Ritter, Martin 1970-
Martin Ritter researcher in electron microscopy
VIAF ID: 33166264 (Personal)
Permalink: http://viaf.org/viaf/33166264
Preferred Forms
4xx's: Alternate Name Forms (1)
5xx's: Related Names (5)
- 551 _ _
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Grabs, Schweiz
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ortg
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http://d-nb.info/standards/elementset/gnd#placeOfBirth
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Technische Universität Hamburg-Harburg
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affi
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http://d-nb.info/standards/elementset/gnd#affiliation
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Affiliation
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Technische Universität Hamburg-Harburg
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Betriebseinheit Elektronenmikroskopie BEEM
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affi
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http://d-nb.info/standards/elementset/gnd#affiliation
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Affiliation
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Technische Universität Hamburg
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affi
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http://d-nb.info/standards/elementset/gnd#affiliation
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Affiliation
- 510 2 _
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Technische Universität Hamburg
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Betriebseinheit Elektronenmikroskopie BEEM
‡4
affi
‡4
http://d-nb.info/standards/elementset/gnd#affiliation
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Affiliation
Works
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Alumina-doped zirconia submicro-particles : synthesis, thermal stability, and microstructural characterization |
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Controlling thermal emission with refractory epsilon-near-zero metamaterials via topological transitions |
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Dataset of ptychographic X-ray computed tomography of inverse opal photonic crystals produced by atomic layer deposition |
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Enhanced DySEM imaging of cantilever motion using artificial structures patterned by focused ion beam techniques |
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Exceptionally strong, stiff and hard hybrid material based on an elastomer and isotropically shaped ceramic nanoparticles. |
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Highly porous α-Al 2 O 3 ceramics obtained by sintering atomic layer deposited inverse opals |
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landmark based method for the geometrical 3D calibration of scanning microscopes |
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Low-Temperature Mullite Formation in Ternary Oxide Coatings Deposited by ALD for High-Temperature Applications |
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Metamaterial emitter for thermophotovoltaics stable up to 1400 °C |
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Photonic materials for high-temperature applications: synthesis and characterization by X-ray ptychographic tomography |
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Porous gold with a nested-network architecture and ultrafine structure |
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Semiordered Hierarchical Metallic Network for Fast and Large Charge-Induced Strain. |
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SiO2 core-shell submicron particles |
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Thermal stability of tungsten based metamaterial emitter under medium vacuum and inert gas conditions |
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