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Facile synthesis based on novel carbon-supported cyanogel of structurally ordered Pd3Fe/C as electrocatalyst for formic acid oxidation 被引量:7
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作者 Zhenyuan Liu Gengtao Fu +4 位作者 Jiahui Li Zhenqi Liu Lin Xu Dongmei Sun Yawen Tang 《Nano Research》 SCIE EI CAS CSCD 2018年第9期4686-4696,共11页
A novel carbon-supported cyanogel (C@cyanogel)-derived strategy is used to synthesize an intermetallic Pd3Fe/C compound of the desired ordered Pd3Fe phase with a small particle size. The novelty of this work lies in... A novel carbon-supported cyanogel (C@cyanogel)-derived strategy is used to synthesize an intermetallic Pd3Fe/C compound of the desired ordered Pd3Fe phase with a small particle size. The novelty of this work lies in using carbon- supported K2PdHCl4/K4Fe^Ⅱ(CN)6 cyanogel as a reaction precursor, generated through the substitution of two chloride ligands by the nitrogen ends of the cyanide ligands on the metal center. The inherent nature of cyanogels can effectively suppress the movement of Pd^0 and Fe^0 nuclei in the crystal, benefiting the formation of the intermetallic, which is otherwise challenging via traditional synthesis techniques. The ordered Pd3Fe/C catalyst exhibits excellent catalytic activity and good cycle stability for the formic acid oxidation (FAO) reaction relative to the properties of disordered Pd3Fe/C and commercial Pd/C catalysts, dernonstrating that the ordered Pd3Fe/C is a promising replacement for commercial Pd-based catalysts. The outstanding performance can be ascribed to the full isolation of active sites in the ordered Pd3Fe structure and the modified electronic structure of the active components. This work provides an effective and novel route to obtain Pd-based intermetallic compounds with potential applications in a wide range of electrocatalysis. 展开更多
关键词 carbon@cyanogel pd3fe/c ordered intermetallic ELEcTROcATALYST formic acid oxidation
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一步法合成磁性功能材料Fe_3O_4/C及其应用研究
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作者 张延琪 方森林 《宿州学院学报》 2015年第1期82-84,113,共4页
以三氯化铁和柠檬酸钠为原料、葡萄糖为碳源,在水热体系中一步合成了磁性功能材料Fe3O4/C,然后利用其表面丰富的羟基原位还原Pd2+,合成Fe3O4/C/Pd,用于催化卤代芳烃与苯硼酸的Suzuki偶联反应。所得样品采用电子扫描显微镜(SEM)、X射线... 以三氯化铁和柠檬酸钠为原料、葡萄糖为碳源,在水热体系中一步合成了磁性功能材料Fe3O4/C,然后利用其表面丰富的羟基原位还原Pd2+,合成Fe3O4/C/Pd,用于催化卤代芳烃与苯硼酸的Suzuki偶联反应。所得样品采用电子扫描显微镜(SEM)、X射线粉末衍射仪(XRD)、傅立叶变换红红外光谱仪(FT-IR)热重分析仪进行表征。实验结果表明,Fe3O4/C/Pd可高效催化溴代芳烃与苯硼酸的Suzuki偶联反应,而对于活性低的氯代芳烃的催化效率为中等,产率为55%。催化剂可以进行磁性分离,且可循环性很好,在连续使用3次后催化活性依然很高。 展开更多
关键词 一步法 合成 fe3O4/c fe3O4/c/pd 催化
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