化学
亚硝酸盐
电化学
催化作用
选择性
吸附
无机化学
金属
联轴节(管道)
还原(数学)
选择性催化还原
电极
反应机理
电催化剂
化学还原
多相催化
过渡金属
化学反应
选择性还原
电极电位
作者
Nia J. Harmon,Jana Jelušić,Jan Paul Menzel,Bo Shang,Conor L. Rooney,Gary W. Brudvig,Víctor S. Batista,Hailiang Wang
摘要
ABSTRACT We demonstrate for the first time that Pd metal can convert NO 2 − to N 2 O, N 2 , NH 2 OH, and NH 3 in a near‐neutral electrolyte, with high selectivity to each product attained by adjusting the applied electrode potential. Notably, N 2 and NH 2 OH, which are typically difficult to access, emerge as dominant products. Mechanistic investigation combining computational and experimental studies shows that NO 2 − electroreduction on Pd is controlled by the applied potential and surface coverage of adsorbed H atoms. The interplay of these two factors gives rise to four distinct reaction microenvironments that are consistent with the experimentally observed product distributions. At positive potentials, the pristine Pd surface favors *NO‐*NO coupling and N 2 O production, whereas at less positive potentials, the same surface with more reducing power favors N 2 . At mildly negative potentials, partial H coverage promotes *NO reduction over coupling and leads to NH 2 OH production, while at strongly negative potentials, abundant adsorbed H drives complete reduction to NH 3 . Together, these studies provide insight into the rich reductive chemistry at Pd active sites under electrochemical control and enable the rational design of Pd catalysts for environmental remediation and sustainable chemical synthesis.
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