BECAS BGI2026 - Departamento de Química (Programa de Química Estructural) – Laboratorio Ångström, SUECIA (Uppsala)

  • Código Oferta:14812
  • Proyecto: UPPSALA UNIVERSITY / BECAS BGI2026 - Departamento de Química (Programa de Química Estructural) – Laboratorio Ångström, SUECIA (Uppsala) / SUECIA / Uppsala
  • País: SUECIA
  • Municipio: Uppsala
  • Entidad: UPPSALA UNIVERSITY
  • Tipo de contrato: Beca
  • Duración: seis meses
  • Salario mensual: 1.785 euros brutos
  • Observaciones: Department of Chemistry (Structural Chemistry Program) – Ångström Laboratory The proposed project focuses on the design and development of novel hybrid electrolytes for next-generation solid-state batteries, with particular emphasis on halide-based materials incorporating organic motifs within their framework. These energy storage systems are of great interest due to their potential to combine improved safety and higher performance in comparison with conventional lithium-ion batteries that contain flammable liquid electrolytes. These hybrid electrolytes are expected to combine high ionic conductivity with improved electrochemical stability. In addition, the project aims to evaluate their compatibility with electrode materials, with the goal of enhancing interfacial stability and overall battery performance compared to reference inorganic solid electrolytes. The main objective of the project is to establish a fundamental understanding of the relationship between composition, structure and ion transport properties in hybrid halide electrolytes, and to evaluate their potential application in solidstate battery systems. The activities of the trainee will include: • Synthesis of materials: Preparation of novel hybrid halide-based electrolytes using appropriate solid-state and/or solution-based synthesis methods. • Structural and physicochemical characterization: Analysis of the obtained materials using techniques such as X-ray diffraction (XRD), Xray photoelectron spectroscopy, and differential scanning calorimetry to confirm phase purity and to analyze crystal structure, composition and stability. • Electrochemical characterization: Measurement of ionic conductivity and transport properties using electrochemical impedance spectroscopy (EIS), as well as evaluation of electrochemical stability. • Device integration and testing: Incorporation of the developed electrolytes into lab-scale prototype solid-state battery cells to assess their performance under realistic operating conditions. • Data analysis and reporting: Interpretation of experimental results, preparation of reports, and presentation of findings. This project contributes to the development of safer and more efficient energy storage technologies, aligned with current priorities in sustainable energy and advanced materials.
  • Nivel Académico: Licenciatura o Grado (C5-8)
  • Fecha Alta: 2026-06-29
  • Fecha Inicio: 2026-07-23
  • Titulación: QUÍMICA, INGENIERÍA QUÍMICA, CIENCIAS DE LOS MATERIALES Graduated in chemistry, chemical engineering or materials science High level of written and oral English Additional desirable qualifications: Research experience Experience/knowledge in synthesis of inorganic material and knowledge of basic principles of structural characterization
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