A computational mechanistic study of CH hydroxylation with mononuclear copper-oxygen complexes
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作者:
Lan, Zhenzhuo
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Univ Southern Calif, Mork Family Dept Chem Engn & Mat Sci, Los Angeles, CA 90007 USAUniv Southern Calif, Mork Family Dept Chem Engn & Mat Sci, Los Angeles, CA 90007 USA
Lan, Zhenzhuo
[1
]
Toney, Jacob
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Univ Southern Calif, Mork Family Dept Chem Engn & Mat Sci, Los Angeles, CA 90007 USAUniv Southern Calif, Mork Family Dept Chem Engn & Mat Sci, Los Angeles, CA 90007 USA
Toney, Jacob
[1
]
Sharada, Shaama Mallikarjun
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Univ Southern Calif, Mork Family Dept Chem Engn & Mat Sci, Los Angeles, CA 90007 USA
Univ Southern Calif, Dept Chem, Los Angeles, CA 90007 USAUniv Southern Calif, Mork Family Dept Chem Engn & Mat Sci, Los Angeles, CA 90007 USA
Sharada, Shaama Mallikarjun
[1
,2
]
机构:
[1] Univ Southern Calif, Mork Family Dept Chem Engn & Mat Sci, Los Angeles, CA 90007 USA
[2] Univ Southern Calif, Dept Chem, Los Angeles, CA 90007 USA
We present a computational study of methane hydroxylation by oxygen-bound monocopper complexes with the twin goals of resolving the active site identity and preferred mechanism of CH activation. Oxyl ([Cu(ii)O(Im)(3)](+)) and superoxo ([Cu(ii)OO(Im)(3)](+)) monocopper centers coordinated to three imidazole N-donors are investigated. Constrained density functional theory (CDFT) is necessary to overcome delocalization errors inherent to DFT and generate catalyst geometries with physically meaningful charge and spin at the active site. A comparison of ground-state triplet and excited-state singlet potential energy profiles for CH hydroxylation shows that oxyl is the more likely active site. For oxyl, spin crossing from the triplet to singlet potential energy surface may yield a lower energy hydroxylation pathway when compared to the pure triplet surface. The calculation of minimum energy crossing points is an essential next step towards determining whether CH hydroxylation proceeds via a two-step radical or single-step oxo-insertion mechanism.
机构:
Fuzhou Univ, Coll Chem, Fuzhou 350108, Fujian, Peoples R China
Chinese Acad Sci, Fujian Inst Res Struct Matter, State Key Lab Struct Chem, Fuzhou 350002, Fujian, Peoples R China
Univ Chinese Acad Sci, Fujian Coll, Fuzhou 350002, Fujian, Peoples R ChinaFuzhou Univ, Coll Chem, Fuzhou 350108, Fujian, Peoples R China
Wen, Miao
Liu, Zhuyang
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Fuzhou Univ, Coll Chem, Fuzhou 350108, Fujian, Peoples R China
Chinese Acad Sci, Fujian Inst Res Struct Matter, State Key Lab Struct Chem, Fuzhou 350002, Fujian, Peoples R China
Univ Chinese Acad Sci, Fujian Coll, Fuzhou 350002, Fujian, Peoples R ChinaFuzhou Univ, Coll Chem, Fuzhou 350108, Fujian, Peoples R China
Liu, Zhuyang
Liu, Chong
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Chinese Acad Sci, Fujian Inst Res Struct Matter, State Key Lab Struct Chem, Fuzhou 350002, Fujian, Peoples R China
Univ Chinese Acad Sci, Fujian Coll, Fuzhou 350002, Fujian, Peoples R ChinaFuzhou Univ, Coll Chem, Fuzhou 350108, Fujian, Peoples R China
Liu, Chong
Zhuang, Wei
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Chinese Acad Sci, Fujian Inst Res Struct Matter, State Key Lab Struct Chem, Fuzhou 350002, Fujian, Peoples R China
Univ Chinese Acad Sci, Fujian Coll, Fuzhou 350002, Fujian, Peoples R ChinaFuzhou Univ, Coll Chem, Fuzhou 350108, Fujian, Peoples R China