Laboratoire de Génie Chimique, Faculté des sciences de l'ingénieur, Université Saad Dahlab, BP 270 Blida, Algeria.
J Colloid Interface Sci. 2011 May 15;357(2):372-8. doi: 10.1016/j.jcis.2011.02.041. Epub 2011 Feb 22.
Thermal behaviors of thermo sensitive hydroxypropyl cellulose (HPC), methyl cellulose (MC) and methyl hydroxypropyl cellulose (MHPC) solutions have been investigated in dilute regime of concentration (C<C*) by means of optical density (OD), Quasi Elastic Light Scattering (QELS) and Pyrene Fluorescence Spectroscopy (PyFS) measurements. The importance of controlling the rate of a temperature sweep regarding to the kinetic of association has been demonstrated. MHPC copolymer exhibits only one thermal transition at macroscopic scale (OD and QELS) but two distinct thermal transitions have been evidenced at mesoscopic scale (PyFS) suggesting a double association step for each thermo associative group (i.e. hydroxypropyl and methyl). In HPC/MC mixture, HPC undergoes its own thermal transition. The presence of MC leads to a shift of the temperature of HPC precipitation toward higher temperature even in dilute regime.
通过光密度(OD)、准弹性光散射(QELS)和芘荧光光谱(PyFS)测量,研究了在低浓度(C<C*)下热敏性羟丙基纤维素(HPC)、甲基纤维素(MC)和甲基羟丙基纤维素(MHPC)溶液的热行为。证明了控制温度扫描速率对于缔合动力学的重要性。MHPC 共聚物在宏观尺度(OD 和 QELS)上仅表现出一个热转变,但在介观尺度(PyFS)上显示出两个不同的热转变,表明每个热缔合基团(即羟丙基和甲基)存在双重缔合步骤。在 HPC/MC 混合物中,HPC 经历其自身的热转变。即使在低浓度下,MC 的存在也会导致 HPC 沉淀的温度向更高温度移动。