首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Charge-selective gate of arrayed MWCNTs for ultra high-efficient biomolecule enrichment by nano-electrostatic sieving (NES)
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Charge-selective gate of arrayed MWCNTs for ultra high-efficient biomolecule enrichment by nano-electrostatic sieving (NES)

机译:通过纳米静电筛分(NES)的超高效率生物分子富集的阵列MWCNT的电荷选择门

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摘要

We report a rapid and highly-efficient biomolecule preconcentrating device based on nano-electrostatic sieving (NES) mechanism that is facilitated by multi-nanofluidic channels operated in parallel. The opening of these nanochannels is regulated by tunable charges that are generated on arrayed multi-walled carbon nanotubes (MWCNTs) gate. The NES device is fabricated by standard photolithography and plasma-enhanced chemical vapor deposition (PECVD) techniques, followed by subsequent deposition of parylene (poly(p-xylylene))-C on vertically grown MWCNTs in order to obtain arrayed multi-nanochannels with mean pore sizes that are comparable to the thickness of an electrical double layer (EDL). The enrichment efficiency for charged analytes is dependent on electrostatic repulsion, which is regulated by the distribution of the local electric field on the MWCNTs gate. The NES device exhibits polarity selectivity on the analytes and performs efficient collection and separation of biomolecules by probing the surface charge density dependence on the applied gate field. A tunable gate of the parylene-MWCNT nanochannels was used as size sieving devices for nano-scale biomolecules. The experimental results for the collection of FITC-labeled bovine serum albumin (BSA, 0.033nM) were as high as nearly 10~6 fold after only 45min. These data are attributed to the in-parallel molecule sieving process as conducted by the many nanochannels formed among the MWCNTs. This device allows uncharged polar molecules, such as water, to rapidly pass through thus enable highly efficient bio-molecule concentration for the application to ultra-high sensitive biosensing.
机译:我们报告了一种基于纳米静电筛分(NES)机制的快速高效的生物分子预浓缩装置,该装置由并行运行的多纳米流体通道促进。这些纳米通道的开放受到在阵列式多壁碳纳米管(MWCNT)栅极上产生的可调电荷的调节。 NES设备是通过标准光刻和等离子增强化学气相沉积(PECVD)技术制造的,然后在垂直生长的MWCNT上随后沉积聚对二甲苯(聚对二甲苯)-C,以获得具有均数的阵列多纳米通道孔径可与双电层(EDL)的厚度相媲美。带电分析物的富集效率取决于静电斥力,静电斥力由MWCNTs栅极上局部电场的分布调节。 NES装置对被分析物表现出极性选择性,并通过探测表面电荷密度对所施加的栅极场的依赖性来执行对生物分子的有效收集和分离。聚对二甲苯-MWCNT纳米通道的可调门被用作纳米级生物分子的筛分装置。仅用45分钟,收集FITC标记的牛血清白蛋白(BSA,0.033nM)的实验结果就高达近10到6倍。这些数据归因于由MWCNT之间形成的许多纳米通道进行的平行分子筛分过程。该设备允许不带电的极性分子(例如水)快速通过,从而实现高效的生物分子浓缩,以应用于超高灵敏度的生物传感。

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