论文标题
在NaCl存在下,通过静音法及其表征,Cu2O纳米棒的便捷合成
Facile synthesis of Cu2O nanorods in the presence of NaCl by SILAR method and its characterizations
论文作者
论文摘要
通过修饰的高音技术,通过将NaCl电解质的浓度变化为前体配合物溶液,通过改进的音量技术将Cu2O纳米棒沉积在苏打石灰玻璃(SLG)底物上。通过多种表征工具研究了合成Cu2O纳米棒膜的结构,电和光学性质。 XRD进行的结构分析证实了(111)优先生长的多晶Cu2O相。在室温下进行的拉曼散射光谱测量还显示出纯Cu2O相的特征峰。 Cu2O纳米棒膜的表面电阻率从15,142降低至685 ohm.cm,而NaCl从0到4 mmol添加,然后通过进一步添加NaCl表现出相反的趋势。合成的Cu2O纳米棒膜的光带隙被观察到1.88-2.36 eV,而Cu2O膜的温度依赖性激活能的测量为约0.14-0.21 eV。 SEM形态证明了Cu2O纳米棒以及紧密堆积的球形晶粒,随着NaCl浓度的改变。发现纳米棒的Cu2O相位稳定至230 0c,以证实相同的光带隙结果。在存在4 mmol NaCl的情况下制造的薄膜表现出最低的电阻率和激活能以及相对均匀的纳米棒形态。我们的研究表明,在前增体溶液中NaCl电解质的名义存在对Cu2O纳米膜的物理特性有重大影响,这在光电研究中可能是有益的。
Cu2O nanorods have been deposited on soda-lime glass (SLG) substrates by the modified SILAR technique by varying the concentration of NaCl electrolyte into the precursor complex solution. The structural, electrical, and optical properties of synthesized Cu2O nanorod films have been studied by a variety of characterization tools. Structural analyses by XRD confirmed the polycrystalline Cu2O phase with (111) preferential growth. Raman scattering spectroscopic measurements conducted at room temperature also showed characteristic peaks of the pure Cu2O phase. The surface resistivity of the Cu2O nanorod films decreased from 15,142 to 685 Ohm.cm with the addition of NaCl from 0 to 4 mmol, and then exhibited an opposite trend with further addition of NaCl. The optical bandgap of the synthesized Cu2O nanorod films was observed as 1.88 - 2.36 eV, while the temperature-dependent activation energies of the Cu2O films were measured as about 0.14 - 0.21 eV. SEM morphologies demonstrated Cu2O nanorod as well as closely packed spherical grains with the alteration of NaCl concentration. The Cu2O phase of nanorods was found stable up to 230 0C corroborating the optical bandgap results of the same. The film fabricated in presence of 4 mmol of NaCl showed the lowest resistivity and activation energy as well comparatively uniform nanorod morphology. Our studies demonstrate that the nominal presence of NaCl electrolytes in the pre-cursor solutions has a significant impact on the physical properties of Cu2O nanorod films which could be beneficial in optoelectronic research.