作者
Marionna Coll, Josep Fontcuberta, Matthias Althammer, Manuel Bibes, Hans Boschker, Alberto Calleja, Guanglei Cheng, Mario Cuoco, Regina Dittmann, Brahim Dkhil, Ismail El Baggari, Marco Fanciulli, Ignasi Fina, Elvira Fortunato, Carlos Frontera, Shizuo Fujita, Vincent Garcia, Sebastian TB Goennenwein, Claes Göran Granqvist, Julie Grollier, Rudolf Gross, Anders Hagfeldt, Gervasi Herranz, Kazuhiro Hono, Evert Houwman, Mark Huijben, Aleksey Kalaboukhov, David J Keeble, Gertjan Koster, Lena Fitting Kourkoutis, Jeremy Levy, Mónica Lira-Cantú, Judith L MacManus-Driscoll, Jochen Mannhart, Rodrigo Martins, Stephan Menzel, Thomas Mikolajick, Mari Napari, MD Nguyen, Gunnar Niklasson, Charles Paillard, Shrabani Panigrahi, GJHM Rijnders, F Sánchez, P Sanchis, S Sanna, Darrell G Schlom, U Schroeder, KM Shen, A Siemon, M Spreitzer, H Sukegawa, R Tamayo, J Van den Brink, N Pryds, F Miletto Granozio
发表日期
2019
来源
Applied surface science
卷号
482
页码范围
1-93
简介
At the end of a rush lasting over half a century, in which CMOS technology has been experiencing a constant and breathtaking increase of device speed and density, Moore’s law is approaching the insurmountable barrier given by the ultimate atomic nature of matter. A major challenge for 21st century scientists is finding novel strategies, concepts and materials for replacing silicon-based CMOS semiconductor technologies and guaranteeing a continued and steady technological progress in next decades. Among the materials classes candidate to contribute to this momentous challenge, oxide films and heterostructures are a particularly appealing hunting ground. The vastity, intended in pure chemical terms, of this class of compounds, the complexity of their correlated behaviour, and the wealth of functional properties they display, has already made these systems the subject of choice, worldwide, of a strongly networked, dynamic and interdisciplinary research community.
引用总数
201920202021202220232024227374624618
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M Coll, J Fontcuberta, M Althammer, M Bibes… - Applied surface science, 2019