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Nanoscale gamma-AlO(OH)Hollow Spheres:Synthesis and Container-Type Functionality

机译:纳米级γ-AlO(OH)空心球:合成和容器型功能

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AlO(OH)hollow spheres are realized via a water-in-oil(w/o)microemulsiort,applying the liquid-to-liquid-phase boundary of the micellar system as a template.Scanning electron microscopy,transmission electron microscopy(TEM),and dynamic light scattering analyses show the presence of nonagglomerated hollow spheres exhibiting an outer diameter of about 30 nm and a wall thickness of 5-6 nm.High-resolution TEM images show highly ordered lattice fringes,indicating the crystallinity of the sphere wall and identifying the wall to consist of y-AlO(OH)(boehmite).The container functionality of as-prepared AlO(OH)hollow spheres is validated as a proof of concept by encapsulating the fluorescent dye rhodamine(R6G)inside the alumina shell.Subsequent to centrifugation and careful purification,R6G is evidenced via photoluminescence to be still present.Finally,release of R6G is initiated by acidic dissolution of the sphere wall.
机译:AlO(OH)空心球是通过油包水(w / o)微乳液实现的,以胶束体系的液-液相边界为模板。扫描电子显微镜,透射电子显微镜(TEM)动态光散射分析表明存在未聚集的空心球,其外径约为30 nm,壁厚为5-6 nm。高分辨率TEM图像显示出高度有序的晶格条纹,表明球壁的结晶度和通过将荧光染料若丹明(R6G)封装在氧化铝外壳内,验证了制备的AlO(OH)空心球的容器功能性,从而验证了所制备的AlO(OH)空心球的容器功能性。离心和仔细纯化后,通过光致发光证明仍然存在R6G。最后,通过球体壁的酸性溶解来引发R6G的释放。

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