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温差法制备纳米气泡及温度的影响
引用本文:管 旻,郭 文,高莲花,唐雨钊,胡 钧,董亚明.温差法制备纳米气泡及温度的影响[J].上海师范大学学报(自然科学版),2012,41(2):134-141.
作者姓名:管 旻  郭 文  高莲花  唐雨钊  胡 钧  董亚明
作者单位:1. 上海师范大学 生命与环境科学学院,上海,200234
2. 中国科学院 上海应用物理研究所,上海,201800
摘    要:通过一系列的实验建立了利用冷水(4±0.1℃)和热水(25~40℃)进行替换即温差法制备界面纳米气泡的方法.原子力显微镜(AFM)观察显示:温差法也能在疏水的高序热解石墨(HOPG)表面上产生稳定的纳米气泡.统计结果显示:热水温度在25~38℃范围内,产生纳米气泡的数量随着热水温度的升高而增多,当热水温度为38℃左右时达到最大值,之后随着热水温度的升高反而减少;每平方微米纳米气泡气体的总体积在37℃时达到最大值;温差法也能产生纳米气层和双层结构,其性质与前人发现的一致.

关 键 词:纳米气泡  温差法  AFM  HOPG/水界面  纳米气层

Investigation on the temperature difference method for producing nanobubbles and their physical properties
GUAN Min , GUO Wen , GAO Lian-hua , TANG YU-zhao , HU Jun , DONG Ya-ming.Investigation on the temperature difference method for producing nanobubbles and their physical properties[J].Journal of Shanghai Normal University(Natural Sciences),2012,41(2):134-141.
Authors:GUAN Min  GUO Wen  GAO Lian-hua  TANG YU-zhao  HU Jun  DONG Ya-ming
Institution:1 (1.College of Life and Environment Sciences,Shanghai Normal University,Shanghai 200234,China; 2.Shanghai Institute of Applied Physics,Chinese Academy of Sciences,Shanghai 201800,China)
Abstract:For producing interfacial nanobubbles,a systematic experiment,called temperature difference method,was carried out by replacing low temperature water(LTW) with high temperature water(HTW) at the highly oriented pyrolytic graphite(HOPG) –water interface.When LTW(4±0.1℃) mixed with HTW(25-40℃),nanobubbles were observed by atomic force microscope(AFM)and their size,number and total volume per square micrometer were measured.The result showed that when the temperature of HTW was lower than 38℃,the number of nanobubbles increased with the increase of temperature and reaches its maximum at 38℃.When the temperature of HTW was above 38℃,the number of nanobubbles decreased with the increasd of temperature.The maximum average total volume was obtained at 37℃,and then the volume decreased with further incrcasing temperature due to the gas outflow during the replacement process.The coexistence of nanobubbles and pancake-like gas layers were also found by using temperature difference method.The characteristics and reasons for the formation were consistent with earlier research.
Keywords:nanobubbles  temperature difference method  AFM  HOPG-water interface  pancake-like gas layers
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