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Preparation of Monodomain Liquid Crystal Elastomers and Liquid Crystal Elastomer Nanocomposites
Published on: February 6, 2016
Low-Viscosity Fatty Alcohol-Based Deep Eutectic Solvent for Ultralow Wear Behavior toward Steel Substrates under
Qiulong Gao1,2, Jiangxue Han1,2, Jinxia Hu3
1State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou730000, China.
Abstract:
Liquid lubricants are crucial for advanced bearing equipment, as they help mitigate key tribological issues including friction and wear, thereby reducing the risk of failure and extending service life. Herein, a low-viscosity, high-affinity deep eutectic solvent (TB-C12OH DES) was synthesized by blending tetrabutylammonium chloride with 1-dodecanol using a simple heating-stirring method, and it was used as a high-performance lubricant for steel substrates. The as-synthesized TB-C12OH DES showed favorable physicochemical properties. Reciprocating friction tests demonstrated that TB-C12OH DES achieved low friction coefficients (0.081-0.090) and ultralow wear rates (3.02-4.75 × 10-9 mm3 N-1 m-1) under high-load conditions (2.16-3.12 GPa). These results are attributed to the formation of stable adsorption film and tribofilms consisting of carbonaceous compounds and iron oxides at the tribointerface through adsorption and tribochemical reactions. This straightforward preparation strategy not only meets specific lubricant requirements but also paves the way for the development of eco-friendly DES-based lubricants with high lubricating performance to address friction and wear challenges under complex operating conditions.
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An ether molecule has a net dipole moment due to the polarity of C–O bonds. Subsequently, boiling points of ethers are lower than those of alcohols of comparable molecular weight and slightly higher than those of hydrocarbons of comparable molecular weight (Table 1).
Ethers can act as hydrogen bond acceptors, making them more water-soluble than hydrocarbons, but since ethers cannot act as hydrogen bond donors, they are much less soluble in water than alcohols. Ethers are considered...

