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The Effect of Carbon-Based Substrates onto Non-precious and Precious Electrocatalytic Center

机译:碳基底板对非珍贵和珍贵电催化中心的影响

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Here, we report the effect of substrate for tuning the active reaction center of precious and non-precious electrocalysts for efficient oxygen reduction reaction (ORR) activity. We have selected surface modified carbon morphologies to study the substrate effect on Pt and CoSe2 catalytic center. Pt supported on surface modified carbon nanotube (CNT) substrates shows, defective sites is important for effective dispersion of Pt on it. CO stripping process probes the effect of Pt interaction with defective and graphitic domains of carbon support. Improved mass activity and specific activity is observed for Pt supported on pyridine functionalized CNT compared to Pt on other CNT substrate. Similarly, CoSe2 supported on nitrogen doped carbon nanohorn (NCNH) shows improved ORR activity in alkaline and acid conditions compared to other carbon based substrates. Enhanced mass activity and specific activity of CoSe_2/NCNH is observed in both alkaline and acidic media compared to CoSe2 supported on other modified substrates.
机译:在这里,我们报告了基材对调节珍贵和非珍贵电池的活性反应中心的效果,以获得有效的氧还原反应(ORR)活性。我们选择了表面改性碳形态学,研究了对Pt和COSE2催化中心的底物效应。 PT支持表面改性的碳纳米管(CNT)底物呈现,有缺陷的位点对于PT对其有效分散而言是重要的。 CO汽提工艺探测Pt相互作用与碳载体缺陷和石墨域的影响。与其他CNT底物上的Pt相比,观察到吡啶官能化CNT上负载的PT的改善的质量活性和特异性活性。类似地,与其他碳基底物相比,氮掺杂碳纳米冬式(NCNH)上负载的COSE2显示出碱性和酸条件的改善的ORR活性。与其他改性底物上负载的COSE2相比,在碱性和酸性培养基中观察到增强的质量活性和COSE_2 / NCNH的特异性活性。

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