首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Detection of heavy-metal ions using liquid crystal droplet patterns modulated by interaction between negatively charged carboxylate and heavy-metal cations
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Detection of heavy-metal ions using liquid crystal droplet patterns modulated by interaction between negatively charged carboxylate and heavy-metal cations

机译:使用由带负电荷的羧酸盐和重金属阳离子之间的相互作用调制的液晶液滴模式检测重金属离子

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摘要

Herein, we demonstrated a simple, sensitive, and rapid label-free detection method for heavy-metal (HM) ions using liquid crystal (LC) droplet patterns on a solid surface. Stearic-acid-doped LC droplet patterns were spontaneously generated on an n-octyltrichlorosilane (OTS)-treated glass substrate by evaporating a solution of the nematic LC, 4-cyano-4'-pentylbiphenyl (5CB), dissolved in heptane. The optical appearance of the droplet patterns was a dark crossed texture when in contact with air, which represents the homeotropic orientation of the LC. This was caused by the steric interaction between the LC molecules and the alkyl chains of the OTS-treated surface. The dark crossed appearance of the acid-doped LC patterns was maintained after the addition of phosphate buffered saline (PBS) solution (pH 8.1 at 25 °C). The deprotonated stearic-acid molecules self-assembled through the LC/aqueous interface, thereby supporting the homeotropic anchoring of 5CB. However, the optical image of the acid-doped LC droplet patterns incubated with PBS containing HM ions appeared bright, indicating a planar orientation of 5CB at the aqueous/LC droplet interface. This dark to bright transition of the LC patterns was caused by HM ions attached to the deprotonated carboxylate moiety, followed by the sequential interruption of the self-assembly of the stearic acid at the LC/aqueous interface. The results showed that the acid-doped LC pattern system not only enabled the highly sensitive detection of HM ions at a sub-nanomolar concentration but it also facilitated rapid detection (< 10 min) with simple procedures.
机译:在这里,我们展示了一种使用固态表面上的液晶(LC)液滴图案的重金属(HM)离子简单,灵敏,快速,无标签的检测方法。通过蒸发溶解在庚烷中的向列型LC,4-氰基-4'-戊基联苯(5CB)的溶液,在正辛基三氯硅烷(OTS)处理的玻璃基板上自发生成硬脂酸掺杂的LC液滴图案。当与空气接触时,液滴图案的光学外观为深色交叉纹理,这表示LC的垂直取向。这是由于LC分子与OTS处理过的表面的烷基链之间的空间相互作用所致。在添加磷酸盐缓冲盐水(PBS)溶液(25°C,pH 8.1)后,酸掺杂LC模式的深色交叉外观得以保持。去质子化的硬脂酸分子通过LC /水界面自组装,从而支持5CB的同质锚定。然而,与含HM离子的PBS孵育的掺酸LC液滴图案的光学图像显得明亮,表明在水/ LC液滴界面处5CB的平面取向。 LC模式从暗到亮的过渡是由连接到去质子化的羧酸根部分的HM离子引起的,随后是LC /水界面处硬脂酸自组装的顺序中断。结果表明,酸掺杂的LC模式系统不仅可以在亚纳摩尔浓度下高灵敏度检测HM离子,而且还可以通过简单的步骤快速检测(<10分钟)。

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