Shapira Yekaterina, Multanen Victor, Whyman Gene, Bormashenko Yelena, Chaniel Gilad, Barkay Zahava, Bormashenko Edward
Ariel University, Engineering Faculty, Department of Chemical Engineering, Biotechnology and Materials, 407000, P.O.B. 3, Ariel, Israel.
Ariel University, Natural Sciences Faculty, Physics Department, 407000, P.O.B. 3, Ariel, Israel.
Colloids Surf B Biointerfaces. 2017 Sep 1;157:417-423. doi: 10.1016/j.colsurfb.2017.06.006. Epub 2017 Jun 7.
Cold radiofrequency plasma treatment modified wetting and floating regimes of pepper seeds. The wetting regime of plasma-treated seeds was switched from the Wenzel-like partial wetting to the complete wetting. No hydrophobic recovery following the plasma treatment was registered. Environmental scanning electron microscopy of the fine structure of the (three-phase) triple line observed with virgin and plasma-treated seeds is reported. Plasma treatment promoted rapid sinking of pepper seeds placed on the water/air interface. Plasma treatment did not influence the surface topography of pepper seeds, while charged them electrically. Electrostatic repulsion of floating plasma-treated seeds was observed. The surface charge density was estimated from the data extracted from floating of charged seeds and independently with the electrostatic pendulum as σ≈1-2μC/m.
冷射频等离子体处理改变了辣椒种子的湿润和漂浮状态。经等离子体处理的种子的湿润状态从类似文泽尔的部分湿润转变为完全湿润。等离子体处理后未观察到疏水恢复现象。报道了对未处理种子和经等离子体处理的种子(三相)三线精细结构的环境扫描电子显微镜观察结果。等离子体处理促使置于水/空气界面的辣椒种子快速下沉。等离子体处理不影响辣椒种子的表面形貌,但使种子带电。观察到经等离子体处理的漂浮种子存在静电排斥现象。根据带电种子漂浮数据并独立使用静电摆估计表面电荷密度,σ≈1 - 2μC/m。