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    题名 作者 年代 出处 被引量
1自修复超疏水材料的制备及功能化研究进展显示文摘该文归纳了近年来自修复超疏水材料的研究进展,总结了外援型和本征型自修复超疏水材料的制备方法,并介绍了功能化自修复超疏水材料的制备及其应用,最后指出了自修复超疏水材料现阶段所面临的挑战和未来的发展方向。与普通超疏水材料相比,自修复超疏水材料具有优良的表面稳定性和循环使用性,其使用寿命得到明显延长。此外,将自修复超疏水材料功能化,还能进一步扩大其使用范围。随着科学技术的发展,自修复超疏水材料必将在电子电器、医疗卫生、人工智能、海水淡化等众多领域中发挥关键性作用。高姗 李红强 官航 赖学军 陈中华 曾幸荣 2020精细化工2020,37,12:4
2High performance metal oxide based sensing device using an electrode with a solid/liquid/air triphase interface显示文摘The wetting properties of an electrode surface are of significant importance tothe performance of electrochemical devices because electron transfer occurs atthe electrode/electrolyte interface. Described in this paper is a low-cost metaloxide electrocatalyst (CuO)-based high-performance sensing device using anenzyme electrode with a solid/liquid/air triphase interface in which the oxygenlevel is constant and sufficiently high. We apply the sensing device to detectglucose, a model test analyte, and demonstrate a linear dynamic range up to50 mM, which is about 25 times higher than that obtained using a traditionalenzyme electrode with a solid/liquid diphase interface. Moreover, we show thatsensing devices based on a triphase assaying interface are insensitive to thesignificant oxygen level fluctuation in the analyte solution.Jun Zhang Xia Sheng Jian Jin Xinjian Feng Lei Jiang 2017Nano Research2017,10,9:1
3Control and Patterning of Various Hydrophobic Surfaces:Insitu Modification Realized by Flexible Atmospheric Plasma Stamp Technique显示文摘Wettability plays a vital role in fundamental researches and practical applications.Wettability control and patterning have been widely studied in various fields.Although researches have grown rapidly,the methods are still restricted by limitations including com­plicated processes,high equipment requirements and shortage of methods to treat complex surfaces.Here we report a simple,low cost,array-based wettability control and patterning method via in-situ modification by flexible plasma stamp.Wettability control and patterning on surfaces of superhydrophobic aluminum,superhydrophobic PDMS and silicon,even plant leaf and fruit are achieved.The relationships between the wettability and the treatment time are investigated.We elucidate that the wetting states can also be reversible.The surface modification mechanism of in-situ plasma treatment is further investigated.Utilizing the step by step treatment,gradient and arbitrary wettability patterning on surfaces have been obtained.Notably,the patterned wettability on the inner surface of a tube has been realized,which has never been reported.Finally,in-situ wettability patterning is applied to achieve microfluidics channels on the inner surface of superhydrophobic tube.This work will bring new insights into the study of wetting field and stimulate more applications on wettability control and patterning.Nan Zhang Chun Huang Jiaqian Li Ling Kang Huanxi Zheng Yaqin He Zuankai Wang Xiaofeng Zhou Jian Zhang 2020Journal of Bionic Engineering2020,17,3:0
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