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首页> 外文期刊>ACS Omega >Microwave Synthesis of Silver Sulfide and Silver Nanoparticles: Light and Time Influence
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Microwave Synthesis of Silver Sulfide and Silver Nanoparticles: Light and Time Influence

机译:微波合成银硫化银和银纳米粒子:光线和时间影响

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摘要

Silver sulfide (Ag_(2)S) is a low band gap material, which absorbs near-infrared light and is of great importance in areas such as nanotechnology and biomedicine. We report the influence of the starting reagents, synthesis time, and light radiation on the geometry and size of silver sulfide nanoparticles and on the fraction of metallic Ag obtained in a microwave reactor. The X-ray diffraction diffractograms confirmed that Ag_(2)S is the main product if the reaction’s precursor contains silver in the oxidation state of +1 and mostly metallic silver (Ag°) when it is +2. Small nanoparticles (~6 nm) of spherical geometry are present in the transmission electron microscopy images for the synthesis performed with the lamp light ON, while with the light switched OFF, wider and hundreds of nanometers longer particles are observed. This discriminative effect occurs with shorter synthesis time duration (<10 min) but when the time of reaction is extended, the particles coalesce for both light and dark conditions. Overall, it was observed by photoluminescence that crystalline Ag and Ag_(2)S 4–8 nm nanoparticles obtained in 15 min and light irradiation during synthesis have a clear relative increase of the radiative recombination channels of the charged carriers, which are typical of materials characterized by the involvement of low density of states inside the band gap.
机译:硫化银(AG_(2))是低带隙材料,其吸收近红外光,在纳米技术和生物医学等领域具有重要意义。我们报告了起始试剂,合成时间和光辐射对硫化银纳米颗粒的几何形状和尺寸的影响以及在微波反应器中获得的金属Ag的级分。 X射线衍射衍射图证实,如果反应的前体在+ 1的氧化状态下含有银,并且当它是+ 2时,Ag_(2)S是主要产物。在透射电子显微镜图像中存在小纳米颗粒(〜6nm)的球形几何形状用于用灯光进行的合成,虽然用光关闭,但观察到宽且数百纳米的较长粒子。这种辨别效果发生在较短的合成时间持续时间(<10分钟),但是当反应时间延长时,颗粒用于光和暗条件。总的来说,通过光致发光观察到在15分钟内获得的结晶Ag和Ag_(2)S4-8nm纳米颗粒,并且合成期间的光照射具有透明的带电载体的辐射重组通道的相对增加,这是典型的材料其特征在于,在带隙内部的低密度的参与。

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