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Position: PhD scholarship in Metal-Organic Frameworks-incorporated Micro-Architectured Stereolithography-derived Supercapacitors
Institution: Technical University of Denmark
Location: Kongens Lyngby, Lyngby‐Taarbæk Municipality, Denmark
Duties: Plan and execute experimental research in the DTU Nanolab (PolyFabLab) facilities; Establishing different chemical and electrochemical methods for the synthesis of rationally designed MOF systems; Determination of optimal MOF/photopolymer composition and pyrolysis conditions to achieve hierarchically porous MOF-derived (multi)MO/carbon electrodes; Physicochemical and electrochemical characterization of the developed electrodes
Requirements: You must have a two-year master's degree (120 ECTS points) in micro- or nanoengineering, chemical engineering, material engineering or a similar degree with an academic level equivalent to a two-year master's degree. You must have hands-on experience in chemical and electrochemical synthesis and methods for characterization of nanomaterials. Preferably, you have worked with micro- and nanofabrication techniques and electrochemical energy storages devices. You are able to interact with researchers in a very interdisciplinary environment. A high-grade average and excellent English language skills are decisive to be considered for the scholarship
   
Text: PhD scholarship in Metal-Organic Frameworks-incorporated Micro-Architectured Stereolithography-derived Supercapacitors Plan and execute experimental research in the DTU Nanolab (PolyFabLab) facilities; Establishing different chemical and electrochemical methods for the synthesis of rationally designed MOF systems; Determination of optimal MOF/photopolymer composition and pyrolysis conditions to achieve hierarchically porous MOF-derived (multi)MO/carbon electrodes; Physicochemical and electrochemical characterization of the developed electrodes You must have a two-year master's degree (120 ECTS points) in micro- or nanoengineering, chemical engineering, material engineering or a similar degree with an academic level equivalent to a two-year master's degree. You must have hands-on experience in chemical and electrochemical synthesis and methods for characterization of nanomaterials. Preferably, you have worked with micro- and nanofabrication techniques and electrochemical energy storages devices. You are able to interact with researchers in a very interdisciplinary environment. A high-grade average and excellent English language skills are decisive to be considered for the scholarship
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