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Facile Synthesis of Cu2O Nanocubes in Triblock Copolymer Solutions Jinhua Jiang and Qiuming Gao

机译:facile synthesis of Cu2o nano cubes int日block co polymer solutions jin话Jiang and Q IU名G奥

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Cuprous oxide and related materials in nanosizes are of much interest and investigated extensively recently. It is reported here that cubic CuiO nanocubes were synthesized successfully in aqueous solutions at room temperature in air condition. Copper (II) salts in water were reduced with ascorbate acid in air, using the nonionic pluronic amphiphilic triblock copolymer EO20PO70EO20 (PI 23) as the template-directing and protecting agent. The average edge length of the cubes varied from 50 to 100 nm. Transmission electron microscopy (TEM) has been used for the shape and structural characterization of the obtained C112O nanocubes. The UV-Vis spectra showed an obvious blue-shift (0.53 eV), compared to the band gap of the bulk CuiO crystal, which makes it a promising candidate in solar energy conversion since this sample can make use of higher energy visible rays of solar spectrum. In the FT-IR spectra the peak of Cu-0 bond for the C112O is clearly distinguished and several weak peaks of the C-H, C-C and C=O bonds for the organic species can also be detectable, implying a little PI 23 residua in the products. The effect of the triblock copolymer P123 on the growth of the CuiO nanocubes is discussed.
机译:纳米尺寸的氧化亚铜和相关材料引起了人们的极大兴趣,并且最近进行了广泛的研究。据报道,在室温下,在空气中于水溶液中成功地合成了立方CuiO纳米立方体。水中的铜(II)盐在空气中用抗坏血酸还原,使用非离子型短绒两亲三嵌段共聚物EO20PO70EO20(PI 23)作为模板导向和保护剂。立方体的平均边缘长度在50至100 nm之间变化。透射电子显微镜(TEM)已用于获得的C112O纳米立方体的形状和结构表征。与块状CuiO晶体的带隙相比,UV-Vis光谱显示出明显的蓝移(0.53 eV),这使其成为太阳能转换的有希望的候选者,因为该样品可以利用更高能量的太阳能可见光光谱。在FT-IR光谱中,可以清楚地区分C112O的Cu-0键的峰,并且还可以检测到有机物种的CH,CC和C = O键的几个弱峰,这意味着在C112O中有少量PI 23残基。产品。讨论了三嵌段共聚物P123对CuiO纳米立方体生长的影响。

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