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用发光纳米晶功能化珠进行精密图案化。

Precision patterning with luminescent nanocrystal-functionalized beads.

机构信息

Department of Chemistry, University of Bari, Via Orabona 4I, Bari 70126, Italy.

出版信息

Langmuir. 2010 Sep 7;26(17):14294-300. doi: 10.1021/la1023339.

Abstract

A reliable strategy is presented to combine the preparation of functional building blocks based on polymer beads decorated with luminescent nanocrystals (NCs) and their precise positioning onto suitable patterns by capillary assembly technique. In particular, a layer-by-layer (LbL) polyelectrolyte (PE) deposition procedure has been implemented to provide uniform NC coverage on PS beads, thus conveying the optical properties of luminescent nanocrystals to highly processable PS beads. The latter have then been integrated into patterned stamps by means of template-driven capillary assembly. Their selective positioning has been directed by means of pattern geometry. The use of luminescent (CdSe)ZnS NCs offers a direct optical probe to evaluate the efficiency of the positioning procedure on the substrate, enabling the extension of the method to a wide range of materials, i.e., NCs with different compositions and specific geometry-dependent properties. Moreover, the precise control over the pattern geometry and the micrometer accuracy in positioning achieved by capillary assembly make such functional patterned structures excellent candidates for integration into devices exploiting specific size-dependent NC properties.

摘要

提出了一种可靠的策略,即将基于聚合物珠上装饰有发光纳米晶体 (NC) 的功能构建块的制备与通过毛细组装技术将其精确定位到合适的图案相结合。具体而言,实施了逐层 (LbL) 聚电解质 (PE) 沉积程序,以在 PS 珠上提供均匀的 NC 覆盖,从而将发光纳米晶体的光学性质传递给高度可加工的 PS 珠。然后,通过模板驱动的毛细组装将后者集成到图案化的印章中。通过图案几何形状来指导它们的选择性定位。使用发光 (CdSe)ZnS NC 提供了直接的光学探针,以评估在衬底上定位程序的效率,从而使该方法扩展到广泛的材料,即具有不同组成和特定几何形状依赖性特性的 NC。此外,通过毛细组装实现的图案几何形状的精确控制和微米级精度的定位使这种功能图案结构成为利用特定尺寸依赖性 NC 特性的器件集成的优秀候选者。

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