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Solution Processable Colloidal Nanoplates as Building Blocks for High-Performance Electronic Thin Films on Flexible Substrates

机译:可溶液加工的胶体纳米板作为柔性基板上高性能电子薄膜的构建基块

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摘要

Low-temperature solution-processed electronic materials on plastic substrates are of considerable interest for flexible electronics. Solution dispersible inorganic nanostructures (e.g., zero-dimensional (0D) quantum dots or one-dimensional (1D) nanowires) have emerged as interesting ink materials for low-temperature solution processing of electronic thin films on flexible substrates, but usually with limited performance due to the large number of grain boundaries (0D) or incomplete surface coverage (1D). Here, we report two-dimensional (2D) colloidal nanoplates of layered materials as a new ink material for solution assembly of high-performance electronic thin films. The 2D colloidal nanoplates exhibit few dangling bonds and represent an ideal geometry for the assembly of highly uniform continuous thin films with greatly reduced grain boundaries dictated by large-area conformal plane-plane contact with atomically flat/clean interfaces. It can therefore promise efficient charge transport across neighboring nanoplates and throughout the entire thin film to enable unprecedented electronic performance. We show that Bi2Se3 and Bi2Te3 nanoplates can be synthesized with well-controlled thickness (6-15 nm) and lateral dimension (0.5-3 mu m) and can be used for the assembly of highly uniform continuous thin films with a full surface coverage and an excellent room temperature carrier mobility >100 cm(2)center dot V-1 center dot s(-1), approaching that of chemical vapor deposition grown materials. Our study demonstrates a general strategy to using 2D nanoplates as a unique building block for the construction of high-performance electronic thin films on plastic substrates for future flexible electronics and optoelectronics.
机译:对于柔性电子设备,塑料基板上的低温固溶处理电子材料备受关注。溶液可分散的无机纳米结构(例如,零维(0D)量子点或一维(1D)纳米线)已经成为有趣的油墨材料,可用于柔性基板上的电子薄膜的低温固溶处理,但通常性能有限到大量的晶界(0D)或不完全的表面覆盖率(1D)。在这里,我们报告了层状材料的二维(2D)胶体纳米板,作为用于高性能电子薄膜溶液组装的新型墨水材料。二维胶体纳米板几乎没有悬空键,代表了理想的几何形状,可用于组装高度均匀的连续薄膜,并通过大面积共形平面与原子平坦/清洁的界面接触,大大减小了晶界。因此,它可以保证跨相邻纳米板以及整个薄膜的有效电荷传输,从而实现前所未有的电子性能。我们表明,Bi2Se3和Bi2Te3纳米板可以合成,其厚度(6-15 nm)和横向尺寸(0.5-3μm)受到很好的控制,可用于组装高度均匀的连续薄膜,并具有完整的表面覆盖和出色的室温载流子迁移率> 100 cm(2)中心点V-1中心点s(-1),接近化学气相沉积生长材料的迁移率。我们的研究表明了将二维纳米板用作在塑料基板上构建高性能电子薄膜的独特构建基块的通用策略,以用于未来的柔性电子和光电子学。

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