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Development of efficient electrocatalysts via molecular hybridization of NiMn layered double hydroxide nanosheets and graphene

机译:发展高效electrocatalysts通过分子杂交NiMn分层的两倍氢氧化nanosheets和石墨烯

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Ni2+Mn3+ layered double hydroxide (LDH) nanoplatelets have been hydrothermally synthesized in a homogeneous precipitation of mixed Ni2+/Mn2+ salts at a molar ratio of 2 : 1 via the hydrolysis of hexamethylenetetramine (HMT) and in situ oxidation with H2O2. After anion-exchange, NiMn LDH was exfoliated into unilamellar nanosheets. Subsequent flocculation of NiMn LDH nanosheets with (reduced) graphene oxide (GO/rGO) into superlattice composites was achieved and further tested as electrocatalysts for oxygen evolution reaction (OER). The face-to-face heteroassembly of NiMn LDH nanosheets with conductive rGO at an alternating sequence resulted in a small overpotential of 0.26 V and a Tafel slope of 46 mV per decade, which is much superior to as-exfoliated nanosheets. The analyses of electrochemical activity surface area (ECSA) and impedance spectra clearly indicated that the superlattice structure was ideal in facilitating the migration/transfer of the charge and reactants, revealing the electrochemical energetics and mechanism behind the synergistic effect arising from molecular hybridization. The proof of concept toward total water splitting using the newly developed hybrid electrocatalyst was demonstrated by an electrolysis cell powered by a single AA battery.
机译:Ni2 + Mn3 +层状双氢氧化物(LDH)nanoplatelets被热水地合成均匀的沉淀混合Ni2 + / Mn2 +盐的摩尔比率2:1通过hexamethylenetetramine的水解(HMT)和原位氧化与过氧化氢。阴离子交换,NiMn LDH剥落了单膜nanosheets。的NiMn LDH nanosheets与石墨烯(减少)氧化(/ rGO)进入超点阵复合材料electrocatalysts实现和进一步测试对氧进化反应(OER)。面对面heteroassembly NiMn LDH在一个交流与导电nanosheets rGO导致小超电势的序列0.26 V和塔菲尔的斜率46 mV每十年,这是优于as-exfoliated多少nanosheets。活动面积(ECSA)发起和阻抗光谱明显表明,超晶格在促进结构是理想的迁移/电荷转移和反应物,揭示了电化学能量和背后的机制产生的协同效应从分子杂交。概念向总水分割使用新开发的混合electrocatalyst由电解单元由一个证明单一的AA电池。

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