibacterial agents are investigated. BN/Ag nanoparticle (NP) hybrids were fabricated using two methods: (i) chemical vapour deposition (CVD) of BN NPs in the presence of Ag vapours, and (ii) ultraviolet (UV) decomposition of AgNO3 in a suspension of BN NPs. The hybrid microstructures were studied by high-resolution transmission electron microscopy (HRTEM), high-angular dark field scanning TEM imaging paired with energy dispersion X-ray (EDX) mapping, X-ray photoelectron spectroscopy (XPS), and infrared spectroscopy (FTIR). They were also characterized in terms of thermal stability, Ag+ ion release, catalytic and antibacterial activities. The materials synthesized via UV decomposition of AgNO3 demonstrated a much better catalytic activity in comparison to those prepared using the CVD method. The best catalytic characteristics (100% methanol conversion at 350 °C) were achieved using the UV BN/Ag HNMs without preliminary annealing at 600 °C in an oxidizing atmosphere. Both types of the BN/Ag HNMs possess a profound antibacterial effect against Escherichia coli K-261 bacteria.
机译:研究了BN / Ag杂化纳米材料(HNMs)及其作为新型活性催化剂和抗菌剂的可能应用。使用两种方法制造BN / Ag纳米粒子(NP)杂化物:(i)在有Ag蒸气存在下BN NP的化学气相沉积(CVD),以及(ii)在BN NP的悬浮液中AgNO3的紫外分解。通过高分辨率透射电子显微镜(HRTEM),高角度暗场扫描TEM成像与能量色散X射线(EDX)映射,X射线光电子能谱(XPS)和红外能谱(FTIR)配对,研究了混合微结构。 )。它们还以热稳定性,Ag + 离子释放,催化和抗菌活性为特征。与使用CVD方法制备的材料相比,通过AgNO3的UV分解合成的材料具有更好的催化活性。使用UV BN / Ag HNMs无需在氧化气氛中于600°C进行初步退火即可获得最佳催化特性(在350°C时100%的甲醇转化率)。两种类型的BN / Ag HNM均具有针对大肠杆菌K-261细菌的深层抗菌作用。

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