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Catalysts confined inside CNTs derived from 2D metal-organic frameworks for electrolysis

机译:催化剂在碳纳米管内部来自2 d电解有机框架

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Two-dimensional metal-organic framework (MOF) nanosheets have attracted considerable research interest as electrocatalysts, and thermal annealing is important to boost their conductivity. The effect of annealing atmosphere on the electrochemical performance of 2D MOFs and their catalytic center structure have been investigated. The Co-MOF/H(2)synthesized by annealing of 2D MOF under a H(2)atmosphere has shown a significantly enhanced catalytic activity compared with those annealed under an Ar atmosphere (Co-MOF/Ar). The Co-MOF/H(2)has 2-3 graphitic layers of graphitic carbon coating and presents a large amount of high valent Co2+. H(2)annealing leads to a fast reduction of Co-MOF to Co/CoO(x)nanoparticles and catalyzes the growth of CNTs with MOF feed as carbon source. The Co-MOF/H(2)shows a high electrocatalytic activity which requires an overpotential of 312 mV to reach a current density of 10 mA cm(-2). A Co-MOF/H-2-based water electrolyzer requires a potential of 1.619 V to reach a current density of 10 mA cm(-2)for overall water splitting in 1.0 M KOH. After 25 h of continuous operation for water electrolysis, the Co-MOF/H-2-based cell has shown a negligible increase in the overpotential, indicating its superior durability compared to the 2D Co-MOF.
机译:二维有机框架(MOF)nanosheets吸引了相当多的研究electrocatalysts,和热的兴趣退火对提高很重要导电性。在2 d mof的电化学性能它们的催化中心结构调查。退火的2 d MOF H(2)大气显著提高催化活性与退火下一个基于“增大化现实”技术大气(Co-MOF / Ar)。石墨层的石墨碳涂层提供了大量的高化合价的Co2 +。H(2)退火导致Co-MOF的快速减少有限公司/首席运营官(x)纳米粒子和催化增长的碳纳米管与MOF饲料碳源。Co-MOF / H(2)显示了一个高electrocatalytic活动需要一个312年的过电压mV达成马电流密度为10厘米(2)。Co-MOF / H-2-based水电解器需要潜在的1.619 V电流密度马10厘米(2)1.0总体水分裂M KOH。水的电解,Co-MOF / H-2-based细胞显示超电势的增加可以忽略不计,表明相比,其优越的耐用性2 d Co-MOF。

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