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Palladium nanoparticles supported on mesoporous biocarbon from coconut shell for ethanol electro-oxidation in alkaline media

机译:钯纳米粒子在碱性介质中的乙醇电氧化中负载在椰子壳中的中孔生物碳

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摘要

Abstract Palladium nanoparticles supported on carbon Vulcan XC72 (Pd/C) and biocarbon (Pd/BC) synthesized by sodium borohydride process were used as catalysts for ethanol electro-oxidation in alkaline media. The biocarbon (BC) from coconut shell with mesoporous and high surface area (792 m2 g−1) was obtained by carbonization at 900 °C and the hydrothermal treatment in a microwave oven. The D-band and G-band intensity ratio (I D/I G) from Raman analysis showed high disorder of the biocarbon, while X-ray photoelectron spectroscopy (XPS) suggests higher percentage of oxygen groups on the surface of biocarbon than of Vulcan XC72. From X-ray diffraction (XRD), it was observed peaks in 2θ degree related to the face centered cubic (fcc) structure of palladium and the mean crystallite sizes calculated based on the diffraction peak of Pd (220) were 5.6 nm for Pd/C and 5.3 nm for Pd/BC. Using Transmission Electron Microscope (TEM), it was observed particles well dispersed on both carbons support materials. The electrocatalytic activity of the materials was investigated by cyclic voltammetry (CV) and chronoamperometry (CA) experiments. The peak current density (on CV experiments) from ethanol electro-oxidation on Pd/BC was 50% higher than on Pd/C, while the current density measured at 15 min of CA experiments was 80% higher on Pd/BC than on Pd/C. The higher catalytic activity of Pd/BC might be related to the large surface area of the biocarbon (792 m2 g−1) vs (239 m2 g−1) of Vulcan carbon, the defects of the biocarbon structure and higher amount of oxygen on the surface than Carbon Vulcan XC 72.
机译:在碳氟化钠法合成的碳硫酸XC72(Pd / C)和生物羰(Pd / Bc)上负载的钯纳米粒子用作碱性介质中乙醇电氧化的催化剂。通过在900℃下碳化和微波炉中的水热处理获得来自椰子壳的生物羰(BC)和高表面积(792m 2 G-1)获得。来自拉曼分析的D频带和G波段强度比(Id / I g)显示了生物碳的高病症,而X射线光电子能谱(XPS)表明生物碳表面上的氧基团比硫磺XC72更高。从X射线衍射(XRD),观察到与钯的面为中心立方(FCC)结构有关的2θ度的峰值,并且基于Pd(220)的衍射峰计算的平均结晶尺寸为5.6nm,用于Pd / C和5.3 nm for PD / BC。使用透射电子显微镜(TEM),观察到分散在碳的颗粒均匀的颗粒。通过循环伏安法(CV)和计时率(CA)实验研究了材料的电催化活性。从在Pd / BC乙醇电氧化的峰电流密度(在CV实验)比在Pd / C高50%,而电流密度的CA实验15分钟测得高80%的钯/ BC比在Pd /C。 PD / BC的较高催化活性可能与生物碳(792M2G-1)的大表面积(239m 2 G-1)的硫磺碳,生物碳结构的缺陷和氧气量较高表面比碳硫磺XC 72。

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