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zhang
Lv1
20 积分
2022-08-29 加入
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In@Mn3O4 with Rich Interface Low‐Coordination Mn Active Sites for Boosting Electrocatalytic Nitrogen Reduction
2天前
已完结
Identification of Cu(111) as Superior Active Sites for Electrocatalytic NO Reduction to NH3 with High Single‐Pass Conversion Efficiency
1个月前
已完结
Cu@Co with Dilatation Strain for High‐Performance Electrocatalytic Reduction of Low‐Concentration Nitric Oxide
1个月前
已完结
Substitution Index‐Prediction Rules for Low‐Potential Plateau of Hard Carbon Anodes in Sodium‐Ion Batteries
1个月前
已完结
Enabling Direct H2O2 Production in Acidic Media through Rational Design of Transition Metal Single Atom Catalyst
1个月前
已完结
Engineering Synergetic N, O Co-Doped Porous Carbon Host with Interconnected Reaction Microenvironments for Long-Life Zinc-Iodine Batteries
2个月前
已完结
Bifunctional Oxygen‐Defect Bismuth Catalyst toward Concerted Production of H2O2 with over 150% Cell Faradaic Efficiency in Continuously Flowing Paired‐Electrosynthesis System
7个月前
已完结
Simulation-guided atomic Ni catalyst with oxygen-enriched coordination environment for H2O2 electrosynthesis coupled with 5-HMF oxidation
8个月前
已完结
Structures and energetics of H2O adsorption on the Fe3O4 (111) surface
9个月前
已完结
Modulating the Electrolyte Microenvironment in Electrical Double Layer for Boosting Electrocatalytic Nitrate Reduction to Ammonia
9个月前
已完结
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标题错误
1年前
标题错误
1年前
所求文献题目是Modulating the Active Hydrogen Adsorption on Fe─N Interface for Boosted Electrocatalytic Nitrate Reduction with Ultra-Long Stability
1年前
doi错误
1年前
非正常排版
1年前
不是最终排版的文章
1年前
已找到【积分已退回】
1年前
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