过渡金属纳米晶体(TMNs)被广泛应用于诸多催化反应。其中,具有高度有序原子排列的单晶TMNs通常作为模型催化剂用于基础电催化机制的研究,而具有大量晶界的多晶TMNs则常用于揭示催化反应中缺陷与活性的关系。目前已报道的合成单/多晶TMNs(MC/PC-TMNs)的方法均依赖外部实验参数(如浓度和温度等)的精确调控,制备过程复杂且耗时。此外,制备单/多晶结构所需的临界参数值往往难以确定,导致形态难以...
Source Link过渡金属纳米晶体(TMNs)被广泛应用于诸多催化反应。其中,具有高度有序原子排列的单晶TMNs通常作为模型催化剂用于基础电催化机制的研究,而具有大量晶界的多晶TMNs则常用于揭示催化反应中缺陷与活性的关系。目前已报道的合成单/多晶TMNs(MC/PC-TMNs)的方法均依赖外部实验参数(如浓度和温度等)的精确调控,制备过程复杂且耗时。此外,制备单/多晶结构所需的临界参数值往往难以确定,导致形态难以...
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