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Single Crystal-to-Single Crystal Irreversible Transformation from a Discrete Vanadium(V)−Alcoholate to an Aldehydic-Vanadium(IV) Oligomer

机译:单晶至单晶不可逆转变,从离散的钒(V)-醇盐转变为醛-钒(IV)低聚物

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摘要

An unprecedented single crystal-to-single crystal transformation occurs when a binuclear oxovanadium(V) compound [VV2O2(L)2] 1 involving 2,6-bis(hydroxymethyl)-p-cresol (H3L) as a bridging ligand is exposed simultaneously to white light and aerial oxygen to generate an oligomeric compound [VIV2O2(L*)2] 2 (H2L* is 3-hydroxymethyl-5-methylsalicylaldehyde). Each vanadium(V) center in 1 is reduced to vanadium(IV) in 2 at the expense of a two-electron alcohol-to-aldehyde oxidation in the coordinated ligand. The additional electron being released is possibly consumed by molecular oxygen to generate hydrogen peroxide.
机译:当双核含氧钒(V)化合物[V V 2 O 2 (L)<时,会发生前所未有的单晶至单晶转变。涉及2,6-双(羟甲基)-对甲酚(H 3 L)作为桥连配体的sub> 2 ] 1同时暴露于白光和空气中以产生低聚物[V IV 2 O 2 (L *) 2 ] 2(H 2 < L *是3-羟甲基-5-甲基水杨醛。将1中的每个钒(V)中心还原为2中的钒(IV),以配位配体中的二电子醇-醛氧化为代价。释放的额外电子可能会被分子氧消耗,从而产生过氧化氢。

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