Department of Chemistry, Stanford University , Stanford, California 94305, United States.
Department of Chemistry, Foothill College , Los Altos Hills, California 94022, United States.
J Am Chem Soc. 2017 Jan 25;139(3):1215-1225. doi: 10.1021/jacs.6b11260. Epub 2017 Jan 11.
NO is a classic non-innocent ligand, and iron nitrosyls can have different electronic structure descriptions depending on their spin state and coordination environment. These highly covalent ligands are found in metalloproteins and are also used as models for Fe-O systems. This study utilizes iron L-edge X-ray absorption spectroscopy (XAS), interpreted using a valence bond configuration interaction multiplet model, to directly experimentally probe the electronic structure of the S = 0 {FeNO} compound [Fe(PaPy)NO] (PaPy = N,N-bis(2-pyridylmethyl)amine-N-ethyl-2-pyridine-2-carboxamide) and the S = 0 [Fe(PaPy)CO] reference compound. This method allows separation of the σ-donation and π-acceptor interactions of the ligand through ligand-to-metal and metal-to-ligand charge-transfer mixing pathways. The analysis shows that the {FeNO} electronic structure is best described as Fe-NO(neutral), with no localized electron in an NO π* orbital or electron hole in an Fe dπ orbital. This delocalization comes from the large energy gap between the Fe-NO π-bonding and antibonding molecular orbitals relative to the exchange interactions between electrons in these orbitals. This study demonstrates the utility of L-edge XAS in experimentally defining highly delocalized electronic structures.
NO 是一种经典的非 innocent 配体,铁亚硝酰基可以根据其自旋状态和配位环境具有不同的电子结构描述。这些高度共价的配体存在于金属蛋白中,也被用作 Fe-O 系统的模型。本研究利用铁 L 边 X 射线吸收光谱(XAS),结合价键组态相互作用多体模型进行解释,直接实验探测 S = 0 {FeNO} 化合物 [Fe(PaPy)NO](PaPy = N,N-双(2-吡啶甲基)-N-乙基-2-吡啶-2-甲酰胺)和 S = 0 [Fe(PaPy)CO] 参比化合物的电子结构。这种方法允许通过配体到金属和金属到配体电荷转移混合途径分离配体的 σ 给体和 π 受体相互作用。分析表明,{FeNO} 电子结构最好描述为 Fe-NO(中性),NO π*轨道中没有局域电子,Fe dπ轨道中也没有电子空穴。这种离域来自于 Fe-NO π 成键和反键分子轨道之间的能量间隙相对较大,与这些轨道中电子之间的交换相互作用相比。本研究证明了 L 边 XAS 在实验定义高度离域电子结构方面的实用性。