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L-半胱氨酸衍生的芳族溶剂和乙醇/水混合物的两性凝胶剂。

L-cysteine-derived ambidextrous gelators of aromatic solvents and ethanol/water mixtures.

机构信息

Department of Chemistry, Indian Institute of Technology, Kharagpur, Kharagpur, India.

出版信息

Langmuir. 2013 Feb 19;29(7):2120-7. doi: 10.1021/la3042764. Epub 2013 Feb 5.

Abstract

A series of L-cysteine-derived double hydrocarbon chain amphiphilic gelators L-(3-alkyl-carbamoylsulfanyl)-2-(3-alkylurido)propionic acid with different hydrocarbon chain lengths (C6-C16) was designed and synthesized. These gelators efficiently gelate only aromatic solvents. The gelation ability increased with the increase of chain length up to C14, but then it dropped with further increase of chain length. The C12 and C14 derivatives also gelled ethanol/water mixtures. The gels were characterized by a number of methods, including FT-IR, NMR, and XRD spectroscopy, electron microscopy, and rheology. The amphiphiles were observed to form either flat lamellar or ribbonlike aggregates in aromatic solvents as well as in ethanol/water mixtures. The gelation in all the solvents employed was observed to be thermoreversible. The gel-to-sol transition temperature as well as mechanical strength of the organogels were observed to increase with the hydrocarbon chain length. Both types of gels of C8-C16 amphiphiles have gel-to-sol transition temperatures above the physiological temperature (310 K). FT-IR and variable temperature (1)H NMR measurements suggested that van der Waals interactions have major contribution in the gelation process. The gel-to-sol transition temperature and mechanical strength of the organogels in ethanol/water mixtures was observed to be higher than those of benzene organogel.

摘要

设计并合成了一系列具有不同碳链长度(C6-C16)的 L-半胱氨酸衍生的双疏水链两亲性凝胶因子 L-(3-烷基-氨甲酰基硫基)-2-(3-烷基尿嘧啶)丙酸。这些凝胶因子仅有效地凝胶化芳香族溶剂。凝胶能力随链长的增加而增加,在 C14 时达到最大值,但随后随链长的进一步增加而下降。C12 和 C14 衍生物也能凝胶化乙醇/水混合物。通过多种方法对凝胶进行了表征,包括 FT-IR、NMR 和 XRD 光谱、电子显微镜和流变学。观察到两亲物在芳香族溶剂以及乙醇/水混合物中形成扁平层状或带状聚集体。在所使用的所有溶剂中,凝胶化被观察为热可逆的。凝胶到溶胶的转变温度以及有机凝胶的机械强度随着碳链长度的增加而增加。C8-C16 两亲物的两种类型的凝胶的凝胶到溶胶的转变温度均高于生理温度(310 K)。FT-IR 和变温(1)H NMR 测量表明范德华相互作用在凝胶化过程中起主要作用。乙醇/水混合物中的有机凝胶的凝胶到溶胶的转变温度和机械强度高于苯有机凝胶。

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