Little Uel, Buchanan Fraser, Harkin-Jones Eileen, Graham Bill, Fox Brendan, Boyd Adrian, Meenan Brian, Dickson Glenn
Queen's University Belfast, Co. Antrim, N. Ireland, UK.
Acta Biomater. 2009 Jul;5(6):2025-32. doi: 10.1016/j.actbio.2009.01.042. Epub 2009 Feb 4.
The role of roughening and functionalization processes involved in modifying the wettability of poly(epsilon-caprolactone) (PCL) after treatment by an atmospheric pressure glow discharge plasma is discussed. The change in the ratio of CO/C-O bonds is a significant factor influencing the wettability of PCL. As the contact angle decreases, the level of CO bonds tends to rise. Surface roughness alterations are the driving force for lasting increases in wettability, while the surface functional species are shorter lived. We can approximate from ageing that the increase in wettability for PCL after plasma treatment is 55-60% due to roughening and 40-45% due to surface functionalization for the plasma device investigated.
讨论了通过大气压辉光放电等离子体处理后,聚己内酯(PCL)润湿性改性过程中涉及的粗糙化和功能化过程的作用。CO/C-O键比例的变化是影响PCL润湿性的一个重要因素。随着接触角的减小,CO键的水平趋于上升。表面粗糙度的改变是润湿性持续增加的驱动力,而表面功能物种的寿命较短。从老化情况近似估计,对于所研究的等离子体装置,等离子体处理后PCL润湿性的增加中,约55 - 60%归因于粗糙化,40 - 45%归因于表面功能化。