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Synthesis of monodisperse single-crystal Cu2O spheres and their application in generating structural colors

机译:单分散单晶Cu2O球体的合成及其在产生结构颜色的应用

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摘要

Monodisperse semiconductor single-crystal spheres hold great potential for building photonic crystals owing to their higher refractive index and smoother surface than their corresponding polycrystalline ones. However, the difficulty in obtaining isotropic growth with a slower rate of nucleation and growth makes it challenging to synthesize highly uniform single-crystal spheres with sizes of several hundred nanometers. Herein, we designed a room temperature two-step reductive approach in the presence of both sodium citrate and PVP as capping ligands in a H2O/ethylene glycol (EG) mixed solvent. By this method, real monodisperse single-crystal solid Cu2O spheres were obtained. The key functions of EG, sodium citrate and PVP in the formation of single-crystal Cu2O spheres were investigated. The mechanism of isotropic growth of the monodisperse single-crystal solid Cu2O spheres is discussed in detail. The results indicate that copper citrate complex, PVP, hydrogen bonding and appropriate viscosity are all indispensable for isotropic growth. The diameter of the as-prepared single-crystal solid Cu2O spheres could be tuned from 168 nm to 265 nm by varying the amount of sodium citrate. The SEM and TEM images revealed that the prepared Cu2O spheres had a narrow size distribution and are single-crystal solid spheres. Using Cu2O spheres with different diameters as building blocks, amorphous photonic structures with vivid brown-red, green and pink colors were fabricated by a spray-coating method. Our results provide a method for preparing single-crystal solid semiconductor spheres, unveiling the possibility of using single-crystal spheres as building blocks for creating structural color.
机译:单分散半导体单晶球体由于其比其相应的多晶多的折射率和光滑的表面较高而呈现出光子晶体的巨大潜力。然而,获得具有较慢成核和生长的各向同性生长的难度使其具有挑战,使高度均匀的单晶球具有数百纳米的尺寸。在此,我们在柠檬酸钠和PVP存在下设计了室温两步还原方法,作为H 2 O /乙二醇(例如)混合溶剂中的覆盖配体。通过该方法,获得真正的单分散单晶固体Cu2O球体。研究了例如柠檬酸钠和PVP在形成单晶Cu2O球体中的关键功能。详细讨论了单分散单晶固体Cu2O球体的各向同性生长机制。结果表明,柠檬酸铜复合物,PVP,氢键合粘合和适当的粘度是各向同性生长的必不可少的。通过改变柠檬酸钠的量,可以从168nm至265nm调谐的作为制备的单晶固体Cu2o球体的直径。 SEM和TEM图像显示制备的Cu2O球的尺寸分布窄,是单晶固体球。使用不同直径的CU2O球体作为构建块,通过喷涂方法制造具有生动棕红色,绿色和粉红色颜色的无定形光子结构。我们的结果提供了一种制备单晶固体半导体球体的方法,揭示使用单晶球作为用于产生结构颜色的构建块的可能性。

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