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利用强电场透析快速制备结晶胶体阵列。

Rapid preparation of crystalline colloidal arrays using a strong electric field dialysis.

作者信息

Dong Jian, Qian Weiping, Cao Yuexia, Xiao Xinxing, Xiao Zhongdang

机构信息

Department of Biological Science and Medical Engineering, State Key Laboratory of Bioelectronics, Southeast University, Nanjing, PR China.

出版信息

J Nanosci Nanotechnol. 2006 Apr;6(4):1009-13. doi: 10.1166/jnn.2006.190.

Abstract

We present a simple method for rapid preparation of crystalline colloidal arrays (CCAs) by a strong electric field dialysis (SEFD). This method is based on rapid removing of ionic impurities in colloidal suspensions by applying a strong electric field. In a SEFD process, the negatively charged ions in colloidal suspensions are rapidly driven to the anode, the positively charged ones are rapidly driven to the cathode, and the colloidal particles are withheld in the dialysis tube. It was shown that the colloidal particles aggregated on the wall of the dialysis tube could block the SEFD process, which could be overcome by reversing the direction of the electric field. The purified colloidal particles can self-assemble into a crystalline colloidal array, which has an electrostatically stabilized three-dimensional periodic array of colloidal particles with a characteristic lattice spacing that can be varied by dilution. The reflection spectra show distinct peaks due to diffraction from CCAs. Atomic force microscopy (AFM) image illustrates the non-contacted ordering of the colloidal particles in the CCAs embedded in gels. This indicates the formation of high-quality single CCAs. Using a SEFD method, the preparation time of CCAs can be reduced. This new technique will greatly speed up the process of preparing polymerized crystalline colloidal arrays (PCCAs) into real-world application in the analytical field.

摘要

我们提出了一种通过强电场透析(SEFD)快速制备晶体胶体阵列(CCA)的简单方法。该方法基于通过施加强电场快速去除胶体悬浮液中的离子杂质。在SEFD过程中,胶体悬浮液中的带负电离子迅速被驱动到阳极,带正电离子迅速被驱动到阴极,而胶体颗粒则被截留在透析管中。结果表明,聚集在透析管壁上的胶体颗粒会阻碍SEFD过程,这可以通过反转电场方向来克服。纯化后的胶体颗粒可以自组装成晶体胶体阵列,其具有由静电稳定的胶体颗粒三维周期性阵列,其特征晶格间距可通过稀释来改变。反射光谱显示出由于CCA衍射而产生的明显峰值。原子力显微镜(AFM)图像说明了嵌入凝胶中的CCA中胶体颗粒的非接触式有序排列。这表明形成了高质量的单个CCA。使用SEFD方法,可以缩短CCA的制备时间。这项新技术将大大加快将聚合晶体胶体阵列(PCCA)制备到分析领域实际应用中的过程。

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