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单层氮化硼空位缺陷的形成与稳定性的研究 被引量:2
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作者 欧阳艺昕 孙卿 +1 位作者 陈乾 王金兰 《化工时刊》 CAS 2014年第9期4-8,共5页
本文利用密度泛函理论方法研究了单层氮化硼中多原子空位缺陷的结构和稳定性。研究发现缺陷多为对称结构,并且存在幻数现象。通过对不同尺寸缺陷离解能的回归分析,发现对于尺寸较大的缺陷,周围的氮原子数越多,缺陷越稳定,该结论很好的... 本文利用密度泛函理论方法研究了单层氮化硼中多原子空位缺陷的结构和稳定性。研究发现缺陷多为对称结构,并且存在幻数现象。通过对不同尺寸缺陷离解能的回归分析,发现对于尺寸较大的缺陷,周围的氮原子数越多,缺陷越稳定,该结论很好的解释了实验中观察到的现象。 展开更多
关键词 氮化硼 二维材料 空位缺陷
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表面含氧物种对电催化CO_(2)还原的内在促进机制
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作者 付战照 欧阳艺昕 +2 位作者 吴明亮 凌崇益 王金兰 《Science Bulletin》 SCIE EI CAS CSCD 2024年第10期1410-1417,共8页
Oxygen-containing species have been demonstrated to play a key role in facilitating electrocatalytic CO_(2) reduction(CO_(2)RR),particularly in enhancing the selectivity towards multi-carbon(C2+)products.However,the u... Oxygen-containing species have been demonstrated to play a key role in facilitating electrocatalytic CO_(2) reduction(CO_(2)RR),particularly in enhancing the selectivity towards multi-carbon(C2+)products.However,the underlying promotion mechanism is still under debate,which greatly limits the rational optimization of the catalytic performance of CO_(2)RR.Herein,taking CO_(2) and O_(2) co-electrolysis over Cu as the prototype,we successfully clarified how O_(2) boosts CO_(2)RR from a new perspective by employing comprehensive theoretical simulations.Our results demonstrated that O_(2) in feed gas can be rapidly reduced into^(*)OH,leading to the partial oxidation of Cu surface under reduction conditions.Surface^(*)OH accelerates the formation of quasi-specifically adsorbed K^(+)due to the electrostatic interaction between^(*)OH and K^(+)ions,which significantly increases the concentration of K^(+)near the Cu surface.These quasi-specifically adsorbed K+ions can not only lower the C-C coupling barriers but also promote the hydrogenation of CO_(2) to improve the CO yield rate,which are responsible for the remarkably enhanced efficiency of C^(2+)products.During the whole process,O_(2) co-electrolysis plays an indispensable role in stabilizing surface^(*)OH.This mechanism can be also adopted to understand the effect of high pH of electrolyte and residual O in oxide-derived Cu(OD-Cu)on the catalytic efficiency towards C^(2+)products.Therefore,our work provides new insights into strategies for improving C^(2+)products on the Cu-based catalysts,i.e.,maintaining partial oxidation of surface under reduction conditions. 展开更多
关键词 CO_(2)reduction First-principles calculations Oxygen-containing species Reaction mechanism
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