Evaluation of the Adhesion Strength of Ultrathin Gold Coatings on Substrates of Soda-Lime Glass and Cyclo-Olefin-Polymer by Cross-Cut and Scratch Tests under the Influence of a Thermal Shock Test for Use in Biosensors.

IF 4.3 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY ACS Omega Pub Date : 2025-01-09 eCollection Date: 2025-01-21 DOI:10.1021/acsomega.4c08288
Rebecca Vornweg, Mona Roser, Alexander Fromm, Frank Burmeister, Thomas Günther, André Zimmermann
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Abstract

The current demand for highly sensitive, optical sensors in biodiagnostics has prompted the development of ultrathin metal coatings on a range of substrates. Given the potential attenuation of the signal from a plasmonic sensor for the detection of fluorescent molecules when an adhesion layer between the substrate and coating is employed, this study examines the impact of various factors on the adhesion strength between gold coatings and substrates comprising glass and cyclo-olefin-polymer (COP). The objective is to identify potential configurations for high adhesion strength, thereby eliminating the need for an adhesion layer in the fabrication of optical sensors with gold coatings for diagnostic applications or to utilize a minimal adhesion layer thickness. The influence of pretreatments prior to coating deposition with oxygen plasma, ultrathin adhesion layers of titanium as well as the impact of thermal shock tests with various cycles on the coating's integrity are investigated. Two methods of adhesion strength testing were applied to ultrathin coatings on glass and polymer substrates. Cross-cut and nano scratch tests were used to assess the adhesion of the ultrathin metal layers, which provided qualitative and quantitative results. The results of the two test methods on glass substrates are in good accordance, demonstrating the highest adhesion strength for gold coatings on glass with an adhesion layer, in combination with or without plasma treatment. The cross-cut testing on COP demonstrates a constant high adhesion strength when using an adhesion layer alone or without any pretreatment, while a low adhesion strength is observed in combination with plasma treatment. Following the thermal shock test, alterations in adhesion strength were observed for the remaining configurations. The rise in the coefficient of thermal expansion of COP between +30 and 85 °C in comparison to lower temperatures, as evidenced by thermomechanical analysis, may account for the disparate adhesion strengths of COP following thermal shock tests.

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在用于生物传感器的热冲击试验影响下,通过交叉切割和划痕试验评估超薄金涂层在钠钙玻璃和环烯烃聚合物基底上的附着强度。
目前,生物诊断领域对高灵敏度光学传感器的需求推动了各种基材上超薄金属涂层的发展。考虑到在基材和涂层之间使用粘附层时,用于检测荧光分子的等离子体传感器信号的潜在衰减,本研究考察了各种因素对金涂层与含玻璃和环烯烃聚合物(COP)的基材之间粘附强度的影响。目的是确定高粘附强度的潜在配置,从而消除在诊断应用的带有金涂层的光学传感器制造中对粘附层的需求,或者利用最小的粘附层厚度。研究了氧等离子体沉积涂层前预处理、钛超薄附着层以及不同循环热冲击试验对涂层完整性的影响。采用两种方法对玻璃和聚合物基材上的超薄涂层进行了附着力测试。通过横切和纳米划痕测试来评估超薄金属层的附着力,提供了定性和定量结果。两种测试方法在玻璃基板上的结果是一致的,表明在有附着层的玻璃上的金涂层,在结合或不进行等离子处理时,附着力最高。对COP的横切测试表明,单独使用附着层或不使用任何预处理时,COP的附着强度恒定较高,而与等离子体处理联合使用时,COP的附着强度较低。在热冲击试验之后,观察了剩余结构的粘附强度变化。热力分析证明,与较低温度相比,COP的热膨胀系数在+30至85°C之间上升,这可能是COP在热冲击试验后粘附强度不同的原因。
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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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Issue Editorial Masthead Issue Publication Information Characterization and Prediction of Coal Particle Size Distribution before and after Cleaning: An Integrated Experimental and Machine Learning Approach Influence of Pressure and Coal-Forming Environment on the Pyrolysis of Tar-Rich Block Coal from the Santanghu Basin in Xinjiang Melanin Building Block as Scaffold for Dynamic Submicromolar Galectin Inhibitors
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