Bakhchova Liubov, Deckert Liudmila, Steinmann Ulrike
Institute for Automation Technology, Faculty of Electro Engineering and Information Technology, Otto-von-Guericke University Magdeburg, 39106 Magdeburg, Germany.
Membranes (Basel). 2023 May 11;13(5):508. doi: 10.3390/membranes13050508.
Natural wrinkling of metal films on silicone substrates can appear by means of the metal sputtering process and can be described by the continuous elastic theory and non-linear wrinkling model. Here, we report the fabrication technology and behavior of thin freestanding Polydimethylsiloxane (PDMS) membranes equipped with thermo-electric meander-shaped elements. The Cr/Au wires were obtained on the silicone substrate by magnetron sputtering. We observe wrinkle formation and suppose furrows appear once PDMS returns to its initial state after the thermo-mechanical expansion during sputtering. Although the substrate thickness is usually a negligible parameter in the theory of wrinkle formation, we found that the self-assembled wrinkling architecture of the PDMS/Cr/Au varies due to the membrane thickness of 20 µm and 40 µm PDMS. We also demonstrate that the wrinkling of the meander wire affects its length, and it causes a 2.7 times higher resistance compared to a calculated value. Therefore, we investigate the influence of the PDMS mixing ratio on the thermo-electric meander-shaped elements. For the stiffer PDMS with a mixing ratio of 10:4, the resistance due to wrinkle amplitude alterations is 25% higher compared to the PDMS of ratio 10:1. Additionally, we observe and describe a thermo-mechanically induced motion behavior of the meander wires on completely freestanding PDMS membrane under applied current. These results can improve the understanding of wrinkle formation, which influences thermo-electric characteristics and may promote the integration of this technology in applications.
通过金属溅射工艺,硅基衬底上的金属薄膜会出现自然褶皱,这种褶皱可用连续弹性理论和非线性褶皱模型来描述。在此,我们报告了配备热电曲折形元件的独立式聚二甲基硅氧烷(PDMS)薄膜的制造技术及行为。通过磁控溅射在硅基衬底上制备了Cr/Au导线。我们观察到褶皱的形成,并推测在溅射过程中的热机械膨胀后,当PDMS恢复到其初始状态时会出现沟槽。尽管在褶皱形成理论中,衬底厚度通常是一个可忽略的参数,但我们发现,由于20 µm和40 µm PDMS薄膜厚度的不同,PDMS/Cr/Au的自组装褶皱结构会有所变化。我们还证明,曲折导线的褶皱会影响其长度,并且与计算值相比,其电阻高出2.7倍。因此,我们研究了PDMS混合比例对热电曲折形元件的影响。对于混合比例为10:4的较硬PDMS,与比例为10:1的PDMS相比,由于褶皱幅度变化导致的电阻高出25%。此外,我们观察并描述了在施加电流的情况下,完全独立的PDMS薄膜上曲折导线的热机械诱导运动行为。这些结果有助于增进对褶皱形成的理解,而褶皱形成会影响热电特性,并可能推动该技术在应用中的整合。