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Transfer of multi-DNA patches by colloidal stamping

机译:通过胶体印迹转移多DNA贴片

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摘要

Patchy particles have received great attention due to their ability to develop directional and selective interactions and serve as building units for the self-assembly of innovative colloidal molecules and crystalline structures. Although synthesizing particles with multiple dissimilar patches is still highly challenging and lacks efficient methods, these building blocks would open paths towards a broader range of ordered materials with inherent properties. Herein, we describe a new approach to pattern functional DNA patches at the surface of particles, by the use of colloidal stamps. DNA inks are transferred only at the contact zones between the target particles and the stamps thanks to selective strand-displacement reactions. The produced DNA-patchy particles are ideal candidates to act as advanced precision/designer building blocks to self-assemble the next generation of colloidal materials.
机译:片状颗粒由于受到极大关注他们的发展方向和能力选择性相互作用和作为建筑单位自组装的创新胶体分子和晶体结构。尽管合成粒子与多个不同的补丁仍然是非常具有挑战性的缺乏有效的方法,这些建筑块将朝着更广泛开放的路径订购材料的固有属性。在此,我们描述了一种新的方法模式功能性DNA表面的补丁粒子,通过使用胶体邮票。油墨转移只在接触区目标粒子和邮票由于选择性链置换反应。作为先进的理想候选人精密/设计师构建块自组装胶体的下一代材料。

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