首页> 外文会议>Conference on smart materials V; 20081210-12; Melbourne(AU) >Atomic layer deposition of SiO_2 on porous alumina membranes: Controlling the pore size and transport properties
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Atomic layer deposition of SiO_2 on porous alumina membranes: Controlling the pore size and transport properties

机译:SiO_2在多孔氧化铝膜上的原子层沉积:控制孔径和传输性能

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Atomic layer deposition (ALD) of SiO_2 onto nanoporous alumina (PA) membranes was investigated with the aim of adjusting the pore size and transport properties. PA membranes from commercial sources with a range of pore diameters (20 run, 100 nm and 200 nm) were used and modified by atomic layer deposition using tris(tert-butoxy)silanol and water as the precursor couple. By adjusting the number of deposition cycles, the thickness of the conformal silica coating was controlled, reducing the effective pore diameter, and subsequently changing the transport properties of the PA membrane. Silica coated PA membranes with desired pore diameters from <5 nm to 100 nm were fabricated. In addition to the pore size, the transport properties and selectivity of fabricated silica coated PA membranes were controlled by chemical functionalisation using a silane with hydrophobic properties. Structural and chemical properties of modified membranes were studied by dynamic secondary ion mass spectrometry (DSIMS) and scanning electron microscopy (SEM). Spectrophotometric methods were used to evaluate the transport properties and selectivity of silica coated membranes by permeation studies of hydrophobic and hydrophilic organic molecules. The resultant silica/PA membranes with specific surface chemistry and controlled pore size are applicable for molecular separation, cell culture, bioreactors, biosensing and drug delivery.
机译:研究了SiO_2在纳米多孔氧化铝(PA)膜上的原子层沉积(ALD),旨在调节孔径和传输性能。使用具有一定孔径范围(20nm,100nm和200nm)的商业来源的PA膜,并通过使用三(叔丁氧基)硅烷醇和水作为前体对的原子层沉积来改性。通过调节沉积循环数,可以控制保形二氧化硅涂层的厚度,减小有效孔径,并随后改变PA膜的传输性能。制备了具有<5 nm至100 nm所需孔径的二氧化硅涂覆的PA膜。除了孔径之外,使用具有疏水性的硅烷通过化学官能化来控制所制备的二氧化硅涂覆的PA膜的传输性能和选择性。通过动态二次离子质谱(DSIMS)和扫描电子显微镜(SEM)研究了改性膜的结构和化学性质。通过对疏水性和亲水性有机分子的渗透研究,使用分光光度法评估二氧化硅涂层膜的传输性能和选择性。所得的具有特定表面化学性质和受控孔径的二氧化硅/ PA膜适用于分子分离,细胞培养,生物反应器,生物传感和药物递送。

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