Feng Andong, Dedovets Dmytro, Gu Yunjiao, Zhang Shi, Sha Jin, Han Xia, Pera-Titus Marc
Eco-Efficient Products & Processes Laboratory (E2P2L), UMI 3464 CNRS-Solvay, Shanghai 201108, China.
University of Bordeaux, Laboratory of the Future (LOF), UMR 5258 CNRS-Solvay, Pessac 33600, France.
J Colloid Interface Sci. 2022 Jul;617:171-181. doi: 10.1016/j.jcis.2022.02.034. Epub 2022 Feb 10.
Can surface-active particles be designed à la carte just by incorporating functional groups mimicking the structure of the solvent and gas? This is based on the idea that, to achieve good foamability, the particle wettability needs to be finely tuned to adjust the liquid-particle and gas-particle surface tensions. In practice, could particles containing phenyl rings and alkyl chains assemble at the air-liquid interface and stabilize foams based on aromatic solvents?
A library of organosilica particles was prepared by sol-gel synthesis using aromatic organosilane precursors. The particles were characterized by TGA, FTIR and C/Si MAS NMR. The foaming properties were studied after hand shaking and high-speed homogenization. The influence of particle wettability and solvent properties on foam formation was systematically investigated. A comparison was carried out between biphenyl-bridged particles and various stabilizers on foamability in benzyl alcohol.
Biphenyl-bridged particles could stabilize foams in aromatic solvents with a high foam volume fraction up to 96% using Ultra-Turrax. The presence of biphenyl rings and short alkyl chains was crucial for foamability. Organic foams were prepared for aromatic solvents with intermediate surface tension (35-44 mN m) and contact angle in the range 32-53°. Biphenyl-bridged particles outperformed polytetrafluoroethylene and fluorinated surfactants in benzyl alcohol.
仅通过引入模仿溶剂和气体结构的官能团,就能量身定制表面活性颗粒吗?这基于这样一种观点,即要实现良好的发泡性,需要精细调节颗粒的润湿性,以调整液 - 颗粒和气 - 颗粒的表面张力。在实际中,含有苯环和烷基链的颗粒能否在气 - 液界面组装,并基于芳香族溶剂稳定泡沫?
使用芳香族有机硅烷前驱体通过溶胶 - 凝胶合成制备了一系列有机硅颗粒。通过热重分析(TGA)、傅里叶变换红外光谱(FTIR)和碳/硅固体核磁共振(C/Si MAS NMR)对颗粒进行了表征。在手动摇晃和高速均质后研究了发泡性能。系统研究了颗粒润湿性和溶剂性质对泡沫形成的影响。对联苯桥连颗粒与各种稳定剂在苯甲醇中的发泡性进行了比较。
使用超高速分散均质机(Ultra - Turrax),联苯桥连颗粒能够在芳香族溶剂中稳定泡沫,泡沫体积分数高达96%。联苯环和短烷基链的存在对发泡性至关重要。制备了用于表面张力中等(35 - 44 mN/m)且接触角在32 - 53°范围内的芳香族溶剂的有机泡沫。在苯甲醇中,联苯桥连颗粒的性能优于聚四氟乙烯和含氟表面活性剂。