Department of Dentistry, Graduate School, Kyungpook National University, Daegu 700-412, Republic of Korea.
Center for Research Facilities, Yeungnam University, Gyeongsan 712-749, Republic of Korea.
J Nanosci Nanotechnol. 2019 Feb 1;19(2):1044-1047. doi: 10.1166/jnn.2019.15901.
Recently, a simple surface modification treatment of titanium (Ti) was developed to produce nano-and micro-scale features on the surfaces via simple immersion in an oxidative aqueous solution (30% hydrogen peroxide/5% sodium bicarbonate). However, this treatment method of Ti surfaces requires a relatively long immersion time (4 h) in the oxidative solution. In this study, we investigated whether an increase in the temperature of the oxidative etching solution can shorten the immersion time of Ti effectively. Polished grade 5 dental Ti (Ti-6Al-4V) discs were immersed in the oxidative aqueous solution either for 30 or 60 min. The temperature of the etching solution was maintained at 25 (similar to room temperature), 35, or 45 °C during etching. The etched surfaces were studied in terms of micro- and nano-structures, surface roughness, and wettability (surface energy). The increase in the temperature of the solution accelerated the etching effect of Ti and created both micro- and nano-structures on the surfaces more effectively. In particular, immersion for 60 min at the solution temperature of 35 °C significantly increased the surface roughness and wettability, although the etching effect was enhanced further at the solution temperature of 45 °C.
最近,开发了一种简单的钛(Ti)表面改性处理方法,通过简单地将其浸入氧化水溶液(30%过氧化氢/5%碳酸氢钠)中,在表面上产生纳米和微米级的特征。然而,这种 Ti 表面的处理方法需要在氧化溶液中较长的浸泡时间(4 小时)。在本研究中,我们研究了增加氧化刻蚀溶液的温度是否可以有效地缩短 Ti 的浸泡时间。将抛光的 5 级牙科 Ti(Ti-6Al-4V)圆盘在氧化水溶液中浸泡 30 或 60 分钟。在刻蚀过程中,刻蚀溶液的温度保持在 25°C(类似于室温)、35°C 或 45°C。从微观和纳米结构、表面粗糙度和润湿性(表面能)等方面研究了蚀刻表面。溶液温度的升高加速了 Ti 的蚀刻效果,并更有效地在表面上形成了微观和纳米结构。特别是,在 35°C 的溶液温度下浸泡 60 分钟,显著提高了表面粗糙度和润湿性,尽管在 45°C 的溶液温度下进一步增强了蚀刻效果。