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首页> 外文期刊>ACS nano >Selective Laser-Assisted Synthesis of Tubular van der Waals Heterostructures of Single-Layered PbI2 within Carbon Nanotubes Exhibiting Carrier Photogeneration
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Selective Laser-Assisted Synthesis of Tubular van der Waals Heterostructures of Single-Layered PbI2 within Carbon Nanotubes Exhibiting Carrier Photogeneration

机译:单层PBI 2 在表现出载体光氨酸中的单层PBI 2 的选择性激光辅助合成。

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The electronic and optical properties of two-dimensional layered materials allow the miniaturization of nanoelectronic and optoelectronic devices in a competitive manner. Even larger opportunities arise when two or more layers of different materials are combined. Here, we report on an ultrafast energy efficient strategy, using laser irradiation, which allows bulk synthesis of crystalline single-layered lead iodide in the cavities of carbon nanotubes by forming cylindrical van der Waals heterostructures. In contrast to the filling of van der Waals solids into carbon nanotubes by conventional thermal annealing, which favors the formation of inorganic nanowires, the present strategy is highly selective toward the growth of monolayers forming lead iodide nanotubes. The irradiated bulk material bearing the nanotubes reveals a decrease of the resistivity as well as a significant increase in the current flow upon illumination. Both effects are attributed to the presence of single-walled lead iodide nanotubes in the cavities of carbon nanotubes, which dominate the properties of the whole matrix. The present study brings in a simple, ultrafast and energy efficient strategy for the tailored synthesis of rolled-up single-layers of lead iodide (i.e., single-walled PbI_(2) nanotubes), which we believe could be expanded to other two-dimensional (2D) van der Waals solids. In fact, initial tests with ZnI_(2) already reveal the formation of single-walled ZnI_(2) nanotubes, thus proving the versatility of the approach.
机译:二维层状材料的电子和光学特性允许以竞争方式进行纳米电子和光电器件的小型化。当两层或更多层组合时,也会出现更大的机会。在这里,我们通过使用激光照射来报告超快能量有效策略,其允许通过形成圆柱形范德华异质结构来批量合成碳纳米管空腔中的结晶单层铅碘化物。与常规热退火填充到碳纳米管中的范德瓦尔斯固体与碳纳米管的填充物相比,这对无机纳米线的形成,本策略对形成铅碘化物纳米管的单层的生长是高度选择性的。轴承纳米管的辐照散装材料显示电阻率的降低以及在照明时流动的显着增加。两种效应归因于碳纳米管的空腔中的单壁铅碘化物纳米管的存在,其主导整个基质的性质。本研究提出了一种简单,超快和节能的策略,用于定制卷起单层铅碘化物(即单壁PBI_(2)纳米管),我们相信可以扩展到其他两个 - 尺寸(2D)范德瓦尔斯固体。事实上,使用ZnI_(2)的初始测试已经揭示了单壁ZnI_(2)纳米管的形成,从而证明了这种方法的多功能性。

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