首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Synthetic incorporation of palladium-nickel bimetallic nanoparticles within mesoporous silica/silica nanoparticles as efficient and cheaper catalyst for both cationic and anionic dyes degradation
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Synthetic incorporation of palladium-nickel bimetallic nanoparticles within mesoporous silica/silica nanoparticles as efficient and cheaper catalyst for both cationic and anionic dyes degradation

机译:介孔二氧化硅/二氧化硅纳米粒子内的钯 - 镍双金属纳米粒子的合成掺入与阳离子和阴离子染料的高效和更便宜的催化剂降解

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摘要

Nickel-palladium bimetallic nanocrystallite supported mesoporous silica/silica nanoparticles (MSPs/MSNPs) made at a controlled ratio of Pd/Ni via organotrialkoxysilane mediated reduction of palladium cations are reported. The organotrialkoxysilane serve as a template for the stabilization and formation of bimetallic Pd-Ni nanocrystallite within MSPs/MSNPs that are characterized by TEM, EDX, HR-SEM, HR-MS, XRD, BET and Elemental mapping analysis, kinetic analysis for degradation of both cationic and anionic dyes, i.e., rhodamine B and congo red, respectively. The nanocrystallite inserted MSNPs of particle diameter 200 nm justify faster degradation with rate constant to the order of 6.9 x10(-2)s(-1) as compared to that for MSPs of 50 mu m to the order of 3.2 x10(-2) s(-1) for 15 ppm Rh B within 50 s as compared to that for mesoporous silica of 50 mu m within 110 s under similar conditions with analogous observation for the degradation of congo red. Heterogeneous support is fully recyclable and shows 100% catalytic activity even after five subsequent applications. The degradation dynamics have further been evaluated based on fluorescent spectra and HR-MS analysis.
机译:据报道镍 - 钯双金属纳米晶体负载的介孔二氧化硅/二氧化硅纳米粒子(MSP / MSNP)通过有机三氧基硅烷介导的钯阳离子的减少的PD / Ni的受控比制备。有机三氧基硅烷用作稳定和形成MSPS / MSNP中的双金属Pd-Ni纳米晶体的模板,其特征在于TEM,EDX,HR-SEM,HR-MS,XRD,BET和元素映射分析,动力学分析阳离子和阴离子染料,即罗丹明B和刚果红色。纳米晶体插入粒径200nm的MSNP,使得速率常数为6.9×10(-2)S(-1)的速率恒定,与3.2 x10(-2)的MSP为准相比。在50秒内为15ppm rH b的S(-1)如在类似条件下为110秒内的50μm内的介孔二氧化硅相比,在类似的条件下具有类似的刚果红色的劣化。异质载体即使在随后的五种应用之后,也会完全可回收并显示100%催化活性。进一步基于荧光光谱和HR-MS分析评估降解动力学。

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