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Unraveling the Organotellurium Chemistry Applied to the Synthesis of Gold Nanomaterials

机译:阐述有机碲化学在金纳米材料合成中的应用

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Long-term preservation of the properties of gold nanoparticles in both solution and the dry powder form can be difficult. We have overcome this challenge by using organotellurium derivatives as both reducing agents and stabilizers in the synthesis of gold nanoparticles. This new synthetic protocol takes advantage of the photochemical and oxidative properties of diphenyl ditelluride (Ph_(2)Te_(2)), which, so far, have never been exploited in the synthesis of gold nanoparticles. The Au/Te core/shell (inorganic/organic) hybrid nanomaterial can be obtained in a one-step reaction, using only Ph_(2)Te_(2) and HAuCl_(4). By modifying the reaction conditions, different resonance conditions of the gold core are achieved due to the formation of external shells with different thicknesses. The organotellurium shell can be easily removed by resuspension of the nanoparticles in environmentally friendly solvents, such as water or ethanol, making the Au core available for subsequent applications. A mechanism for the formation of core/shell nanoparticles has also been discussed.
机译:溶液和干粉形式的金纳米颗粒的特性的长期保存可能很困难。通过在金纳米颗粒的合成中同时使用有机碲衍生物作为还原剂和稳定剂,我们克服了这一挑战。这种新的合成方案利用了二苯基二碲化物(Ph_(2)Te_(2))的光化学和氧化性质,到目前为止,该性质从未在金纳米颗粒的合成中得到利用。可以仅使用Ph_(2)Te_(2)和HAuCl_(4)在一步反应中获得Au / Te核/壳(无机/有机)杂化纳米材料。通过改变反应条件,由于形成具有不同厚度的外壳而实现了金核的不同共振条件。通过将纳米粒子重新悬浮在环境友好的溶剂(例如水或乙醇)中,可以轻松去除有机碲壳,从而使金核可用于后续应用。还讨论了形成核/壳纳米颗粒的机理。

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