首页> 外文期刊>Inorganica Chimica Acta >Photoactivation of water by Cp-2'Mo and photochemical studies of Cp2MoO. Investigation of a proposed water-splitting cycle and preparation of a water-soluble molybdocene dihydride
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Photoactivation of water by Cp-2'Mo and photochemical studies of Cp2MoO. Investigation of a proposed water-splitting cycle and preparation of a water-soluble molybdocene dihydride

机译:Cp-2'Mo对水的光活化作用以及Cp2MoO的光化学研究。研究拟议的水分解周期并制备水溶性二茂钼

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Irradiation (lambda > 350 nm) of Cp-2'MoH2 (Cp' = eta(5)-C5H4CH3) dissolved in 3:5 H2O-CH3CN (v/v) results in the quantitative formation of Cp-2'MoO and 2 equiv. of H-2. In light of this result, the photochemistry of the Cp-2'MoO and Cp-2'MoO complexes was re-examined to determine the feasibility of using these molybdocene complexes as sensitizers in a photochemical water-splitting scheme. The metal-containing products formed by irradiation of Cp2MoO were [Cp2MoO2(MoO2)](2), {(eta-C5H5)(mu-[eta(1):eta(5)C(5)H(4)])Mo}(2) (C20H18Mo2) and Cp2MoPPh3 (in the presence of PPh3), but gas chromatographic and mass spectroscopic analyses showed that free O-2 was not a product. Variations in the temperature, pH of the solution, and wavelength of the irradiating light did not yield any O-2. Experiments showed that O-2 reacted with Cp2MoO to form [Cp2MoO2(MoO2)(2)]. A sensitive apparatus was therefore built to remove and quantitate any O-2 generated in solution (as little as 0.02 mu mol of O-2) before it could react with Cp2MoO, but no O-2 was detected in experiments using this apparatus. It is concluded that O-2 is not produced by irradiation of Cp2MoO. Electron spin resonance experiments in the presence of alpha-phenyl-tert-butylnitrone, a radical spin trap, demonstrated that Cp* radicals form when Cp2MoO is irradiated, and it is proposed that this photoprocess may be responsible for the observed photochemistry. (C) 2000 Elsevier Science S.A. All rights reserved. [References: 42]
机译:溶解在3:5 H2O-CH3CN(v / v)中的Cp-2'MoH2(Cp'= eta(5)-C5H4CH3)的辐照(λ> 350 nm)导致定量形成Cp-2'MoO和2当量H-2。根据该结果,重新检查了Cp-2'MoO和Cp-2'MoO复合物的光化学,以确定在光化学水分解方案中使用这些钼烯复合物作为敏化剂的可行性。通过Cp2MoO辐射形成的含金属产物为[Cp2MoO2(MoO2)](2),{(eta-C5H5)(mu- [eta(1):eta(5)C(5)H(4)]) Mo}(2)(C20H18Mo2)和Cp2MoPPh3(在PPh3存在下),但气相色谱和质谱分析表明游离的O-2不是产物。温度,溶液的pH值和照射光波长的变化都不会产生任何O-2。实验表明,O-2与Cp2MoO反应形成[Cp2MoO2(MoO2)(2)]。因此,建立了一种灵敏的装置,以除去和定量溶液中生成的任何O-2(低至0.02μmol的O-2),然后它才能与Cp2MoO反应,但是在使用该装置的实验中未检测到O-2。结论是,Cp2MoO的照射不会产生O-2。在存在自由基自旋阱的α-苯基叔丁基硝酮存在下的电子自旋共振实验表明,当辐照Cp2MoO时会形成Cp *自由基,并且有人提出该光过程可能是所观察到的光化学的原因。 (C)2000 Elsevier Science S.A.保留所有权利。 [参考:42]

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