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光响应水凝胶摩擦

Photoresponsive hydrogel friction.

作者信息

Chau Allison L, Karnaukh Kseniia M, Maskiewicz Ian, Read de Alaniz Javier, Pitenis Angela A

机构信息

Materials Department, University of California, Santa Barbara, Santa Barbara, CA, USA.

Department of Chemistry and Biochemistry, University of California, Santa Barbara, Santa Barbara, CA, USA.

出版信息

Soft Matter. 2024 Sep 18;20(36):7227-7236. doi: 10.1039/d4sm00677a.

Abstract

Photoresponsive hydrogels are an emerging class of stimuli-responsive materials that exhibit changes in physical or chemical properties in response to light. Previous investigations have leveraged photothermal mechanisms to achieve reversible changes in hydrogel friction, although few have focused on photochemical means. To date, the tribological properties of photoswitchable hydrogels (, friction and lubrication) have remained underexplored. In this work, we incorporated photoresponsive methoxy-spiropyran-methacrylate monomers (methoxy-SP-MA) into a hydrogel network to form a copolymerized system of poly(-isopropylacrylamide--2-acrylamido-2-methylpropane sulfonic acid--methoxy-spiropyran-methacrylate) (p(NIPAAm--AMPS--SP)). We demonstrated repeatable photoresponsive changes to swelling, friction, and stiffness over three light cycles. Our findings suggest that volume changes driven by the decreased hydrophilicity of the methoxy-SP-MA upon light irradiation are responsible for differences in the mechanical and tribological properties of our photoresponsive hydrogels. Our results could inform future designs of photoswitchable hydrogels for applications ranging from biomedical applications to soft robotics.

摘要

光响应水凝胶是一类新兴的刺激响应材料,其物理或化学性质会因光照而发生变化。先前的研究利用光热机制实现水凝胶摩擦力的可逆变化,不过很少有研究聚焦于光化学方法。迄今为止,光开关水凝胶的摩擦学特性(即摩擦和润滑)仍未得到充分探索。在这项工作中,我们将光响应性的甲氧基 - 螺吡喃 - 甲基丙烯酸酯单体(甲氧基 - SP - MA)引入水凝胶网络,以形成聚(N - 异丙基丙烯酰胺 - N - 2 - 丙烯酰胺 - 2 - 甲基丙烷磺酸 - 甲氧基 - 螺吡喃 - 甲基丙烯酸酯)(p(NIPAAm - AMPS - SP))的共聚体系。我们展示了在三个光循环过程中,水凝胶的溶胀、摩擦和硬度可重复的光响应变化。我们的研究结果表明,光照后甲氧基 - SP - MA亲水性降低所驱动的体积变化,是导致我们的光响应水凝胶机械性能和摩擦学性能差异的原因。我们的结果可为未来光开关水凝胶的设计提供参考,这些设计可应用于从生物医学应用到软机器人等诸多领域。

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