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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Tailor-made open porous 2D CoFe/SN-carbon with slightly weakened adsorption strength of ORR/OER intermediates as remarkable electrocatalysts toward zinc-air batteries
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Tailor-made open porous 2D CoFe/SN-carbon with slightly weakened adsorption strength of ORR/OER intermediates as remarkable electrocatalysts toward zinc-air batteries

机译:量身定制的开放式多孔2D COFE / SN-碳,具有略微弱化的钻孔/伊尔中间体的吸附强度,作为锌空气电池的显着电催化剂

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摘要

A novel and versatile ionothermal synthesis is cleverly proposed to derive two dimensional CoFe/SN-doping and tailor-made open porous carbon nanosheets by inorganic eutectic salts as layered templates. Impressively, as-synthetized open pore structure of CoFe/SN-carbon can be precisely tailored by eutectic salt-templates. 2D CoFe/SN-doping carbon nanosheets (CoFe/SN-C) exhibit high specific surface area (1004 m(2) g(-1)) and ultrahigh pore volume (1.54 cm(3) g(-1)). As a result, the 2D CoFe/SN-C with ultrahigh meso/macro-porous pore volume (1.25 cm(3) g(-1)) exhibits superior catalytic activity for ORR (E-1/2 = 0.843 V) and OER (E-i=10 = 1.504 V) in alkaline medium. Simultaneously, the assembled zinc-air batteries with open porous CoFe/SN-C catalysts display high power density (169 mW cm(-2)) and outstanding stability (run stable for 5100 min). More importantly, density functional theory (DFT) calculation reveals that coupling of Fe-N-4 and Co-N-4 species can boost bifunctional catalytic activity originating from slightly weakened adsorption strength of ORR/OER intermediates on active sites.
机译:巧妙地提出了一种新颖和通用的离子热合成,以通过无机共晶盐作为层状模板衍生二维CoFe / Sn-掺杂和量身定制的开放多孔碳纳米晶片。令人印象深刻的是,通过共晶盐模板可以精确地定制CoFe / Sn-Carbon的尽可能合成的开放式孔隙结构。 2D COFE / SN掺杂碳纳米片(COFE / SN-C)表现出高比表面积(1004m(2)G(-1))和超高孔体积(1.54cm(3)g(-1))。结果,具有超高Meso /宏观多孔孔体积的2D COFE / SN-C(1.25cm(3)g(-1))对ORR(E-1/2 = 0.843V)和OER具有优异的催化活性(ei = 10 = 1.504 v)在碱性培养基中。同时,具有开放多孔COFE / SN-C催化剂的组装锌 - 空气电池显示出高功率密度(169mW cm(-2))和出色的稳定性(5100分钟运行稳定)。更重要的是,密度泛函理论(DFT)计算显示Fe-N-4和Co-N-4种的偶联可以提高源自略微弱化的orr / oer中间体在活性位点的吸附强度的双官能催化活性。

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