State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, Changchun 130022, Jilin, PR China.
Nanoscale. 2011 Sep 1;3(9):3767-73. doi: 10.1039/c1nr10434a. Epub 2011 Aug 8.
Ion current through a nascent nanochannel with conically shaped geometry in PET (polyethylene terephthalate) membrane sandwiched between two same buffer solutions at pH ≤ 3 was routinely considered to exhibit no rectification and, if any, much weaker rectification than that for a nanochannel with a negative surface charge, since the surface charge on the membrane decreases to zero along with decreasing the pH value of the buffer solution down to the pK(a) of carboxylic acid. However, in this study, we discovered that in the buffer solution with low ionic strength at pH values below 3, the conically shaped nanochannels exhibited distinct ion current rectification, as expected for nanochannels with a positive surface charge, if voltages beyond ±2V range were scanned. We reasoned that the current rectification engendered by the positive surface charge of a conical nanochannel was due to further protonation of the hydrogen bonded hydrogel layer or neutral carboxylic acid inside the nanochannel. Therefore, our results enrich the knowledge about nanochannel technology and indicate that a nanofluidic diode based on pH-reversed ion current rectification through a conical nanochannel can be achieved without any modification of the PET membrane.
在 pH 值≤3 的情况下,在两个相同缓冲溶液之间夹着的聚对苯二甲酸乙二醇酯(PET)膜中的锥形纳米通道中,离子电流通常被认为不具有整流作用,如果有整流作用,也比带负表面电荷的纳米通道的整流作用弱得多,因为随着缓冲溶液 pH 值降低到羧酸的 pKa,膜上的表面电荷降至零。然而,在这项研究中,我们发现,在 pH 值低于 3 的低离子强度缓冲溶液中,如果扫描的电压超过±2V 范围,锥形纳米通道表现出明显的离子电流整流,这与带正表面电荷的纳米通道一致。我们推断,锥形纳米通道的正表面电荷引起的电流整流是由于纳米通道内氢键水凝胶层或中性羧酸的进一步质子化。因此,我们的结果丰富了纳米通道技术的知识,并表明无需对 PET 膜进行任何修改,就可以基于通过锥形纳米通道的 pH 反转离子电流整流来实现纳流二极管。