Wu Dianguo, Cheng Jinliang, Su Xin, Feng Yujun
Polymer Research Institute, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu, 610065, China.
Polymer Research Institute, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu, 610065, China.
Carbohydr Polym. 2021 May 15;260:117792. doi: 10.1016/j.carbpol.2021.117792. Epub 2021 Feb 14.
Methylcellulose (MC) has received considerable attention because of its thermogelation behavior in aqueous solutions upon heating; however, the accompanied macro-phase separation results in demixing and detriment of thickening power. To alleviate this drawback, a novel family of hydrophilically modified methylcelluloses (HMMCs) was prepared by introducing acylamino, carboxyl, and amino groups onto MC side chains. Above association temperature (T), MC solutions experienced obvious macro-phase separation and thermothinning phenomenon; on the contrary, HMMCs solutions exhibited thermo- and salt-thickening behaviors, and T could be adjusted from 44 °C to 87 °C by altering the nature of HMMCs or salt content in solutions. The mechanism to eliminate the macro-phase separation of HMMC stems from the balance between hydrophilicity and hydrophobicity. This work opens a new avenue for cellulose derivatives to sustain their thermoviscosifying ability and widen their applications in hostile environments.
甲基纤维素(MC)因其在水溶液中加热时的热凝胶化行为而受到广泛关注;然而,伴随的宏观相分离会导致分层并损害增稠能力。为了缓解这一缺点,通过在MC侧链上引入酰氨基、羧基和氨基,制备了一种新型的亲水性改性甲基纤维素(HMMC)。在缔合温度(T)以上,MC溶液经历明显的宏观相分离和热致变稀现象;相反,HMMC溶液表现出热增稠和盐增稠行为,并且可以通过改变HMMC的性质或溶液中的盐含量将T从44℃调节到87℃。消除HMMC宏观相分离的机制源于亲水性和疏水性之间的平衡。这项工作为纤维素衍生物维持其热增粘能力并拓宽其在恶劣环境中的应用开辟了一条新途径。