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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Electroosmotic flow-switchable poly(dimethylsiloxane)microfluidic channel modified with cysteine based on gold nanoparticles
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Electroosmotic flow-switchable poly(dimethylsiloxane)microfluidic channel modified with cysteine based on gold nanoparticles

机译:基于金纳米粒子的半胱氨酸修饰的电渗流可切换的聚(二甲基硅氧烷)微流体通道

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摘要

An electroosmotic flow(EOF)-switchable poly(dimethylsiloxane)(PDMS)microfluidic channel modified with cysteine has been developed.The native PDMS channel was coated with poly(diallyldimethylammonium chloride)(PDDA),and then gold nanoparticles by layer-by-layer technique was assembled on PDDA to immobilize cysteine.The assembly was followed by infrared spectroscopy/attenuated total reflection method,contact angle,EOF measurements and electrophoretic separation methods.EOF of this channel can be reversibly switched by varying the pH of running buffer.At low pH,the surface of channels is positively charged,EOF is from cathode to anode.At high pH,the surface is negatively charged,EOF is from anode to cathode.At pH 5.0,near the isoelectric point of the chemisorbed cysteine,the surfaces of channels show neutral.When pH is above 6.0 or below 4.0,the magnitude of EOF varies in a narrow range.And the modified channel surface displayed high reproducibility and good stability,a good reversibility of cathodic-anodic EOF transition under the different pH conditions was observed.Separation of dopamine and epinephrine as well as arginine and histidine were performed on the modified chip.
机译:开发了电渗流(EOF)可切换的半胱氨酸修饰的聚(二甲基硅氧烷)(PDMS)微流体通道,先在天然PDMS通道上涂覆聚二烯丙基二甲基氯化铵(PDDA),然后逐层金纳米颗粒在PDDA上组装技术固定半胱氨酸,然后通过红外光谱/衰减全反射法,接触角,EOF测量和电泳分离方法进行组装。可通过改变运行缓冲液的pH值可逆地切换该通道的EOF。 pH值,通道表面带正电,EOF从阴极到阳极。高pH值,表面带负电,EOF从阳极到阴极。在pH 5.0时,化学吸附半胱氨酸的等电点附近,表面通道显示中性。当pH值高于6.0或低于4.0时,EOF的幅度在狭窄的范围内变化。改性后的通道表面具有较高的重现性,稳定性,可逆性在不同的pH条件下观察到了阳极-阳极EOF的转变。在修饰的芯片上分离了多巴胺和肾上腺素以及精氨酸和组氨酸。

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