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首页> 外文期刊>Journal of Materials Research >Molybdenum polyoxometalate impregnated amino-functionalized mesoporous silica thin films as multifunctional materials for photochromic and electrochemical applications
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Molybdenum polyoxometalate impregnated amino-functionalized mesoporous silica thin films as multifunctional materials for photochromic and electrochemical applications

机译:多金属氧酸钼浸渍的氨基官能化介孔二氧化硅薄膜作为光致变色和电化学应用的多功能材料

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摘要

Molybdenum polyoxometalate (PMo)/silica mesoporous composite thin films, which can be applied as multifunctional materials for photochromic and electrochemical applications, were prepared by impregnating PMo into amino-functionalized mesoporous silica thin films. The composite thin films possess excellent reversible photochromic properties and change from colorless to blue under ultraviolet (UV) irradiation. It is shown in the study that intervalence charge transfer and ligand-to-metal charge transfer are the main reasons for photochromism. After UV irradiation, the charge transfer occurs by the reduction of heteropolyanions accompanying the formation of heteropolyblues with multivalence Mo (+6, +5), and the bleaching process of composite thin films is closely related to the presence of oxygen. Moreover, the composite thin films deposited on the indium tin oxide (ITO) substrate can be used as the electrode and have many advantages, including simple fabrication, fast response, and good stability. The modified ITO electrode retains the electrochemical properties of PMo, can catalyze the electroreduction of the BrO~(3-), and may be used as the current sensor for the BrO~(3-).
机译:通过将PMo浸渍到氨基官能化的介孔二氧化硅薄膜中,制备了可作为多功能材料用于光致变色和电化学应用的多金属氧钼(PMo)/二氧化硅介孔复合薄膜。该复合薄膜具有优异的可逆光致变色特性,并且在紫外线(UV)照射下从无色变为蓝色。研究表明,间隔电荷转移和配体-金属电荷转移是光致变色的主要原因。在紫外线照射后,电荷转移通过杂多阴离子的还原伴随着多价Mo(+6,+5)杂多蓝的形成而发生,复合薄膜的漂白过程与氧的存在密切相关。此外,沉积在氧化铟锡(ITO)衬底上的复合薄膜可用作电极,并具有许多优点,包括制造简单,响应速度快和稳定性好。改性后的ITO电极保留了PMo的电化学性质,可以催化BrO〜(3-)的电还原,可以用作BrO〜(3-)的电流传感器。

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