综述了"水下超疏油性/超疏气性与亲油性/亲油性的仿生可逆切换及纳秒激光烧蚀超疏水钛表面增透性能的改善"。

ty10086 提交于 周三, 08/25/2021 - 16:08
文章英文标题
Comment on "Bioinspired Reversible Switch between Underwater Superoleophobicity/Superaerophobicity and Oleophilicity/Aerophilicity and Improved Antireflective Property on the Nanosecond Laser-Ablated Superhydrophobic Titanium Surfaces".
正文
能够可逆润湿性转换和改善光学性能的激光织构表面在前沿应用中越来越重要,包括自清洁界面、可调谐光学透镜、微流体和实验室芯片系统。Li等在ACS Appl中演示了将钛Ti-6Al-4V合金纳秒激光毛化与低温退火相结合制备此类表面。物质。Inter . 2020,12 ( 5 ),6573 - 6580。但是,很难赞同( i )他们对低温退火引起的润湿性转变的矛盾解释和( ii )他们对激光织构钛表面光学行为的理论描述。这一评论提供了另一种观点- -在实验结果和理论研究的支持下,如何更准确地解释Liang等人的研究结果。退火实验表明,控制污染对于低温退火后获得一致的表面润湿性变化至关重要。激光织构钛在污染和无污染炉中100℃退火,导致润湿性转变完全不同。通过XPS和ToF-SIMS对表面化学分析发现,疏水聚二甲基硅氧烷( PDMS )的污染(通常被忽视)可能来自炉内的有机硅组分。在这种情况下,整个表面均一的PDMS薄膜具有拒水性(接触角为161°,滚动角为15° ),而在相同条件下,在无污染物炉中退火保持了初始的超亲水性,而350℃退火则使疏水性“脱落”。光学性质的理论计算表明,在激光毛化过程中形成的激光诱导氧化层对表面光学行为有显著影响。因此,不应忽略空气-氧化物和氧化物-金属界面反射的光的干扰,并使几种先进的方法能够利用这种光学特性。
文章内容(英文)
Laser-textured surfaces enabling reversible wettability switching and improved optical properties are gaining importance in cutting-edge applications, including self-cleaning interfaces, tunable optical lenses, microfluidics, and lab-on-chip systems. Fabrication of such surfaces by combining nanosecond-laser texturing and low-temperature annealing of titanium Ti-6Al-4V alloy was demonstrated by Lian et al. in ACS Appl. Mater. Inter. 2020, 12 (5), 6573-6580. However, it is difficult to agree with (i) their contradictory explanation of the wettability transition due to low-temperature annealing and (ii) their theoretical description of the optical behavior of the laser-textured titanium surface. This comment provides an alternative view-supported by both experimental results and theoretical investigation-on how the results by Lian et al. could be interpreted more correctly. The annealing experiments clarify that controlled contamination is crucial in obtaining consistent surface wettability alterations after low-temperature annealing. Annealing of laser-textured titanium at 100 °C in contaminated and contaminant-free furnaces leads to completely different wettability transitions. Analysis of the surface chemistry by XPS and ToF-SIMS reveals that (usually overlooked) contamination with hydrophobic polydimethylsiloxane (PDMS) may arise from the silicone components of the furnace. In this case, a homogeneous thin PDMS film over the entire surface results in water repellency (contact angle of 161° and roll-off angle of 15°). In contrast, annealing under the same conditions but in a contaminant-free furnace preserves the initial superhydrophilicity, whereas the annealing at 350 °C turns the hydrophobicity \"off\". The theoretical calculations of optical properties demonstrate that the laser-induced oxide layer formed during the laser texturing significantly influences the surface optical behavior. Consequently, the interference of light reflected by the air-oxide and the oxide-metal interfaces should not be neglected and enables several advanced approaches to exploit such optical properties.
来源出处
Journal|[J]ACS Applied Materials & InterfacesVolume 13, Issue 2. 2021. PP 2117-2127
DOI
https://doi.org/10.1021/ACSAMI.9B23462

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产品说明书PDF自助在线看:http://www.pdmshub.com/sih

信息更新:

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此链接为PDMS-微流控芯片/PDMS/道康宁SYLGARD184/小桶0.5KG装的链接。

一般性的产品性能参数表参考以下小桶装的参数:

微流控芯片/PDMS/道康宁SYLGARD184;微流控芯片/PDMS/道康宁SYLGARD184;微流控芯片/PDMS/道康宁SYLGARD184;

品牌型号:道康宁SYLGARD184

包装规格:0.5KG/罐[含有45.4g固化剂,总重量为0.5KG]

产品颜色:保质期限:36个月

存放环境说明:室温,阴凉处保存

备注说明:

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