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纖鋅礦ZnS在油-水界面處的室溫制備及光催化性能

Room-temperature synthesis of wurtzite ZnS at the oil-water interface and its photocatalytic performance

  • 摘要: 通過控制硫化鋅室溫成核反應在油-水液-液界面處進行,并采用羥基端基自組裝分子層修飾的聚合物膜作為柔性襯底,最終在襯底表面制得硫化鋅納米晶膜.X射線衍射表征顯示產物為高溫穩定的纖鋅礦結構.掃描電鏡和透射電鏡觀察發現硫化鋅膜由粒徑30-50 nm的顆粒構成.產物對甲基橙的光催化降解研究證實在紫外光輔助下硫化鋅納米晶膜對有機物的降解能力.鑒于上述結果,提出了一種結合油-水液-液界面及自組裝分子層功能化的襯底,在室溫且無添加劑條件下一步制備高溫穩定相ZnS功能膜的方法,并分析了產物形貌與光催化性能間的關系.

     

    Abstract: Room-temperature synthesis of ZnS was controlled at the oil-water liquid-liquid interface. Combining with polymer films which were modified by hydroxyl-terminated self-assembled monolayers(SAMs) as flexible substrates,nanocrystalline ZnS films were fabricated on the substrates. X-ray diffraction analysis indicates that the ZnS films have a hexagonal wurtzite structure,which is the high-temperature polymorph of sphalerite. Scanning electron microscopy and transmission electron microscopy observations show that the ZnS films consist of nanoparticles with the diameter of 30-50 nm. Photocatalytic degradation of methyl orange by these products under UV-light irradiation was observed,which confirmed the photocatalytic degradation ability of the nanocrystalline ZnS films to organics. In view of the results,a facile one-step method,combining the oil-water interface with the SAMs-modified substrate,was proposed for fabricating the wurtzite ZnS functional films without any additive at room temperature. The relationship between photocatalytic performance and the morphology of the products was also discussed.

     

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