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Hydrogen evolution-assisted one-pot aqueous synthesis of hierarchical trimetallic PdNiRu nanochains for hydrazine oxidation reaction 被引量:1
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作者 Tao Yuan Aijun Wang +2 位作者 Keming Fang Zhigang Wang Jiuju Feng 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2017年第6期1231-1237,共7页
A hydrogen evolution-assisted one-pot aqueous approach was developed for facile synthesis of trimetallic Pd Ni Ru alloy nanochain-like networks(Pd Ni Ru NCNs) by only using KBHas the reductant, without any specific ... A hydrogen evolution-assisted one-pot aqueous approach was developed for facile synthesis of trimetallic Pd Ni Ru alloy nanochain-like networks(Pd Ni Ru NCNs) by only using KBHas the reductant, without any specific additive(e.g. surfactant, polymer, template or seed). The products were mainly investigated by transmission electron microscopy(TEM), X-ray diffraction(XRD) and X-ray photoelectron spectroscopy(XPS). The hierarchical architectures were formed by the oriented assembly growth and the diffusioncontrolled deposition in the presence of many in-situ generated hydrogen bubbles. The architectures had the largest electrochemically active surface area(ECSA) of 84.32 mgPdthan Pd Ni nanoparticles(NPs,65.23 mgPd), Pd Ru NPs(23.12 mgPd), Ni Ru NPs(nearly zero), and commercial Pd black(6.01 mgPd), outperforming the referenced catalysts regarding the catalytic characters for hydrazine oxygen reaction(HOR). The synthetic route provides new insight into the preparation of other trimetallic nanocatalysts in fuel cells. 展开更多
关键词 trimetallic alloy Nanochain networks Hydrogen evolution-assisted synthesis Diffusion-controlled deposition Hydrazine oxidation reaction
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Trimetallic nanostructures and their applications in electrocatalytic energy conversions
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作者 Shushay Hagos Gebre Marshet Getaye Sendeku 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第2期329-351,共23页
The advancement and growth of nanotechnology lead to realizing new and novel multi-metallic nanostructures with well-defined sizes and morphology,resulting in an improvement in their performance in various catalytic a... The advancement and growth of nanotechnology lead to realizing new and novel multi-metallic nanostructures with well-defined sizes and morphology,resulting in an improvement in their performance in various catalytic applications.The trimetallic nanostructured materials are synthesized and designed in different architectures for energy conversion electrocatalysis.The as-synthesized trimetallic nanostructures have found unique physiochemical properties due to the synergistic combination of the three different metals in their structures.A vast array of approaches such as hydrothermal,solvothermal,seedgrowth,galvanic replacement reaction,biological,and other methods are employed to synthesize the trimetallic nanostructures.Noteworthy,the trimetallic nanostructures showed better performance and durability in the electrocatalytic fuel cells.In the present review,we provide a comprehensive overview of the recent strategies employed for synthesizing trimetallic nanostructures and their energy-related applications.With a particular focus on hydrogen evolution,alcohol oxidations,oxygen evolution,and others,we highlight the latest achievements in the field. 展开更多
关键词 trimetallic nanoparticle ELECTROOXIDATION ELECTROCATALYSIS alloy Energy conversion
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Trimetallic PtRhNi alloy nanoassemblies as highly active electrocatalyst for ethanol electrooxidation 被引量:4
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作者 Huimin Liu Jiahui Li +3 位作者 Lijuan Wang Yawen Tang Bao Yu Xia Yu Chen 《Nano Research》 SCIE EI CAS CSCD 2017年第10期3324-3332,共9页
Although nanostructures based on noble metal alloys are widely utilized in (electro)catalysis, their low-temperature synthesis remains an enormous challenge due to the different Nernst equilibrium potentials of meta... Although nanostructures based on noble metal alloys are widely utilized in (electro)catalysis, their low-temperature synthesis remains an enormous challenge due to the different Nernst equilibrium potentials of metal precursors. Herein, we describe the successful synthesis of trimetallic PtRhNi alloy nanoassemblies (PtRhNi-ANAs) with tunable Pt/Rh ratios using a simple mixed cyanogel reduction method and provide a detailed characterization of their chemical composition, morphology, and structure. Additionally, the electrochemical properties of PtRhNi-ANAs are examined by cyclic voltammetry, revealing composition- dependent electrocatalytic activity in the ethanol oxidation reaction (EOR). Compared to a commercial Pt black electrocatalyst, optimized Pt3Rh1Ni2-ANAs display remarkably enhanced EOR electrocatalytic performance in alkaline media. 展开更多
关键词 cyanogel trimetallic alloy ELECTROCATALYSIS activity ethanol oxidation reaction
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双功能Ru-Co-Mn三元金属合金纳米催化剂用于氧化还原电催化 被引量:1
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作者 刘姗 张二欢 +6 位作者 万晓冬 潘容容 李岳美 张修铭 苏梦瑶 刘佳 张加涛 《Science China Materials》 SCIE EI CAS CSCD 2022年第1期131-138,共8页
电解水是最有前景的制氢方法之一,但长期以来一直受到阳极析氧反应(OER)迟缓的限制.本文采用热解-吸附-热解工艺,以ZIF-67为前驱体,制备了Ru-Co-Mn三金属合金纳米颗粒(NPs)负载在氮掺杂碳载体上(RuCoMn@NC)的催化剂.该催化剂在较宽的pH... 电解水是最有前景的制氢方法之一,但长期以来一直受到阳极析氧反应(OER)迟缓的限制.本文采用热解-吸附-热解工艺,以ZIF-67为前驱体,制备了Ru-Co-Mn三金属合金纳米颗粒(NPs)负载在氮掺杂碳载体上(RuCoMn@NC)的催化剂.该催化剂在较宽的pH范围内对析氢反应(HER)以及在碱性介质中对葡萄糖氧化反应(GOR)都表现出良好的电催化性能.特别是RuCoMn@NC催化剂在碱性介质中表现出优异的HER活性,优于商用Pt/C催化剂(20 wt%),并具有良好的电化学稳定性.进一步以RuCoMn@NC同时作为阴极和阳极组成双电极碱性电解槽用于葡萄糖电解反应,只需要1.63 V的槽电压就可以达到10mAcm^(-2)的电流密度,比全解水电解槽的所需电压低270mV.本工作为合理开发高效的氧化还原电催化双功能催化剂提供了一种有效的方法,有利于节能电解制氢的发展. 展开更多
关键词 氧化还原 电催化 电化学稳定性 析氢反应 金属合金 碱性介质 双功能催化剂 纳米催化剂
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