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Catalytic and Catalyst-free Synthesis of CdSe Nanostructures with Single-Source Molecular Precursor and Related Device Application

机译:单源分子前驱体催化无催化剂合成CdSe纳米结构及其装置应用

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摘要

Air-stable single-source molecular precursor is applied for controlled size and morphology synthesis of one-dimensional and quasi-one-dimensional CdSe nanostructures. Two different growth approaches are compared to control the growth of nanostructures. When combined with well-defined Au colloidal catalysts, the use of single-source molecular precursor allows diameter control synthesis of monodispersed CdSe nanowires from 10-30 nm via a vapor-liquid-solid mechanism. In addition, a variety of CdSe nanostructures with different morphologies can be achieved and tuned without assistance of metallic catalysts by carefully manipulating dynamic thermal decomposition process of single-source molecular precursor. The new level of synthetic control afforded by our present work opens up new opportunities for using as-synthesized CdSe nanostructures as model systems for fundamental studies as well as building blocks for larger scale functional device assembly. Importantly, we demonstrate that a single CdSe tripod can be natively configured as a nanoscale phototransistor in which photocurrent created between two tripod arms can be efficiently modulated by applying a gate voltage through the third arm.
机译:空气稳定的单源分子前驱体用于控制一维和准一维CdSe纳米结构的尺寸和形态合成。比较了两种不同的生长方法以控制纳米结构的生长。当与定义明确的Au胶体催化剂结合使用时,使用单源分子前体可以通过气液固机理从10-30 nm直径控制合成单分散CdSe纳米线。另外,通过小心地操纵单源分子前体的动态热分解过程,无需金属催化剂的帮助,就可以实现具有不同形态的多种CdSe纳米结构并对其进行调谐。我们目前的工作提供了更高水平的合成控制,为使用合成的CdSe纳米结构作为基础研究的模型系统以及大规模功能性设备组装的基础材料提供了新的机会。重要的是,我们证明了单个CdSe三脚架可以自然地配置为纳米级光电晶体管,其中可以通过通过第三臂施加栅极电压来有效地调制两个三脚架臂之间产生的光电流。

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