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Prevention of Dielectric Breakdown of Nanopore Membranes by Charge Neutralization

机译:通过电荷中和防止纳米孔膜的介电击穿

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摘要

To achieve DNA sequencing using a solid-state nanopore, it is necessary to reduce the electric noise current. The noise current can be decreased by reducing the capacitance (C) of the nanopore device. However, we found that an electric-charge difference (ΔQ) between the electrolyte in one chamber and the electrolyte in another chamber occurred. For low capacitance devices, this electric-charge imbalance can lead to unexpectedly high voltage (ΔV = ΔQ/C) which disrupted the membrane when the two electrolytes were independently poured into the chambers. We elucidated the mechanism for the generation of initial defects and established new procedures for preventing the generation of defects by connecting an electric bypass between the chambers.
机译:为了使用固态纳米孔实现DNA测序,必须降低电噪声电流。可以通过减小纳米孔器件的电容(C)来降低噪声电流。然而,我们发现在一个腔室中的电解质与在另一腔室中的电解质之间出现电荷差(ΔQ)。对于低电容装置,这种电荷不平衡会导致意外的高电压(ΔV=ΔQ/ C),当两种电解质分别倒入腔室内时,会破坏膜。我们阐明了产生初始缺陷的机制,并建立了通​​过在腔室之间连接电旁路来防止缺陷产生的新程序。

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