梯度表面能材料及液滴运动特性实验
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TK12

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国家自然科学基金


Experimental Study for the Movement of Liquid Droplets on the Surface with Gradient Surface Energy
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    摘要:

    采用十二烷基三氯硅烷(C12H25Cl3Si)和辛基三氯硅烷(C8H17Cl3Si),通过化学气相沉积的方法(CVD),在硅基板上制取了具有梯度表面能的材料表面.通过躺滴法,测量了梯度表面能材料水平表面上的微量液滴接触角的分布,并以此表征材料表面能的分布.实验表明:水平放置的梯度表面能材料表面可驱使其上面的直径为1~3 mm的液滴从憎水侧向亲水侧迁移,单个液滴的运动速度最大可达0.9 m/s.在实验观察的基础上,探讨了液滴在具有梯度表面能材料表面运动的机理.

    Abstract:

    By using the chemical vapor deposition (CVD), a surface with gradient surface energy is fabricated based on the treated silicon chip. The dodecyltrichlorosilane (C_(12)H_(25)Cl_3Si) and Octrytrichlorosilane (C_(8)H_(17)Cl_3Si) are used as the source of silanization. By using the measurement of sessile drop method, the surface with gradient surface energy was characterized by measuring the contact angle of small water which lied on the surface of the treated silicon chip. The experiment shows the liquid droplets are driven to move from hydrophobic to hydrophilic zone on the gradient surface which is placed horizontally, the diameter of the droplets are 1~3 mm, and the single droplet reached the maximum velocity of up to 0.9 m/s. Based on the experimental results, the mechanical of the movement of the liquid droplet on the gradient surface is researched.

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王宏,廖强,朱恂.梯度表面能材料及液滴运动特性实验[J].重庆大学学报,2005,28(8):35-38.

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  • 收稿日期:2005-04-13
  • 最后修改日期:2005-04-13
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