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胶束组装导致正常和反向 Tetronics® 在单一和混合溶液环境中的结构生长/转变。

Micellar assembly leading to structural growth/transition in normal and reverse Tetronics® in single and mixed solution environment.

机构信息

Department of Chemistry, Sardar Vallabhbhai National Institute of Technology (SVNIT), Ichchhanath, Surat-395 007, Gujarat, India.

Solid State Physics Division, Bhabha Atomic Research Centre (BARC), Trombay, Mumbai-400 085, Maharashtra, India.

出版信息

Soft Matter. 2022 Jun 22;18(24):4543-4553. doi: 10.1039/d2sm00321j.

Abstract

This study scrutinizes the self-association of ethylene oxide (EO)-propylene oxide (PO)-based star-shaped block copolymers as normal Tetronic® (T904) and reverse Tetronic® R (T90R4) with varying molecular characteristics and different hydrophilic-hydrophobic ratios in an aqueous solution environment. These thermo-responsive solutions appear clear, transparent or bluish up to 10%w/v, which anticipated the probable transition of unimers to spherical or ellipsoidal micelles which is complemented by scattering experiments. In a single-solution environment, 10%w/v T904 formed star-shaped micelles at ambient temperature and exhibited a micellar growth/transition with temperature ageing. While 10%w/v T90R4 exists as unimers or a Gaussian coil over a wide range of temperature. Very interestingly, close to the cloud point (CP) flower-shaped spherical and ellipsoidal micelles were formed. A similar proposed micellar scheme was also examined for mixed systems T904 : T90R4 in varying ratios (1 : 0, 3 : 1, 1 : 1, 1 : 3 and 0 : 1) giving an account to the solution behavior of the mixtures. An amalgamation of dynamic light scattering (DLS) and small-angle neutron scattering (SANS) techniques achieved the thorough extraction of the structural parameters of the micellar system. The hydrodynamic diameter () of the micelles with temperature variation was evaluated from dynamic light scattering (DLS) while the structure factor of the micelles was found by employing small-angle neutron scattering (SANS). Furthermore, the single and mixed micellar systems were quantitatively and qualitatively examined for anticancer drug solubilization using UV-vis spectroscopy for their superior use as potential nanocargos.

摘要

本研究考察了不同亲水亲油比的环氧乙烷(EO)-丙烯氧化物(PO)基星形嵌段共聚物在水溶液环境中的自缔合,包括普通 Tetronic®(T904)和反向 Tetronic® R(T90R4)。这些温敏溶液在高达 10%w/v 的浓度下呈清澈、透明或略带蓝色,这表明可能发生了单体向球形或椭球形胶束的转变,散射实验也证实了这一点。在单一溶液环境中,10%w/v 的 T904 在环境温度下形成星形胶束,并随着温度老化表现出胶束的生长/转变。而 10%w/v 的 T90R4 在很宽的温度范围内以单体或高斯线圈的形式存在。非常有趣的是,在接近浊点(CP)时,形成了花状球形和椭球形胶束。同样的胶束模型也被用于不同比例(1:0、3:1、1:1、1:3 和 0:1)的混合体系 T904:T90R4,以解释混合物的溶液行为。动态光散射(DLS)和小角中子散射(SANS)技术的结合实现了对胶束体系结构参数的全面提取。通过动态光散射(DLS)评估了胶束随温度变化的水动力直径(),而通过小角中子散射(SANS)则得到了胶束的结构因子。此外,通过紫外-可见光谱法对单胶束和混合胶束体系进行了定量和定性的抗癌药物增溶研究,以评估其作为潜在纳米载体的应用潜力。

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