Results overview: Found 2 records in 0.03 seconds.
Articles, 2 records found
Articles 2 records found  
1.
16 p, 2.0 MB Coordination polymer to atomically thin, holey, metal-oxide nanosheets for tuning band alignment / Mofarah, Sajjad S. (University of New South Wales. School of Materials Science & Engineering) ; Adabifiroozjaei, Esmaeil (National Institute for Materials Science (Tsukuba, Japó). Research Center for Functional Materials) ; Pardehkhorram, Raheleh (University of New South Wales. School of Chemistry) ; Assadi, Hussein (University of New South Wales. School of Materials Science & Engineering) ; Hinterstein, Manuel (Karlsruhe Institute of Technology) ; Yao, Yin (University of New South Wales. Mark Wainwright Analytical Centre) ; Liu, Xinhong (University of New South Wales. School of Materials Science & Engineering) ; Ghasemian, Mohammad B. (University of New South Wales. School of Chemical Engineering) ; Kalantar-Zadeh, Kourosh (University of New South Wales. School of Chemical Engineering) ; Mehmood, Rashid (Macquarie University. Department of Physics and Astronomy) ; Cazorla, Claudio (University of New South Wales. School of Materials Science & Engineering) ; Shahmiri, Reza (University of New South Wales. School of Materials Science & Engineering) ; Bahmanrokh, Ghazaleh (University of New South Wales. School of Materials Science & Engineering) ; Bhattacharyya, Saroj (University of New South Wales. Mark Wainwright Analytical Centre) ; Spadaro, Maria Chiara (Institut Català de Nanociència i Nanotecnologia) ; Arbiol i Cobos, Jordi (Institut Català de Nanociència i Nanotecnologia) ; Lim, Sean (University of New South Wales. Mark Wainwright Analytical Centre) ; Xu, Yuwen (University of New South Wales. School of Materials Science & Engineering) ; Arandiyan, Hamidreza (University of Sydney. Laboratory of Advanced Catalysis for Sustainability) ; Scott, Jason (University of New South Wales. Particles and Catalysis Research Group) ; Koshy, Pramod (University of New South Wales. School of Materials Science & Engineering) ; Sorrell, Charles C. (University of New South Wales. School of Materials Science & Engineering)
Holey 2D metal oxides have shown great promise as functional materials for energy storage and catalysts. Despite impressive performance, their processing is challenged by the requirement of templates plus capping agents or high temperatures; these materials also exhibit excessive thicknesses and low yields. [...]
2019 - 10.1002/adma.201905288
Advanced materials, Vol. 31, issue 52 (Dec. 2019) , art. 1905288  
2.
29 p, 1.7 MB Coherent epitaxial semiconductor-ferromagnetic insulator InAs/EuS interfaces : band alignment and magnetic structure / Liu, Yu (Microsoft Quantum Materials Lab Copenhagen) ; Luchini, Alessandra (Niels Bohr Institute) ; Martí-Sánchez, Sara (Institut Català de Nanociència i Nanotecnologia) ; Koch, Christian (Institut Català de Nanociència i Nanotecnologia) ; Schuwalow, Sergej (Niels Bohr Institute) ; Khan, Sabbir A. (Niels Bohr Institute) ; Stankevič, Tomas (Microsoft Quantum Materials Lab Copenhagen) ; Francoual, Sonia (Deutsches Elektronen-Synchrotron Desy) ; Mardegan, Jose R. L. (Deutsches Elektronen-Synchrotron Desy) ; Krieger, Jonas A. (Paul Scherrer Institut (Suïssa)) ; Strocov, Vladimir N. (Paul Scherrer Institut (Suïssa)) ; Stahn, Jochen (Paul Scherrer Institut (Suïssa)) ; Vaz, Carlos A. F. (Paul Scherrer Institut (Suïssa)) ; Ramakrishnan, Mahesh (Paul Scherrer Institut (Suïssa)) ; Staub, Urs (Paul Scherrer Institut (Suïssa)) ; Lefmann, Kim (Niels Bohr Institute) ; Aeppli, Gabriel (Paul Scherrer Institut (Suïssa)) ; Arbiol i Cobos, Jordi (Institut Català de Nanociència i Nanotecnologia) ; Krogstrup, Peter (Niels Bohr Institute)
Hybrid semiconductor-ferromagnetic insulator heterostructures are interesting due to their tunable electronic transport, self-sustained stray field, and local proximitized magnetic exchange. In this work, we present lattice-matched hybrid epitaxy of semiconductor-ferromagnetic insulator InAs/EuS heterostructures and analyze the atomic-scale structure and their electronic and magnetic characteristics. [...]
2020 - 10.1021/acsami.9b15034
ACS applied materials & interfaces, Vol. 12, issue 7 (Feb. 2020) , p. 8780-8787  

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