Zhao Lei, Zhao Kang, Yan Wei-Guo, Liu Zhifeng
School of Civil Engineering and Architecture, Wuhan University of Technology, Wuhan 430068, China.
School of Civil Engineering and Architecture, Xinxiang University, Xinxiang 453003, China.
Materials (Basel). 2018 Nov 19;11(11):2318. doi: 10.3390/ma11112318.
In this paper, a simple, inexpensive, and rapid method for the fabrication of controlled layer candle soot film has been reported by interface self-assembly and transferred method. The mechanism of candle soot self-assembly is explained and their morphology, elemental composition, optical, and wetting properties are characterized. The uniformity and thickness of prepared films especially depend on the concentration of candle soot mixed solution (alcohol and deionized water). The results show that the optimal concentration of candle soot solution is approximately ~0.2% wt/mL. In addition, the absorption spectra of the controlled-layer candle soot films are determined by the number of layers and the surface morphology. The hydrophobic properties of candle soot films are closely related to their layer number. When these films reach to the fourth layer, the water contact angle and roll-off angle are measured as 142° ± 2° and 6°, respectively. The controlled assembly CS films have the potential application in photo/electrocatalysis, solar cells, lithium-ion batteries, and water splitting.
本文报道了一种通过界面自组装和转移法制备可控层蜡烛烟灰膜的简单、廉价且快速的方法。解释了蜡烛烟灰自组装的机制,并对其形态、元素组成、光学和润湿性能进行了表征。制备薄膜的均匀性和厚度尤其取决于蜡烛烟灰混合溶液(酒精和去离子水)的浓度。结果表明,蜡烛烟灰溶液的最佳浓度约为0.2% wt/mL。此外,可控层蜡烛烟灰膜的吸收光谱由层数和表面形态决定。蜡烛烟灰膜的疏水性能与其层数密切相关。当这些薄膜达到第四层时,测得水接触角和滚落角分别为142°±2°和6°。可控组装的CS膜在光/电催化、太阳能电池、锂离子电池和水分解方面具有潜在应用。