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经氧化物纳米涂层功能化处理的颌面修复硅橡胶的颜色稳定性。

Color stability of maxillofacial prosthetic silicone functionalized with oxide nanocoating.

机构信息

Doctoral candidate, Department of Bioengineering, University of Illinois at Chicago, Chicago, lll.

Section Head of Maxillofacial Prosthodontics, Veterans Affairs Nebraska-Western Iowa Health Care System, Omaha, Nebr; Associate Professor, Department of Prosthodontics, Creighton University School of Dentistry, Omaha, Nebr.

出版信息

J Prosthet Dent. 2019 Mar;121(3):538-543. doi: 10.1016/j.prosdent.2018.06.007. Epub 2018 Nov 30.

Abstract

STATEMENT OF PROBLEM

Maxillofacial prostheses made of silicone elastomers undergo undesirable color degradation over time. How this color change can be prevented is unclear.

PURPOSE

The purpose of this in vitro study was to evaluate the ability of an oxide nanocoating to prevent color degradation of maxillofacial silicone elastomers after artificial accelerated aging.

MATERIAL AND METHODS

A silicone elastomer with functional intrinsic pigment was tested. Specimens (N=20) were fabricated, and half of them were coated with a nanolayer of titanium dioxide (TiO) using atomic layer deposition. Both coated and noncoated specimens (control) were exposed to artificial aging at 450 kJ/m of total energy. Changes in the color of all the specimens with and without TiO nanocoating were measured before and after the atomic layer deposition coating and before and after aging. The obtained color data were analyzed by using independent t tests and the 1-sample t test (α=.05).

RESULTS

Color change (ΔE1=3.4 ±1.4) was observed for the silicone elastomers after the specimens were surface coated with TiO nanofilm, although this change was not statistically significant (P=.369) compared with the acceptability threshold (ΔE=3.0). Upon exposure to artificial aging, the noncoated control specimens underwent color change (ΔE2=2.5 ±0.7, P=.083 compared with the acceptability threshold). The specimens with TiO nanocoated surface experienced the least color change (ΔE3=1.4 ±0.6) when subjected to artificial aging, and this change was significantly lower (P<.001) than the established acceptability threshold of ΔE=3.0. In addition, the chemical analyses confirmed that the TiO nanocoating remained on the surface after exposure to artificial aging.

CONCLUSIONS

TiO nanocoating was shown to be effective in reducing color degradation of the silicone elastomer exposed to artificial aging for 120 hours with 450 kJ/m of total energy.

摘要

问题陈述

用于颌面修复的硅橡胶弹性体随着时间的推移会发生不可取的颜色降解。目前尚不清楚如何防止这种颜色变化。

目的

本体外研究的目的是评估氧化纳米涂层在人工加速老化后防止颌面硅橡胶弹性体颜色降解的能力。

材料与方法

测试了一种具有功能内在颜料的硅橡胶弹性体。制作了 20 个试件,其中一半使用原子层沉积法涂覆了一层二氧化钛(TiO)纳米层。对涂覆和未涂覆纳米层(对照)的试件均进行了 450kJ/m 总能量的人工老化暴露。在原子层沉积涂层前后以及老化前后,测量了所有带和不带 TiO 纳米涂层的试件的颜色变化。使用独立 t 检验和 1 样本 t 检验(α=.05)分析获得的颜色数据。

结果

尽管与可接受性阈值(ΔE=3.0)相比,这种变化没有统计学意义(P=.369),但在表面涂覆 TiO 纳米薄膜后,硅橡胶弹性体的颜色变化(ΔE1=3.4±1.4)仍被观察到。暴露于人工老化后,未涂覆的对照试件发生颜色变化(ΔE2=2.5±0.7,与可接受性阈值相比 P=.083)。经过人工老化处理后,具有 TiO 纳米涂层表面的试件经历的颜色变化最小(ΔE3=1.4±0.6),且该变化明显低于(P<.001)既定的可接受性阈值ΔE=3.0。此外,化学分析证实 TiO 纳米涂层在暴露于人工老化后仍保留在表面。

结论

TiO 纳米涂层在暴露于 450kJ/m 总能量 120 小时的人工老化时,可有效减少硅橡胶弹性体的颜色降解。

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