Bruno Emanuel Ferreira De Sousa CorreiaThroughout my PhD and postdoctoral studies I was trained in world-renowned laboratories and institutions in the United States of America (University of Washington and The Scripps Research Institute). Very early in my scientific career I found out my fascination about protein structure and function. My PhD studies evolved in the direction of immunogen design and vaccine engineering which sparked my interest in the many needs and opportunities in vaccinology and translational research. My efforts resulted in an enlightening piece of work where for the first time, computationally designed immunogens elicited potent neutralizing antibodies. During my postdoctoral studies I joined a chemical biology laboratory at the Scripps Research Institute. In this stage I developed novel chemoproteomics methods for the identification of protein-small molecule interaction sites in complex proteomes. In March 2015, I joined the École Polytechnique Fédérale de Lausanne (EPFL) – Switzerland as a tenure track assistant professor. The focus of my research group is to develop computational tools for protein design with particular emphasis in applying these strategies to immunoengineering (e.g. vaccine and cancer immunotherapy). The activities in my laboratory focus on computational design methods development and experimental characterization of the designed proteins. Our laboratory has been awarded with 2 prestigious research grants from the European Research Council. Lastly, I have been awarded the prize for best teacher of Life sciences in 2019.
Magalí Alejandra LingenfelderMagalí Lingenfelder is currently leading the Max Planck-EPFL Laboratory for Molecular Nanoscience. Her vision is to create atomically tailored interfaces for applications in two distinct areas of urgent technological and societal relevance: energy conversion and smart antimicrobial interfaces. To access the nanoscale, her group uses a combination of state-of-the-art scanning probe microscopy and solid state spectroscopy, allowing the study of kinetic processes in-situ under liquid flow and potential control conditions (operando electrocatalysis). She made seminal contributions to the field of metal-organic coordination networks on solid surfaces, and received the Otto Hahn medal in 2008 for the microscopic understanding of the chiral recognition process with submolecular resolution. She is a committed mentor, and since her relocation from the Lawrence Berkeley National Laboratory, USA to EPFL in 2013, she directed 3 MSc. theses, 4 PhD theses and 4 postdocs. She advocates for problem-oriented interdisciplinary research: she led 5 international research consortiums, delivered over 40 invited presentations and organized 9 conferences and 4 doctoral schools. In 2018, the Royal Society of Chemistry included her work in the first collection “Celebrating Excellence in Research: 100 Women of Chemistry”.
Stefano RusponiEducation:
• 1999 Doctoral degree in Physics obtained at the Physics Department, University of Genova PhD thesis title: “STM study of nanostructures induced by ion sputtering on noble metals”.
• 1994 University degree in Physics achieved at the Physics Department, University of Genova. Final mark: 110/110 cum laude
Diploma thesis title: “A project for a new method of EELS spectroscopy”.
• 1988 High school at the Liceo Scientifico G. P. Vieusseux in Imperia. Final mark: 60/60.
Research career plan:
• 2016 – present MER: Ecole Polytechnique Fédérale de Lausanne (EPFL) in the group of Prof. Harald Brune
• 2003 – 2016: 1er. Assistant: Ecole Polytechnique Fédérale de Lausanne (EPFL) in the group of Prof. Harald Brune
• 2000-2003: Assistant: Ecole Polytechnique Fédérale de Lausanne (EPFL) under the direction of Prof. Harald Brune
• 1999-2000: Research associate: Max-Planck-Institut of Stuttgart under the direction of Prof. Klaus Kern
Miscellaneous of professional activities:
a) Review panel
• Member of the Elettra proposal review panel
• Member of the committee of the EDPY doctoral school in Physics at the EPFL
b) Co-worker in the building of the X-Treme beamline:
c) Referee for scientific journals:
• Nat. Commun., Phys. Rev. Lett., Phys. Rev. B, J. Appl. Phys., Surf. Sci., J. Magn. Magn. Mater.
Funding record
a) Funding awarded
• Quantum Properties of Nanostructures at Surfaces, FNS 200020-157081/1;
(01/10/2014 – 31/09/2017); total amount attributed: 832'558 CHF; co-applicant
• Controlling magnetic anisotropy by interfacial coupling, FNS 200021_146715/1;
(01/01/2014 – 31/12/2016); total amount attributed: 367'800 CHF; co-applicant
• Self-assembled bi-metallic magnetic pillar superlattices with enhanced blocking temperature, SER C10.0135; (01/08/2011 – 01/08/2013); total amount attributed: 170'000 CHF; co-applicant
• Magnetic and Catalytic Properties of Surface Supported Metallic Nanostructures, FNS 200020-120493/1; (01/04/2008 – 31/03/2010); total amount attributed: 402'669 CHF; co-applicant
• Magnetic and Catalytic Properties of Surface Supported Metallic Nanostructures, FNS 200020-112322/1; (01/04/2006 – 31/03/2008); total amount attributed: 347'633 CHF; co-applicant
b) Approved proposals for the allocation of beamtime
Swiss Light Source (SLS):
main proposer: 9
co-proposer: 4
Elettra:
main proposer: 5
co-proposer: 1
European Synchrotron Radiation Facility (ESRF):
main proposer: 2
co-proposer: 11
Student supervisor
• Co-director of PhD thesis: 4 PhD students
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Dimitris Mousadakos: Seeking the smallest room temperature magnets; (in progress)
-
Romana Baltic: Controlling single atom magnetic anisotropy by interfacial coupling; (in progress)
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Alberto Cavallin: Growth and magnetism of nanostructures investigated by STM, MOKE, and XMCD; (Oct. 2013), Thèse N°5941
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Sergio Vlaic: Magnetism and atomic scale structure of bimetallic nanostructures at surfaces; (Dec. 2012), Thèse N° 5625
• Supervisor of PhD thesis (without co-direction): 4 PhD students
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Anne Lehnert: Magnetism of individual adatoms and of epitaxial monolayers; (Jun. 2009), Thèse N° 4411
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Geraud Moulas: Growth and magnetism of 2D bimetallic nanostructures; (Dec. 2008), Thèse N° 4231
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Philipp Buluschek: Submonolayer growth of cobalt on metallic and insulating surfaces studied by scanning tunneling microscopy and kinetic Monte-Carlo simulations; (Nov. 2007), Thèse N° 3944
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Nicolas Weiss: Propriétés magnétiques de nanostructures de Co adsorbées; (Apr. 2004), Thèse N° 2980
• Supervisor of Master thesis: 6 students
• Supervisor of semester projects: 9 students
• PhD thesis referee: 2 students Wolf-Dieter Schneider
- Dipl.Phys., University of Bonn, 1971 - PhD (Dr. rer. nat.), University of Bonn, 1975 - Ass. Prof., University of Campinas 1976 - Ass. Prof., Free University of Berlin, 1977 - Privat-docent, Free University of Berlin 1982 - Privat-docent, University of Neuchâtel 1985 - Full Prof., Université de Lausanne, 1989 - Full Prof., EPFL, 2003 He worked at the Universities of Bonn (Germany), Uppsala (Sweden), Campinas(Brasil), Free University of Berlin (Germany), Wisconsin, Madison (USA), Neuchatel (Switzerland), Manoa, Honululu, Hawaii (USA) and Lausanne (Switzerland). Since 2003 he is full professor at the EPFL (Switzerland) in Lausanne. Research group established at the University of Lausanne in 1989 Research activity: Nanoscience Scanning tunneling microscopy and spectroscopy supported nanostructuresORCID iD 0000-0001-9854-7431
Author Identifier: N-7949-2014
André MerbachOriginaire de Pully (Vaud), André E. Merbach est né en 1940. Il étudie à l'Ecole Polytechnique de l'Université de Lausanne (Prix Pelet et de l'A3E2PL) et obtient son diplôme d'ingénieur chimiste en 1962 avec un travail de recherche en chimie organique. En 1964, l'Université de Lausanne lui confère le doctorat ès sciences avec félicitations du jury pour ses travaux sur les systèmes quaternaires de solubilité avec formation de cristaux mixtes. Il effectue ensuite un stage postdoctoral au Lawrence Radiation Laboratory de l'Université de Californie à Berkeley, où il étudie la ionisation d'électrolytes forts par RMN.
En 1965, de retour à l'Institut de chimie minérale et analytique de l'UNIL, on lui demande de développer une recherche et de créer un enseignement en chimie de coordination. En 1971 il y est nommé professeur assistant.
En 1973, la Société Suisse de Chimie lui attribue le Prix et la Médaille Werner pour ses travaux sur la structure, la stabilité et la dynamique d'adduits d'halogénures métalliques par RMN. Cette même année, l'UNIL le nomme professeur de chimie minérale et analytique.
Il a été membre de la division mathématiques, des sciences naturelles et de l'ingénieur du Fonds national de la recherche scientifique (1985-1996). Il représente la Suisse au Comité Technique COST Chimie (Coopération Européenne dans le domaine scientifique et technique: 35 pays, 1000 groupes de recherche en chimie) et a présidé ce Comité de 1998 à 2000. Il a présidé le Comité de gestion européen pour l'Action COST D6 pour les "procédés et réactions chimiques dans des conditions extrêmes ou non classiques" (1992-1997).
Il a organisé à Lausanne, en 1992, la XXIXe Conférence Internationale de Chimie de Coordination (ICCC). L'Université Lajos Kossuth, de Debrecen (Hongrie), lui a conféré, en 1993, le doctorat honoris causa pour ses études par RMN sous haute pression des mécanismes réactionnels en chimie de coordination. Il a été appelé à la présidence de la Société Suisse de Chimie (2001-2004). L'Université de Genève lui a délivré un doctorat honoris causa en 2003.