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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Activation of the Solid Silica Layer of Aerosol-Based C/SiO2 Particles for Preparation of Various Functional Multishelled Hollow Microspheres
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Activation of the Solid Silica Layer of Aerosol-Based C/SiO2 Particles for Preparation of Various Functional Multishelled Hollow Microspheres

机译:活化气溶胶基C / SiO2颗粒的二氧化硅层,以制备各种功能的多壳空心微球

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Double-shelled C/SiO2 hollow microspheres with an outer nanosheet-like silica shell and an inner carbon shell were reported. C/SiO2 aerosol particles were synthesized first by a one-step rapid aerosol process. Then the solid silica layer of the aerosol particles was dissolved and regrown on the carbon surface to obtain novel C/SiO2 double-shelled hollow microspheres. The new microspheres prepared by the facile approach possess high surface area and pore volume (226.3 m(2) g(-1), 0.51 cm(3) g(-1)) compared with the original aerosol particles (64.3 m(2) g(-1), 0.176 cm(3) g(-1)), providing its enhanced enzyme loading capacity. The nanosheet-like silica shell of the hollow microspheres favors the fixation of Au NPs (C/SiO2/Au) and prevents them from growing and migrating at 500 C. Novel C/C and C/Au/C (C/Pt/C) hollow microspheres were also prepared based on the hollow nanostructure. C/C microspheres (482.0 m(2) g(-1), 0.92 cm(3) g(-1)) were ideal electrode materials. In particular, the Au NPs embedded into the two carbon layers (C/Au/C, 431.2 m(2) g(-1), 0.774 cm(3) g(-1)) show a high catalytic activity and extremely chemical stability even at 850 C. Moreover, C/SiO2/Au, C/Au/C microspheres can be easily recycled and reused by an external magnetic field because of the presence of Fe3O4 species in the inner carbon shell. The synthetic route reported here is expected to simplify the fabrication process of double-shelled or yolk-shell microspheres, which usually entails multiple steps and a previously synthesized hard template. Such a capability can facilitate the preparation of various functional hollow microspheres by interfacial design.
机译:报道了具有外部纳米片状二氧化硅壳和内部碳壳的双壳C / SiO 2空心微球。首先通过一步式快速气溶胶工艺合成C / SiO2气溶胶颗粒。然后将气溶胶颗粒的固体二氧化硅层溶解并在碳表面上重新生长,以获得新型的C / SiO2双壳中空微球。通过新方法制备的新微球具有较高的表面积和孔体积(226.3 m(2)g(-1),0.51 cm(3)g(-1)),而原始气溶胶颗粒(64.3 m(2) g(-1),0.176 cm(3)g(-1)),提供增强的酶负载能力。中空微球的纳米片状二氧化硅壳有利于金纳米颗粒(C / SiO2 / Au)的固定,并防止它们在500°C下生长和迁移。新型C / C和C / Au / C(C / Pt / C还基于中空纳米结构制备了中空微球。 C / C微球(482.0 m(2)g(-1),0.92 cm(3)g(-1))是理想的电极材料。尤其是嵌入到两个碳层(C / Au / C,431.2 m(2)g(-1),0.774 cm(3)g(-1)中的Au NPs显示出高催化活性和极高的化学稳定性甚至在850°C时。由于内部碳壳中存在Fe3O4,C / SiO2 / Au,C / Au / C微球可以很容易地被外部磁场回收和再利用。预期本文报道的合成路线可简化双壳或蛋黄壳微球的制造过程,该过程通常需要多个步骤和先前合成的硬模板。这种能力可以通过界面设计促进各种功能中空微球的制备。

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