Guo Mengzhe, Hsieh You-Lo
Chemical Engineering, University of California at Davis Davis California 95616-8722 USA
Biological and Agricultural Engineering, University of California at Davis Davis California 95616-8722 USA.
RSC Adv. 2023 Sep 1;13(37):26089-26101. doi: 10.1039/d3ra04610a. eCollection 2023 Aug 29.
The optimally one-pot synthesized 2-bromoproponyl esterified cellulose nanofibril (Br-CNF) has been validated as a robust macroinitiator for self-surface-initiated atom transfer radical polymerization (SI-ATRP) of lauryl methacrylate (LMA) in tunable graft lengths and high conversions of up to 92.7%. SI-ATRP of LMA surface brushes on Br-CNF followed first order kinetics in lengths at up to 46 degree of polymerization (DP) based on mass balance or 31 DP by solution-state H NMR in DMSO-. With increasing PLMA graft lengths, Br-CNF-g-PLMA cast films exhibited increasing hydrophobicity with water contact angles from 80.9° to 110.6°. The novel Br-CNF-g-PLMA exhibited dual shear thinning behavior of the Br-CNF core as evident by < 1 flow behavior index and drag reducing properties of PLMA grafts with increased viscosity at up to 21 071×. Br-CNF-g-PLMA with 46 DP could be fully dispersed in silicon pump oil to function as a drag reducer to enhance viscosity up to 5× at 25, 40, and 55 °C. The novel macroinitiator capability of Br-CNF in SI-ATRP of vinyl monomers and the bottlebrush-like LMA surface grafted Br-CNF as highly effective viscosity modifier and drag reducer further demonstrate the versatile functionality of Br-CNF beyond hydrophobic coatings and reactive polyols previously reported.
经优化一锅法合成的2-溴丙酯酯化纤维素纳米原纤维(Br-CNF)已被验证为一种强大的大分子引发剂,可用于甲基丙烯酸月桂酯(LMA)的自表面引发原子转移自由基聚合(SI-ATRP),实现可调的接枝长度,最高转化率可达92.7%。基于质量平衡,LMA在Br-CNF表面刷上的SI-ATRP在聚合度高达46(DP)时遵循一级动力学,在DMSO-中通过溶液态1H NMR测定为31 DP。随着PLMA接枝长度的增加,Br-CNF-g-PLMA流延膜的疏水性增强,水接触角从80.9°增加到110.6°。新型的Br-CNF-g-PLMA表现出Br-CNF核的双重剪切变稀行为,表现为流动行为指数<1,以及PLMA接枝的减阻性能,粘度增加高达21071倍。具有46 DP的Br-CNF-g-PLMA可以完全分散在硅油中,用作减阻剂,在25、40和55°C下将粘度提高5倍。Br-CNF在乙烯基单体的SI-ATRP中的新型大分子引发剂能力以及刷状LMA表面接枝的Br-CNF作为高效粘度调节剂和减阻剂,进一步证明了Br-CNF除了先前报道的疏水涂层和反应性多元醇之外的多功能性。