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Published on: April 8, 2018
Wafer-Scale High-κ Dielectric for Flexible Electronics Integrated by van der Waals Force
Bing Wang1, Zhaochao Liu1, Yuyu He1
1Tianjin Key Lab for Rare Earth Materials and Applications, Center for Rare Earth and Inorganic Functional Materials, Smart Sensor Interdisciplinary Science Center, School of Materials Science and Engineering, Nankai University, Tianjin 300350, China.
Abstract:
Two-dimensional semiconductors, particularly atomically thin molybdenum disulfide (MoS2), show great promise for flexible electronics due to their exceptional mechanical, electronic, and optical properties. In recent years, MoS2 has attracted increasing attention, but the direct deposition of high-κ dielectrics on MoS2 is challenging due to the absence of dangling bonds. In this study, we propose a novel dielectric integration strategy that eliminates the need for stripping and solution assistance. In this approach, dielectrics are predeposited onto a flexible substrate and mechanically pressed onto the MoS2 surface to create a clean dielectric-semiconductor interface. Additionally, top electrodes and high-κ dielectrics can be predeposited together on the flexible substrate and then transferred to the MoS2 surface, ensuring high-quality dielectric-semiconductor and dielectric-electrode interfaces. This method enables the formation of perfect interfaces free from damage, folds, or contamination, as the thin film does not require peeling or solution assistance. A capacitance density of 0.55 μF/cm2 was achieved using a 10 nm Al2O3 dielectric in a metal-insulator-metal device. Our MoS2 top-gated transistors demonstrated a switching ratio greater than 106 and maintained electrical stability for over 100 cycles. Finally, we successfully fabricated scalable top-gated MoS2 arrays on a flexible mica substrate, confirming the potential of van der Waals integration in flexible electronics.
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