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Tunable top-down fabrication and functional surface coating of single-crystal titanium dioxide nanostructures and nanoparticles

机译:可调的自顶向下装配和功能单晶钛的表面涂层二氧化碳纳米结构和纳米粒子

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摘要

Titanium dioxide (TiO2) is a key component of diverse optical and electronic applications that exploit its exceptional material properties. In particular, the use of TiO2 in its single-crystalline phase can offer substantial advantages over its amorphous and polycrystalline phases for existing and yet-to-be-developed applications. However, the implementation of single-crystal TiO2 has been hampered by challenges in its fabrication and subsequent surface functionalization. Here, we introduce a novel top-down approach that allows for batch fabrication of uniform high-aspect-ratio single-crystal TiO2 nanostructures with targeted sidewall profiles. We complement our fabrication approach with a functionalization strategy that achieves dense, uniform, and area-selective coating with a variety of biomolecules. This allows us to fabricate single-crystal rutile TiO2 nanocylinders tethered with individual DNA molecules for use as force-and torque-transducers in an optical torque wrench. These developments provide the means for increased exploitation of the superior material properties of single-crystal TiO2 at the nanoscale.
机译:二氧化钛是一个关键组成部分不同的光学和电子应用程序利用其特殊的材料性能。特别地,使用的二氧化钛可以提供大量单个水晶阶段优势其非晶和多晶阶段为现有的和有待开发应用程序。单晶二氧化钛已经受阻在制造和后续的挑战表面功能化。小说自顶向下方法,允许批量制造统一high-aspect-ratio单晶二氧化钛纳米结构与目标侧壁概要文件。功能化策略的方法达到致密,均匀,area-selective涂层与多种生物分子。让我们制造单晶金红石二氧化钛nanocylinders拴在与单个DNA分子用作惩罚——torque-transducers在一个光学力矩扳手。为提高开发提供手段优越的材料的性质单晶纳米二氧化钛。

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