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Degradation products from consumer nanocomposites - a case study on quantum dot lighting

机译:降解产物从消费纳米复合材料 - 量子点照明的案例研究

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摘要

Most nanomaterials enter the natural environment as nano-enabled products, which are typically composites with primary nanoparticles bound on substrates or embedded in liquid or solid matrices. The environmental risks associated with these products are expected to differ from those associated with the as-produced particles. This article presents a case study on the end-of-life emission of a commercial prototype polymer/quantum-dot (QD) composite used in solid-state lighting for homes. We report the extent of cadmium release upon exposure to a series of environmental and biological simulant fluids, and track the loss of QD-characteristic fluorescence as a marker for chemical damage to the CdSe/ZnS nanoparticles. Measured cadmium releases after 30-day exposure range from 0.007-1.2 mg/g of polymer, and the higher values arise for low-pH simulants containing nitric or gastric acid. Centrifugal ultrafiltration and ICP was used to distinguish soluble cadmium from particulate forms. The leachate is found to contain soluble metals with no evidence of free QDs or QD-containing polymeric debris. The absence of free nanoparticles suggests that this product does not raise nanotechnology-specific environmental issues associated with degradation and leaching, but is more usefully regarded as a conventional chemical product that is a potential source of small amounts of soluble cadmium.
机译:大多数纳米材料进入自然环境作为支持纳米产品,通常是用底物上含有初级纳米颗粒的复合材料或嵌入液体或固体基质中。预计与这些产品相关的环境风险将与与制造颗粒相关的不同之处。本文介绍了用于家庭固态照明的商业原型聚合物/量子点(QD)复合材料的寿命结束发射的案例研究。我们在暴露于一系列环境和生物模拟液时报告镉释放的程度,并跟踪QD特征荧光的损失作为用于CDSE / ZnS纳米颗粒的化学损伤的标记物。测量的镉释放在30天曝光范围为0.007-1.2mg / g的聚合物,并且含有硝酸或胃酸的低pH模拟器产生的较高值。离心超滤和ICP用于将可溶性镉与颗粒形式区分开。发现渗滤液含有可溶性金属,没有含有自由QDS或含QD的聚合物碎片的证据。没有免费的纳米颗粒表明该产品不会提高与降解和浸出相关的纳米技术特异性环境问题,但更有用量被认为是常规化学产品,这是少量可溶性镉的潜在来源。

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