论文标题

脉冲激光沉积的纳米氨酸TI3ALC2薄膜的生长,性能和应用

Growth, Properties, and Applications of Pulsed Laser Deposited Nanolaminate Ti3AlC2 Thin Films

论文作者

Biswas, Abhijit, Sengupta, Arundhati, Rajput, Umashankar, Singh, Sachin Kumar, Antad, Vivek, Hossain, Sk Mujaffar, Parmar, Swati, Rout, Dibyata, Deshpande, Aparna, Nair, Sunil, Ogale, Satishchandra

论文摘要

最近,由于陶瓷和金属特性的存在,纳米胶质的三元碳化物引起了极大的兴趣。在这里,我们通过脉冲激光沉积在面向C轴的蓝宝石底物上通过脉冲激光沉积生长纳米胶质Ti3Alc2薄膜,而且令人惊讶的是,发现膜沿着(103)轴沿膜平面正常,而不是(000L)的方向高度定向。采用多种表征技术来探索这些膜的结构和化学质量,电气和光学性能以及设备功能。 80 nm厚的Ti3Alc2膜在室温下高度导电(电阻率为50微欧-CM),并且电阻率非常低温系数。 Ultrathin(2 nm)Ti3Alc2膜在室温下具有相当良好的光学透明度和高电导率(735欧姆的薄板电阻)。扫描隧道显微镜揭示了在室温下的金属特性(在费米水平上的有限状态)。 P型Ti3Alc2膜和N-SI的金属 - 触发器连接显示了预期的整流(二极管)特征,与ohmic接触行为相反,在P-SI上的Ti3alc2中。 A triboelectric-nanogenerator-based touch-sensing device, comprising of the Ti3AlC2 film, shows a very impressive peak-to-peak open-circuit output voltage of 80 V. These observations reveal that pulsed laser deposited Ti3AlC2 thin films have excellent potential for applications in multiple domains, such as bottom electrodes, resistors for high-precision measurements, Schottky diodes, ohmic contacts,相当透明的超薄导体和用于能量收集的下一代生物力学接触传感器。

Recently, nanolaminated ternary carbides have attracted immense interest due to the concomitant presence of both ceramic and metallic properties. Here, we grow nanolaminate Ti3AlC2 thin films by pulsed laser deposition on c-axis-oriented sapphire substrates and, surprisingly, the films are found to be highly oriented along the (103) axis normal to the film plane, rather than the (000l) orientation. Multiple characterization techniques are employed to explore the structural and chemical quality of these films, the electrical and optical properties, and the device functionalities. The 80-nm thick Ti3AlC2 film is highly conducting at room temperature (resistivity of 50 micro ohm-cm), and a very-low-temperature coefficient of resistivity. The ultrathin (2 nm) Ti3AlC2 film has fairly good optical transparency and high conductivity at room temperature (sheet resistance of 735 ohm). Scanning tunneling microscopy reveals the metallic characteristics (with finite density of states at the Fermi level) at room temperature. The metal-semiconductor junction of the p-type Ti3AlC2 film and n-Si show the expected rectification (diode) characteristics, in contrast to the ohmic contact behavior in the case of Ti3AlC2 on p-Si. A triboelectric-nanogenerator-based touch-sensing device, comprising of the Ti3AlC2 film, shows a very impressive peak-to-peak open-circuit output voltage of 80 V. These observations reveal that pulsed laser deposited Ti3AlC2 thin films have excellent potential for applications in multiple domains, such as bottom electrodes, resistors for high-precision measurements, Schottky diodes, ohmic contacts, fairly transparent ultrathin conductors, and next-generation biomechanical touch sensors for energy harvesting.

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