Design and synthesis of boric acid-based deep eutectic solvents for green liquid superlubricity and bio-lubrication applications

硼酸 共晶体系 润滑 材料科学 化学工程 化学 冶金 工程类 复合材料 有机化学 微观结构
作者
Qiulong Gao,Jinxia Hu,Pei Dong,Zhangpeng Li,Jinqing Wang,Shengrong Yang
出处
期刊: [Elsevier BV]
卷期号:8: 100572-100572 被引量:2
标识
DOI:10.1016/j.nxmate.2025.100572
摘要

Research on the chemical structures and physicochemical properties of deep eutectic solvents (DESs) is crucial to develop high-performance DES-based lubricating materials for solving tribological problem, including friction and wear. Herein, a series of boric acid-based DESs (B-DESs) were synthesized using choline chloride (hydrogen bond acceptor, HBA) and sorbitol/boric acid (hydrogen bond donors, HBDs) through a simple heating-stirring method. The experimental investigations and quantum chemistry calculation demonstrated that B-DESs exhibited optimized chemical structures, favorable rheological properties, low melting points (below −61.6 °C), high thermostability (with decomposition temperatures exceeding 282 °C), and biocompatibility. As lubricants, they showed exceptional tribological performance, achieving macroscale superlubricity with a friction coefficient of ∼0.0088 and excellent anti-wear properties on polyoxymethylene substrates even under high-load conditions. The exceptional lubrication performance was attributed to synergetic lubrication between the fluid nature of B-DESs and the self-lubrication property of the substrates, as well as the potential formation of lubricating films at the tribo-interface. This study introduces a novel and straightforward approach for synthesizing green and high-performance DES-based liquid superlubricity materials, and offering significant potential in bio-lubrication applications. Structural design and construction of boric acid-based deep eutectic solvents for green liquid superlubricity and potential bio-lubrication applications. • An eco-friendly and high-performance B-DES lubricant was designed and constructed. • B-DES exhibited stable chemical structure and favorable physicochemical properties. • B-DES achieved macroscale superlubricity via the synergetic lubrication between B-DES and the POM self-lubricating material. • It promoted the synthesis of liquid superlubricity materials and displayed significant potential in bio-lubrication applications.
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