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Immobilization of colloidal particles into sub-100 nm porous structures by electrophoretic methods in aqueous media

机译:通过电泳方法将胶体颗粒固定成水性培养基中的电泳方法

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摘要

Conventional direct current (DC) and pulse-DC assisted electrophoretic depositions of colloidal particles, with average sizes of 10 and 50 nm, into sub-100 nm scaled pore arrays made from anodized aluminum substrate has been investigated. At the applied voltages lower than the decomposition voltage of water (~1 V), the number concentration of particle deposited on the surface by conventional DC was higher than that of pulse DC. The number of deposited particles increased with increasing pH. Deposition efficiency inside the pores can be enhanced by applying pulse DC. In the case of high (~10 V) applied voltage, no particles were observed inside pores even though pulse DC has been applied. The adhesion strength (removal behavior) of deposition was evaluated by applying a particle detachment simple system based on ultrasonic energy. The particles deposited inside the pores were not detached compared with those of the surface of the substrate.
机译:研究了常规的直流(DC)和脉冲-DC的电泳沉积胶体颗粒的平均尺寸为10和50nm,已经研究了由阳极氧化铝基板制成的亚100nm缩放的孔阵列。 在低于水(〜1V)的分解电压的施加电压下,通过常规DC沉积在表面上的颗粒的数量浓度高于脉冲DC。 沉积颗粒的数量随着pH的增加而增加。 通过施加脉冲DC可以提高孔内的沉积效率。 在高(〜10V)施加的电压的情况下,即使施加脉冲DC,在孔隙内没有观察到孔隙。 通过基于超声能量施加粒子分离简单系统来评价沉积的粘合强度(去除行为)。 与基板表面的表面相比,沉积在孔内的颗粒并未分离。

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