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Ni@C/CN纳米催化剂用于降解芳香族硝基化合物和有毒有机染料
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作者 王颖 史桂梅 李姝潼 《沈阳师范大学学报(自然科学版)》 CAS 2024年第2期108-113,共6页
采用电弧放电法结合热解技术设计并合成了Ni@C/CN纳米催化剂。采用透射电镜、X射线衍射、X射线光电子能谱、电化学工作站对Ni@C/CN的微观结构和电子传输能力进行了研究;利用紫外-可见分光光度计研究了所制备的催化剂对芳香族硝基化合物... 采用电弧放电法结合热解技术设计并合成了Ni@C/CN纳米催化剂。采用透射电镜、X射线衍射、X射线光电子能谱、电化学工作站对Ni@C/CN的微观结构和电子传输能力进行了研究;利用紫外-可见分光光度计研究了所制备的催化剂对芳香族硝基化合物(对硝基苯酚(4-NP)和有机染料(亚甲基兰))的催化还原性能。结果表明,Ni@C/CN纳米催化剂比Ni@C纳米胶囊具有更好的催化还原性能;通过优化Ni@C纳米胶囊和三聚氰胺的质量比可以优化Ni@C/CN的催化性能,优化后的Ni@C/CN催化还原降解4-NP和MB的准一级反应速率常数(k_(app))分别为4.656 min^(-1)和13.879 min^(-1);N的引入及异质C/CN壳层包覆金属Ni使Ni@C/CN获得良好的核壳协同作用,提高了Ni@C/CN的电子传输能力,同时,CN的表面缺陷增强了催化剂的吸附性能,增强了Ni@C/CN的催化还原能力。 展开更多
关键词 ni/C基纳米催化剂 催化还原 芳香族硝基化合物 有机染料
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Ternary Pd-Ni-P nanoparticle-based nonenzymatic glucose sensor with greatly enhanced sensitivity achieved through active-site engineering 被引量:2
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作者 Jingwen Ma Yueguang Chen +1 位作者 Lin Chen Leyu Wang 《Nano Research》 SCIE EI CAS CSCD 2017年第8期2712-2720,共9页
We develop a unique ternary Pd-Ni-P nanocatalyst for the sensitive enzyme- free electrooxidation detection of glucose under alkaline conditions. By reducing the distance between the Pd and Ni active sites in the Pd-Ni... We develop a unique ternary Pd-Ni-P nanocatalyst for the sensitive enzyme- free electrooxidation detection of glucose under alkaline conditions. By reducing the distance between the Pd and Ni active sites in the Pd-Ni-P nanoparticles (NPs) via atom engineering, the catalyst structure is transformed from Pd@Ni-P dumbbells into spherical NPs, greatly enhancing the catalyst sensitivity. The glassy carbon electrode modified with Pd-Ni-P ternary NPs, which behaves as an efficient nonenzymatic glucose sensor, offers excellent electrocatalytic performance with a high sensitivity of 1,136 μA·mM^-1·cm^-2, a short response time of 2 s, a wide linear range of 0.5 μM to 10.24 mM, a low limit of detection of 0.15 μM (signal-to-noise ratio = 3), and good selectivity and reproducibility. Moreover, owing to its superior catalytic performance, the Pd-Ni-P modified electrode has excellent reliability for glucose detection in real samples of human serum. Our study provides a promising alternative strategy for designing and constructing high-performance multicomponent nanocatalyst-based sensors. 展开更多
关键词 Pd-ni-P ternary nanocatalysts ELECTROOXIDATION glucose sensing
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