Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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Materials Map under construction

The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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1.080 Topics available

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693.932 PEOPLE
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Stampfer, Christoph

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Forschungszentrum Jülich

in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (19/19 displayed)

  • 2024Benchmarking the integration of hexagonal boron nitride crystals and thin films into graphene-based van der Waals heterostructures1citations
  • 2023Twist angle dependent interlayer transfer of valley polarization from excitons to free charge carriers in WSe2/MoSe2 heterobilayers18citations
  • 2021Metavalent Bonding in Crystalline Solids: How Does It Collapse?110citations
  • 2021Metavalent Bonding in Crystalline Solids: How Does It Collapse?110citations
  • 2021How to solve problems in micro- and nanofabrication caused by the emission of electrons and charged metal atoms during e-beam evaporation15citations
  • 2020Production and processing of graphene and related materialscitations
  • 2020Production and processing of graphene and related materials421citations
  • 2020Production and processing of graphene and related materials421citations
  • 2020Production and processing of graphene and related materials421citations
  • 2020Production and processing of graphene and related materials421citations
  • 2020Production and processing of graphene and related materials421citations
  • 2020Production and processing of graphene and related materials421citations
  • 2020Production and processing of graphene and related materials421citations
  • 2020Production and processing of graphene and related materialscitations
  • 2019Spin States Protected from Intrinsic Electron–Phonon Coupling Reaching 100 ns Lifetime at Room Temperature in MoSe233citations
  • 2015Graphene spintronics:The European Flagship perspective234citations
  • 2015Graphene spintronics: the European Flagship perspectivecitations
  • 2015Graphene spintronics: the European Flagship perspective234citations
  • 2015Graphene spintronics234citations

Places of action

Chart of shared publication
Beschoten, Bernd
8 / 9 shared
Cojocariu, Iulia
1 / 12 shared
Waldecker, Lutz
1 / 4 shared
Schneider, Claus M.
1 / 20 shared
Feyer, Vitaliy
1 / 20 shared
Volmer, Frank
3 / 3 shared
Rathmann, Lars
1 / 1 shared
Dubey, Sudipta
1 / 1 shared
Plucinski, Lukasz
1 / 5 shared
Parashar, Bharti
1 / 1 shared
Junior, Paulo E. Faria
1 / 1 shared
Ersfeld, Manfred
2 / 2 shared
Fabian, Jaroslav
5 / 37 shared
Zhu, Min
2 / 4 shared
Cojocaru-Mirédin, Oana
1 / 5 shared
Raty, Jean-Yves
1 / 31 shared
Jakobs, Stefan
2 / 3 shared
Drögeler, Marc
2 / 2 shared
Teichrib, Christian
2 / 2 shared
Xu, Ming
2 / 5 shared
Maier, Stefan
2 / 6 shared
Zhou, Yiming
2 / 3 shared
Wahl, Sophia
2 / 5 shared
Guarneri, Ludovica
2 / 3 shared
Schön, Carl-Friedrich
1 / 4 shared
Pradel, Annie
2 / 33 shared
Wuttig, Matthias
2 / 39 shared
Lobo, Ricardo P. S. M.
1 / 2 shared
Piarristeguy, Andrea
2 / 30 shared
Raghuwanshi, Mohit
2 / 5 shared
Von Hoegen, Alexander
1 / 1 shared
Lobo, Ricardo, P. S. M.
1 / 1 shared
Von Hoegen, A.
1 / 1 shared
Schön, Carlfriedrich
1 / 2 shared
Raty, Jeanyves
1 / 3 shared
Cojocarumirédin, Oana
1 / 3 shared
Seidler, Inga
1 / 1 shared
Tu, Jhih-Sian
1 / 1 shared
Bisswanger, Timo
1 / 2 shared
Schreiber, Lars
1 / 1 shared
Zanolli, Zeila
1 / 17 shared
De Melo, Pedro Miguel M. C.
1 / 1 shared
Verstraete, Matthieu
1 / 13 shared
Heithoff, Maximilian
1 / 1 shared
De Winter, Robin
1 / 1 shared
Valenzuela, Sergio O.
4 / 19 shared
Guimaraes, M. H. D.
1 / 1 shared
Chshiev, Mairbek
4 / 19 shared
Seneor, Pierre
4 / 23 shared
Fert, Albert
4 / 22 shared
Guinea, Francisco
4 / 13 shared
Dlubak, Bruno
4 / 18 shared
Grigorieva, Irina
3 / 11 shared
Schoenenberger, Christian
2 / 2 shared
Dash, Saroj Prasad
4 / 6 shared
Waintal, Xavier
4 / 9 shared
Van Wees, Bart
1 / 3 shared
Akerman, Johan
3 / 5 shared
Charlier, Jean-Christophe
4 / 21 shared
Roche, Stephan
4 / 33 shared
Diniz Guimaraes, Mh
1 / 1 shared
Schönenberger, C.
1 / 3 shared
Wees, Bj Van
1 / 2 shared
Wees, Bart, Van
1 / 1 shared
Schönenberger, Christian
1 / 2 shared
Guimarães, Marcos
1 / 1 shared
Grigorieva, Irina V.
1 / 3 shared
Åkerman, Johan
1 / 7 shared
Wees, Bart Van
1 / 2 shared
Guimarães, Marcos H. D.
1 / 11 shared
Chart of publication period
2024
2023
2021
2020
2019
2015

Co-Authors (by relevance)

  • Beschoten, Bernd
  • Cojocariu, Iulia
  • Waldecker, Lutz
  • Schneider, Claus M.
  • Feyer, Vitaliy
  • Volmer, Frank
  • Rathmann, Lars
  • Dubey, Sudipta
  • Plucinski, Lukasz
  • Parashar, Bharti
  • Junior, Paulo E. Faria
  • Ersfeld, Manfred
  • Fabian, Jaroslav
  • Zhu, Min
  • Cojocaru-Mirédin, Oana
  • Raty, Jean-Yves
  • Jakobs, Stefan
  • Drögeler, Marc
  • Teichrib, Christian
  • Xu, Ming
  • Maier, Stefan
  • Zhou, Yiming
  • Wahl, Sophia
  • Guarneri, Ludovica
  • Schön, Carl-Friedrich
  • Pradel, Annie
  • Wuttig, Matthias
  • Lobo, Ricardo P. S. M.
  • Piarristeguy, Andrea
  • Raghuwanshi, Mohit
  • Von Hoegen, Alexander
  • Lobo, Ricardo, P. S. M.
  • Von Hoegen, A.
  • Schön, Carlfriedrich
  • Raty, Jeanyves
  • Cojocarumirédin, Oana
  • Seidler, Inga
  • Tu, Jhih-Sian
  • Bisswanger, Timo
  • Schreiber, Lars
  • Zanolli, Zeila
  • De Melo, Pedro Miguel M. C.
  • Verstraete, Matthieu
  • Heithoff, Maximilian
  • De Winter, Robin
  • Valenzuela, Sergio O.
  • Guimaraes, M. H. D.
  • Chshiev, Mairbek
  • Seneor, Pierre
  • Fert, Albert
  • Guinea, Francisco
  • Dlubak, Bruno
  • Grigorieva, Irina
  • Schoenenberger, Christian
  • Dash, Saroj Prasad
  • Waintal, Xavier
  • Van Wees, Bart
  • Akerman, Johan
  • Charlier, Jean-Christophe
  • Roche, Stephan
  • Diniz Guimaraes, Mh
  • Schönenberger, C.
  • Wees, Bj Van
  • Wees, Bart, Van
  • Schönenberger, Christian
  • Guimarães, Marcos
  • Grigorieva, Irina V.
  • Åkerman, Johan
  • Wees, Bart Van
  • Guimarães, Marcos H. D.
OrganizationsLocationPeople

article

How to solve problems in micro- and nanofabrication caused by the emission of electrons and charged metal atoms during e-beam evaporation

  • Stampfer, Christoph
  • Seidler, Inga
  • Tu, Jhih-Sian
  • Bisswanger, Timo
  • Beschoten, Bernd
  • Volmer, Frank
  • Schreiber, Lars
Abstract

<jats:title>Abstract</jats:title><jats:p>We discuss how the emission of electrons and ions during electron-beam-induced physical vapor deposition can cause problems in micro- and nanofabrication processes. After giving a short overview of different types of radiation emitted from an electron-beam (e-beam) evaporator and how the amount of radiation depends on different deposition parameters and conditions, we highlight two phenomena in more detail: First, we discuss an unintentional shadow evaporation beneath the undercut of a resist layer caused by the one part of the metal vapor which got ionized by electron-impact ionization. These ions first lead to an unintentional build-up of charges on the sample, which in turn results in an electrostatic deflection of subsequently incoming ionized metal atoms toward the undercut of the resist. Second, we show how low-energy secondary electrons during the metallization process can cause cross-linking, blisters, and bubbles in the respective resist layer used for defining micro- and nanostructures in an e-beam lithography process. After the metal deposition, the cross-linked resist may lead to significant problems in the lift-off process and causes leftover residues on the device. We provide a troubleshooting guide on how to minimize these effects, which e.g. includes the correct alignment of the e-beam, the avoidance of contaminations in the crucible and, most importantly, the installation of deflector electrodes within the evaporation chamber.</jats:p>

Topics
  • physical vapor deposition
  • evaporation
  • lithography