Guarnieri Vittorio, Biazi Leonardo, Marchiori Roberto, Lago Alexandre
FBK, Fondazione Bruno Kessler; Povo di Trento, Italy.
Optoi Microelectronics; Florianopolis, Brazil.
Biomatter. 2014;4. doi: 10.4161/biom.28822.
The adherence of Platinum thin film on Si/SiO 2 wafer was studies using Chromium, Titanium or Alumina (Cr, Ti, Al 2O 3) as interlayer. The adhesion of Pt is a fundamental property in different areas, for example in MEMS devices, which operate at high temperature conditions, as well as in biomedical applications, where the problem of adhesion of a Pt film to the substrate is known as a major challenge in several industrial applications health and in biomedical devices, such as for example in the stents. (1)(-) (4) We investigated the properties of Chromium, Titanium, and Alumina (Cr, Ti, and Al 2O 3) used as adhesion layers of Platinum (Pt) electrode. Thin films of Chromium, Titanium and Alumina were deposited on Silicon/Silicon dioxide (Si/SiO 2) wafer by electron beam. We introduced Al 2O 3 as a new adhesion layer to test the behavior of the Pt film at higher temperature using a ceramic adhesion thin film. Electric behaviors were measured for different annealing temperatures to know the performance for Cr/Pt, Ti/Pt, and Al 2O 3/Pt metallic film in the gas sensor application. All these metal layers showed a good adhesion onto Si/SiO 2 and also good Au wire bondability at room temperature, but for higher temperature than 400 °C the thin Cr/Pt and Ti/Pt films showed poor adhesion due to the atomic inter-diffusion between Platinum and the metal adhesion layers. (5) The proposed Al 2O 3/Pt ceramic-metal layers confirmed a better adherence for the higher temperatures tested.
使用铬、钛或氧化铝(Cr、Ti、Al₂O₃)作为中间层,研究了铂薄膜在硅/二氧化硅(Si/SiO₂)晶圆上的附着力。铂的附着力是不同领域的一项基本特性,例如在高温条件下运行的微机电系统(MEMS)器件中,以及在生物医学应用中,在生物医学应用中,铂膜与基材的附着力问题在多个工业健康应用和生物医学设备中,如支架,是一个重大挑战。(1)(-)(4)我们研究了用作铂(Pt)电极粘附层的铬、钛和氧化铝(Cr、Ti和Al₂O₃)的性能。通过电子束将铬、钛和氧化铝薄膜沉积在硅/二氧化硅(Si/SiO₂)晶圆上。我们引入Al₂O₃作为一种新的粘附层,使用陶瓷粘附薄膜来测试铂膜在更高温度下的行为。测量了不同退火温度下的电学行为,以了解Cr/Pt、Ti/Pt和Al₂O₃/Pt金属膜在气体传感器应用中的性能。所有这些金属层在室温下都能很好地粘附在Si/SiO₂上,并且具有良好的金线键合性,但对于高于400℃的温度,由于铂与金属粘附层之间的原子相互扩散,Cr/Pt和Ti/Pt薄膜的附着力较差。(5)所提出的Al₂O₃/Pt陶瓷 - 金属层在测试的较高温度下表现出更好的附着力。