Wu Youshen, Wang Yilin, Guan Xin, Zhang Hui, Guo Rui, Cui Chenhui, Wu Daocheng, Cheng Yilong, Ge Zhishen, Zheng Yuansuo, Zhang Yanfeng
Engineering Research Center of Energy Storage Materials and Devices, Ministry of Education, School of Chemistry, Xi'an Jiaotong University, Xi'an, 710049, P. R. China.
Key Laboratory of Biomedical Information Engineering of the Ministry of Education, School of Life Science and Technology, Xi'an Jiaotong University, Xi'an, 710049, P. R. China.
Adv Mater. 2023 Nov;35(48):e2306882. doi: 10.1002/adma.202306882. Epub 2023 Oct 25.
Inspired by mechanically interlocking supramolecular materials, exploiting the size difference between the bulky solvent and the cross-linked network mesh, a molecular clogging (MC) effect is developed to effectively inhibit solvent migration in organogels. A bulky solvent (branched citrate ester, BCE) with a molecular size above 1.4 nm is designed and synthesized. Series of MC-Gels are prepared by in situ polymerization of crosslinked polyurea with BCE as the gel solvent. The MC-Gels are colorless, transparent, and highly homogeneous, show significantly improved stability than gels prepared with small molecule solvents. As solvent migration is strongly inhibited by molecular clogging, the solvent content of the gels can be precisely controlled, resulting in a series of MC-Gels with continuously adjustable mechanics. In particular, the modulus of MC-Gel can be regulated from 1.3 GPa to 30 kPa, with a variation of 43 000 times. The molecular clogging effect also provides MC-Gels with unique high damping (maximum damping factor of 1.9), impact resistant mechanics (high impact toughness up to 40.68 MJ m ). By applying shatter protection to items including eggs and ceramic armor plates, the potential of MC-Gels as high strength, high damping soft materials for a wide range of applications is well demonstrated.
受机械互锁超分子材料的启发,利用体积较大的溶剂与交联网络网孔之间的尺寸差异,开发了一种分子堵塞(MC)效应,以有效抑制溶剂在有机凝胶中的迁移。设计并合成了一种分子尺寸大于1.4纳米的体积较大的溶剂(支链柠檬酸酯,BCE)。以BCE为凝胶溶剂,通过交联聚脲的原位聚合制备了一系列MC凝胶。MC凝胶无色、透明且高度均匀,与用小分子溶剂制备的凝胶相比,稳定性显著提高。由于分子堵塞强烈抑制了溶剂迁移,凝胶的溶剂含量可以精确控制,从而得到一系列力学性能可连续调节的MC凝胶。特别是,MC凝胶的模量可以从1.3吉帕调节到30千帕,变化达43000倍。分子堵塞效应还赋予MC凝胶独特的高阻尼(最大阻尼因子为1.9)、抗冲击力学性能(高达40.68兆焦/平方米的高冲击韧性)。通过对包括鸡蛋和陶瓷装甲板在内的物品进行防破碎保护,充分展示了MC凝胶作为高强度、高阻尼软材料在广泛应用中的潜力。