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Synthesis of Ag–Ag2S Janus nanoparticles supported on an environmentally benign cellulose template and their catalytic applications

机译:在环境良性纤维素模板及其催化应用中支持Ag-Ag2S Janus纳米颗粒的合成

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Synthesis of Ag–Ag _(2) S Janus nanoparticles (JNP) by a one step co-precipitation technique using a NaOH–thiourea–urea aqueous solution has been reported. The NaOH in cellulose solution acted as the precipitant of Ag–Ag _(2) S nanoparticles and environmentally benign cellulose was used as a template to promote the growth of nanoparticles. The cellulose was extracted from Bambusa tulda , a locally available bamboo species and was carried out by adopting a green approach using a combination of both chemical and biochemical treatment. The synthesized Ag–Ag _(2) S JNP was characterized by UV-Visible spectroscopy, powder XRD, TEM, SEM-EDX and XPS analysis. The TEM study reveals that most of the Ag–Ag _(2) S JNP were spherical in shape and fall in the size range of 10–15 nm. XRD analysis of the Ag–Ag _(2) S JNP shows diffraction peaks for the (111), (200) and (220) planes of a face centered cubic Ag ~(0) crystal along with the characteristic peaks due to Ag _(2) S, which provide evidence for the coexistence of Ag _(2) S and Ag on the cellulose support. The method offers a facile and green pathway for the fabrication of Ag–Ag _(2) S JNP and the synthesized Ag–Ag _(2) S JNP were employed as a heterogeneous catalyst in a model reaction based on the reduction of p -nitrophenol to p -aminophenol. The metal nanocatalysts could be recycled and reused several times without significant loss of their catalytic activities.
机译:据报道,通过使用NaOH-Thiourea-urea水溶液的一步共沉淀技术合成Ag-Ag _(2)的Janus纳米颗粒(JNP)。纤维素溶液中的NaOH作用为Ag-Ag _(2)纳米颗粒的沉淀剂,并使用环境良性纤维素作为促进纳米颗粒生长的模板。通过使用化学和生物化学处理的组合采用绿色方法,从Bambusa Tulda萃取纤维素,通过采用绿色方法进行。合成的Ag-Ag _(2)S JNP的特征在于UV可见光谱,粉末XRD,TEM,SEM EDX和XPS分析。 TEM研究表明,大多数Ag-Ag _(2)的JNP形状为球形,尺寸范围为10-15nm。 AG-AG _(2)S JNP的XRD分析显示了(111),(200)和(220)平面的衍射峰,面对立方Ag〜(0)晶体的平面以及由于AG _引起的特征峰(2)S,为纤维素载体的AG _(2)S和AG共存提供了证据。该方法提供了用于制备Ag-Ag _(2)S JNP的易于和绿色途径,并且在基于P的减少的模型反应中使用合成的Ag-Ag _(2)S JNP作为非均相催化剂。硝基苯酚到p-氨基酚。金属纳米催化剂可以再循环并重复使用几次,而不会损失其催化活性。

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