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De-Yi Wang

Research Interests Prof. De-Yi Wang focuses on application-oriented fundamental problems and novel technologies in fire safety engineering, fire retardant materials and polymer-based composites, including molecular design, chemical synthesis, and advanced processing. His main

(ICARO) ADVANCE COMPOSITES INNOVATION AND REAR END OPTIMIZATION

Funding: CDTI (CENIT Programme 2008)Region: SpainProject period: 2019 – 2012Principal Investigator: Dr. Carlos Gonzalez (carlosdaniel.gonzalez@imdea.org)A collaborative Research project funded by the Centre for the Development of Industrial Technology (CDTI) within the fourth call of the Programme

(ELECTROSILK) ELECTROSPINNING OF SILK FIBROIN SOLUTIONS FOR TISSUE ENGINEERING

Partners: Collaboration between IMDEA Materials Institute and the Polytechnic University of Madrid (Biologic Materials y Biomaterials Group of the Materials Science Department)Funding Organisation: IMDEA Materials Institute and UPMIndustrial sector: MultisectorialRegion: SpainProject period: 2010  –

(MORPHING) MORPHING MATERIALS FOR AERONAUTIC APPLICATIONS

Partners: Aernnova Engineering Solutions Ibérica S.A.Funding Organisation: Madrid Regional Government (IMADE) and Aernnova Engineering Solutions Ibérica S.A.Industrial Sector: AerospaceRegion: Madrid (Spain) Project Period: 2009 – 2010Principal Investigator: Dr. Javier Segurado

Jennifer Patterson

Research Interests Dr. Patterson’s research activities and interests include (1) the synthesis of novel biomaterials, with a particular focus on hydrogels; (2) processing of biomaterials into complex 3D structures; (3) evaluation of physicochemical properties such as morphology and

Mónica Echeverry Rendón

Research Interests The Biometals, Coatings, and Devices Group – BCD Group is dedicated to the research, development, and evaluation of materials within the field of biomedical engineering, with a particular emphasis on metallic materials.With personalized medicine as a guiding

Pedro J. Díaz Payno

Research Interests Development of Extracellular matrix derived biomaterials and focusing on the tissue-specificity of the target tissue to repair.Advanced design of structural reinforcements for tissue engineering applications, based on the use of simulations and computational