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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Thermodynamic Equilibrium-Driven Formation of Single-Sized Nanocrystals: Reaction Media Tuning CdSe Magic-Sized versus Regular Quantum Dots
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Thermodynamic Equilibrium-Driven Formation of Single-Sized Nanocrystals: Reaction Media Tuning CdSe Magic-Sized versus Regular Quantum Dots

机译:单一尺寸纳米晶体的热力学平衡驱动形成:反应介质调整CdSe魔术尺寸与规则量子点的关系

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摘要

A concept for the fundamental science of nanoparticle synthesis, thermodynamic equilibrium-driven formation of colloidal single-sized nanoparticle ensembles, is proposed and demonstrated in this manuscript, which addresses the controlled formation of CdSe magic-sized and regular quantum dots (MSQDs and RQDs). During formation, the former are magic-sized nuclei without further growth in size, while the latter experience nucleation and growth. Both MSQDs and RQDs exhibit bandgap emission, while the former have homogeneous spectra broadening only and the latter both homogeneous and inhomogeneous spectra broadening. The former are single-sized and the latter have size distribution. With continuous and homogeneous nucleation, the thermodynamically driven formation of MSQDs was realized via our one-pot noninjection approach, which features highly synthetic reproducibility and large-scale capability. With the proper tuning of the synthetic parameters, such as the nature of the reaction medium, that affect the thermodynamic equilibria, various CdSe MSQDs and RQDs were synthesized discriminately under otherwise identical synthetic formulation and reaction conditions; the reaction media were noncoordinating 1-octadecene, coordinating trioctylphosphine, and mixtures of the two. The nature of Cd precursors, affected also by the reaction media, plays a major role in the formation of MSQDs versus RQDs. The present investigation on the thermodynamically driven formation of CdSe single-sized nanoparticles via tuning of the reaction medium, mainly, brings novel insights into the formation mechanism and into the surface ligands of the resulting colloidal nanocrystals. More importantly, the present study provides novel experimental design and approaches to single-sized nanoparticles desired for various applications.
机译:本手稿提出并证明了纳米粒子合成基础科学的概念,即热力学平衡驱动的胶体单尺寸纳米粒子团的形成,该概念解决了CdSe魔术尺寸和规则量子点(MSQD和RQD)的受控形成。在形成过程中,前者是魔术大小的核,没有进一步增大的大小,而后者则经历了成核和生长。 MSQD和RQD均显示带隙发射,而前者仅具有均匀的光谱展宽,而后者均具有均匀和不均匀的光谱展宽。前者是单一尺寸的,后者具有尺寸分布。通过连续且均匀的成核,通过我们的一锅法非注入方法实现了MSQD的热力学驱动形成,该方法具有高度合成的可重复性和大规模生产能力。通过适当地调节影响热力学平衡的合成参数(例如反应介质的性质),在其他相同的合成配方和反应条件下,可区分地合成各种CdSe MSQD和RQD。反应介质为非配位的1-十八碳烯,配位的三辛基膦,以及两者的混合物。 Cd前体的性质也受反应介质的影响,在MSQD与RQD的形成中起主要作用。目前对通过调节反应介质进行热力学驱动的CdSe单一尺寸纳米颗粒形成的研究主要为形成胶体纳米晶体的形成机理和表面配体提供了新的见解。更重要的是,本研究为各种应用所需的单一尺寸纳米粒子提供了新颖的实验设计和方法。

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