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具有芴环化合物的电致化学发光性质研究
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作者 陈艳华 DING Zhi-feng +2 位作者 Leah Coumont jonathan veinot 张寒琦 《分析化学》 SCIE EI CAS CSCD 北大核心 2009年第A01期242-242,共1页
电致化学发光(electrochemilumicescence,ECL)是一种将电化学与化学发光结合在一起的分析方法。自从1929年,Harvey等发现ECL现象以来,被广泛应用于临床诊断、生物免疫等方面以及对高分子化合物、有机化合物及纳米粒子等的性质分析... 电致化学发光(electrochemilumicescence,ECL)是一种将电化学与化学发光结合在一起的分析方法。自从1929年,Harvey等发现ECL现象以来,被广泛应用于临床诊断、生物免疫等方面以及对高分子化合物、有机化合物及纳米粒子等的性质分析及反应机理研究。本实验通过对C9位的氢进行取代,合成了3种芴的衍生物?在不同电压条件下对其共反应电致化学发光性质进行研究,从而推导其反应机理。 展开更多
关键词 电致化学发光 高分子化合物 发光性质 反应机理 有机化合物 临床诊断 生物免疫
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Application of nanoparticle tracking analysis for characterising the fate of engineered nanoparticles in sediment-water systems 被引量:6
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作者 Ping Luo Alejandro Roca +6 位作者 Karen Tiede Katie Privett Jiachao Jiang John Pinkstone Guibin Ma jonathan veinot Alisatair Boxall 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2018年第2期62-71,共10页
Novel applications of nanotechnology may lead to the release of engineered nanoparticles(ENPs), which result in concerns over their potential environmental hazardous impact. It is essential for the research workers ... Novel applications of nanotechnology may lead to the release of engineered nanoparticles(ENPs), which result in concerns over their potential environmental hazardous impact. It is essential for the research workers to be able to quantitatively characterise ENPs in the environment and subsequently to assist the risk assessment of the ENPs. This study hence explored the application of nanoparticle tracking system(NTA) to quantitatively describe the behaviour of the ENPs in natural sediment-water systems. The NTA allows the measurement of both particle number concentration(PNC) and particle size distribution(PSD) of the ENPs. The developed NTA method was applied to a range of gold and magnetite ENPs with a selection of surface properties. The results showed that the positively-charged ENPs interacted more strongly with the sediment than neutral and negatively-charged ENPs. It was also found that the citrate coated Au ENPs had a higher distribution percentage(53%) than 11-mercaptoundecanoic acid coated Au ENPs(20%) and citrate coated magnetite ENPs(21%). The principles of the electrostatic interactions between hard(and soft) acids and bases(HSAB) are used to explain such behaviours; the hard base coating(i.e. citrate ions) will interact more strongly with hard acid(i.e. magnetite) than soft acid(i.e. gold).The results indicate that NTA is a complementary method to existing approaches to characterise the fate and behaviour of ENPs in natural sediment. 展开更多
关键词 Quantitative characterisation Hard and soft acids and bases Fate of engineered nanoparticles Nanoparticle tracking system Particle number concentration Particle size distribution
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