Item:OSW8dca6aaebe005c5faca05bac33264e4d: Difference between revisions

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Item:OSW8dca6aaebe005c5faca05bac33264e4d
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Tag: Metadata slot edit
jsondata
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     "description": [
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         {
             "text": "PostDoc of the Digtal Transformation working group at Fraunhofer ISC ",
             "text": "Post doctoral researcher in the Digtal Transformation working group at Fraunhofer ISC ",
             "lang": "en"
             "lang": "en"
         }
         }

Revision as of 14:52, 25 June 2024

Lukas Gold [OSW8dca6aaebe005c5faca05bac33264e4d]
ID OSW8dca6aaebe005c5faca05bac33264e4d
UUID 483c52a5-610c-4aa2-9d76-a646c8579150
Label Lukas Gold
Machine compatible name LukasGold
OSWc1ca440aa5d54f24bc30e1e452ae3038.jpg
Ontology equivalents
Statements (outgoing)
Statements (incoming)
Keywords

Description

Post doctoral researcher in the Digtal Transformation working group at Fraunhofer ISC

Item
Type(s)/Category(s) User
Person
First name Lukas
Middle name
Surname Gold
HR info
Organization Fraunhofer Society
Department Fraunhofer Institute for Silicate Research ISC, Digitale Transformation
Located at
Contact
Email lukas.gold@isc.fraunhofer.de
Website
ORCID iD https://orcid.org/0000-0001-7444-2969
Phone number +49-931-4100-979
Fax number
Expertise
Role
Competence
Topic
Projects
Member of Battery 2030+
User
Username
Abbreviation
Office
Superior Simon Stier

Biography

Lukas Gold received a master of science in nanostructure technology and a PhD degree from the University of Würzburg. From 2013 to 2021 he was working at the Fraunhofer R&D Center Electromobility FZEB as master student and PhD candidate.

In this time his research mostly focused on the electrochemically induced changes to mechanical properties of lithium-ion batteries. This included studies on the swelling and contraction of latter during cycling, the associated change in electrode density and porosity, as well as the changes to modulus of elasticity. He employed several x-ray and neutron imaging methods such as computer tomography and radiography to study those property changes.

His PhD thesis took this a step further, exploiting this property changes to estimate the state of charge via ultrasound. The latter allows to correlate property changes with the state of charge when employing advanced methods of digital signal processing and machine learning (like support vector machines). Additionally, he developed an ultrasound-based method to monitor the wetting process of lithium-ion batteries during cell production.

As a post-doctoral researcher, he switched the field of research to the digital transformation of laboratory and materials research in 2021 and joined the working group of Simon Stier at Fraunhofer ISC. His work here, aiming to make research data FAIR, mostly involves around the development of the knowledge management platform Open Semantic Lab, modelling of processes and items in JSON Schema and the development of the platform accompanying Python package osw-python.

Publications


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