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首页> 外文期刊>Nanoscale >Access to small size distributions of nanoparticles by microwave-assisted synthesis. Formation of Ag nanoparticles in aqueous carboxymethylcellulose solutions in batch and continuous-flow reactors
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Access to small size distributions of nanoparticles by microwave-assisted synthesis. Formation of Ag nanoparticles in aqueous carboxymethylcellulose solutions in batch and continuous-flow reactors

机译:小尺寸的分布纳米粒子的微波合成。Ag纳米颗粒在水的形成羧甲基纤维素在批处理和解决方案连续流反应器

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This article examines the effect(s) of the 2.45-GHz microwave (MW) radiation in the synthesis of silver nanoparticles in aqueous media by reduction of the diaminesilver(I) complex, [Ag(NH3)2]~+, with carboxymethylcellulose (CMC) in both batch-type and continuous-flow reactor systems with a particular emphasis on the characteristics of the microwaves in this process and the size distributions. This microwave thermally-assisted synthesis is compared to a conventional heating (CH) method, both requiring a reaction temperature of 100 °C to produce the nanoparticles, in both cases leading to the formation of silver colloids with different size distributions. Reduction of the diaminesilver(I) precursor complex, [Ag(NH3)i]~+, by CMC depended on the solution temperature. Cooling the reactor during the heating process driven with 390-Watt microwaves (MW-390W/Cool protocol) yielded silver nanoparticles with sizes spanning the range 1-2 nm. By contrast, the size distribution of Ag nanoparticles with 170-Watt microwaves (no cooling; MW-170W protocol) was in the range 1.4-3.6 nm (average size ~3 nm). The overall results suggest the potential for a scale-up process in the microwave-assisted synthesis of nanoparticles. Based on the present data, a flow-through microwave reactor system is herein proposed for the continuous production of silver nanoparticles. The novel flow reactor system (flow rate, 600 mL min~(-1)) coupled to 1200-Watt microwave radiation generated silver nanoparticles with a size distribution 0.7-2.8 nm (average size ca. 1.5 nm).
机译:本文讨论的效果(s)2.45 - ghz的微波(MW)辐射合成的银纳米颗粒在水媒体通过减少diaminesilver(我)复杂,[Ag (NH3) 2] ~ +,羧甲基纤维素(CMC)两种类型和连续流反应器系统特别强调的特点在这一过程中微波和大小分布。合成与传统加热相比(CH)方法,都需要一个反应温度为100°C生产纳米粒子,在这两种情况下导致的银胶体的形成有不同的大小分布。前兆复杂,[Ag (NH3)我]~ +,CMC依赖溶解温度。在加热过程中驱动390瓦微波(mw - 390 w /酷协议)取得了银牌纳米粒子与大小范围跨越1 - 2nm。纳米粒子与170瓦的微波(没有冷却;1.4 - -3.6 nm(平均大小~ 3海里)。结果显示一个扩大的可能性微波合成的过程纳米粒子。主要材料微波反应器系统提出了银的连续生产纳米粒子。(流量、min ~ 600毫升(1)耦合至1200瓦微波辐射产生的银0.7 - -2.8 nm纳米颗粒的尺寸分布(平均大小1.5海里)。

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