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Synthesis, properties and applications of colloidal germanium and germanium-based nanomaterials

机译:胶态锗和锗基纳米材料的合成,性能及应用

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摘要

Germanium nanoparticles have excited scientists and engineers because of their size-dependent optical properties and their potential applications in optoelectronics, biological imaging and therapeutics, flash memories, and lithium-ion batteries. In order to further develop these applications and to gain deeper insights into their size-dependent properties, robust and facile synthetic methods are needed to controllably synthesize Ge nanoparticles. However, when compared to other II—VI, IV-VI, and III—V semiconductor systems, colloidal routes to Ge NPs with uniform sizes and shapes are much less mature. In this Review Article, we highlight the progress that has been made in this field and provide insights into the strategies used for the colloidal synthesis of size and shape-controlled germanium nanomaterials. We also survey some of the potential applications of these materials in optoelectronics, biological imaging, and energy conversion and storage. Finally, we discuss the colloidal synthesis of other germanium-containing compounds, emphasizing technologically relevant germanium chalcogenides that include GeS, GeSe, and GeTe.
机译:锗纳米粒子因其尺寸依赖性的光学特性及其在光电子,生物成像和治疗,闪存和锂离子电池中的潜在应用而备受科学家和工程师的欢迎。为了进一步开发这些应用并获得对它们的尺寸依赖性的更深入的了解,需要鲁棒而简便的合成方法来可控地合成Ge纳米粒子。但是,与其他II-VI,IV-VI和III-V半导体系统相比,胶体形成具有均匀大小和形状的Ge NP的途径还不成熟。在这篇综述文章中,我们重点介绍了该领域取得的进展,并提供了用于胶体合成尺寸和形状受控的锗纳米材料的策略的见解。我们还调查了这些材料在光电,生物成像以及能量转换和存储中的某些潜在应用。最后,我们讨论了其他含锗化合物的胶体合成,重点介绍了与技术相关的锗硫族化物,包括GeS,GeSe和GeTe。

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