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Waste biomass-derived carbon-supported palladium-based catalyst for cross-coupling reactions and energy storage applications

机译:废物生物质衍生的碳负载钯基催化剂用于交叉偶联反应和能量储存应用

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In the present work, we report the synthesis of low-cost mesoporous biomass carbon (BC) from waste radish leaves for the first time with a specific surface area of 703.99 m(2)g(-1) and was employed as support in the preparation of palladium-based (BC-TPEA@Pd) heterogeneous catalyst. The prepared BC-TPEA@Pd heterogeneous catalyst was fully characterized by numerous analytical techniques. Moreover, we have developed a greener reaction protocol for Suzuki-Miyaura cross-coupling reactions using the basic extract of radish leaves with base/ligand/promoter/additives free reaction conditions. The newly developed reaction protocol offers greener reaction conditions, efficient, economical and highly recyclable methodology for the synthesis of substituted biaryls for commercial applications. Additionally, BC-TPEA@Pd catalyst shows high performance as supercapacitor electrode material in an aqueous electrolyte- based two electrode cell with a specific capacitance of 129.36F/g at a current density of 0.25 A/g and a 96.14 % of original capacitance retention after 2500 GCD cycles.
机译:在本作本作中,我们报告了从废萝卜叶中的低成本中孔生物量碳(BC)的合成第一次,其比表面积为703.99m(2)g(2)g(-1),并用作载体基于钯(BC-TPEA @ Pd)的非均相催化剂的制备。制备的BC-TPEA @ Pd非均相催化剂通过许多分析技术完全表征。此外,我们已经使用萝卜叶的基本提取物为碱/配体/启动子/添加剂的基本提取物制定了更环保的反应协议。新开发的反应协议为合成商业应用的取代的丙派斯合成提供更环保的反应条件,高效,经济和高度可回收的方法。另外,BC-TPEA @ Pd催化剂在电解电解质的两个电极电池中显示出高性能,其具有129.36F / g的特定电容为0.25a / g的电流密度,并且占原始电容保留的96.14% 2500 GCD循环后。

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