Super-Resolution Methods for Wafer Transmission Electron Microscopy Images
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-97-4677-4_4
Reference13 articles.
1. Xu, J., et al.: Nanometer-scale heterogeneous interfacial sapphire wafer bonding for enabling plasmonic-enhanced nanofluidic mid-infrared spectroscopy. ACS Nano 14(9), 12159–12172 (2020)
2. Kim, H.U., et al.: Wafer‐scale and low‐temperature growth of 1T‐WS2 film for efficient and stable hydrogen evolution reaction. Small 16(6) (2020)
3. Hwang, S., Chen, X., Zhou, G., Su, D.: In situ transmission electron microscopy on energy‐related catalysis. Adv. Energy Mater. 10(11) (2020)
4. Deokar, G., Genovese, A., Costa, P.M.: Fast, wafer-scale growth of a nanometer-thick graphite film on Ni foil and its structural analysis. Nanotechnology 31(48) (2020)
5. Jin, G., et al.: Atomically thin three-dimensional membranes of van der Waals semiconductors by wafer-scale growth. Sci. Adv. 5(7) (2019)
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