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Size-controlled preparation of gold nanoparticles with novel pH responsive gemini amphiphiles

机译:具有新型pH响应双子座两亲物的金纳米粒子的尺寸控制制备

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摘要

The two-phase synthesis of gold nanoparticles, facilitated by a new family of pH sensitive gemini amphiphiles, Di-CnPh, N, N'-dialkyl-N, N'-di(ethyl-phthalimide) ethylenediamines, simultaneously played the roles as both phase-transfer reagents and stabilizers, was investigated in this study. Di-CnPh had limited solubility in aqueous but could be protonated at water-organic interfaces when the subphase pH is under acidic and neutral conditions, which then served as both the phase transfer agents and stabilizers of Au ions and Au nanoparticles. Size controlled gold nanoparticles were successfully synthesized at acidic and neutral pHs whereas no gold nanoparticles could be detected under basic conditions, which is related to the electrostatic interaction between ligands and metal ions. Meanwhile, the nano size dependence of pH was mainly due to the electrostatic interaction between amphiphiles. Furthermore, the size of Au NPs was highly related to the hydrophobic chain length of Di-CnPh and its concentration in the oil phase as well. The neutral pH condition, the increase in the concentration of amphiphile and the length of the chain favor the formation of smaller size and narrower size distribution of Au NPs.
机译:新型的pH敏感双子双亲分子Di-CnPh,N,N'-二烷基-N,N'-二(乙基邻苯二甲酰亚胺)乙二胺促进了金纳米颗粒的两相合成。在这项研究中研究了相转移试剂和稳定剂。 Di-CnPh在水溶液中的溶解度有限,但是当子相pH在酸性和中性条件下时,可以在水-有机界面上质子化,然后用作Au离子和Au纳米粒子的相转移剂和稳定剂。在酸性和中性pH下成功合成了尺寸可控的金纳米颗粒,而在碱性条件下无法检测到金纳米颗粒,这与配体和金属离子之间的静电相互作用有关。同时,pH的纳米尺寸依赖性主要是由于两亲物之间的静电相互作用。此外,Au NPs的大小与Di-CnPh的疏水链长度及其在油相中的浓度高度相关。中性pH条件,两亲物浓度的增加和链的长度有利于Au NP的较小尺寸和较窄尺寸分布的形成。

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