Organic Functional Materials

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The research group of Prof. Dr. Birgit Esser focuses on functional organic molecules and materials. The main topics are organic-based batteries, strained ring systems (chemical rings with high ring strain), and photocatalysis (chemical reactions driven by light in the presence of a catalyst).

Organic Batteries:
Organic electrode materials are promising for sustainable batteries, as they are made from readily available, mostly non-toxic elements and can be flexibly designed. Their diverse redox chemistry enables their use in different battery types, for example with sodium, aluminum, or magnesium. The research develops and investigates such materials and how they function.

Strained Ring Systems:
Nanohoops are ring-shaped molecules with unique electronic properties. Various variants, such as chiral or redox-active structures are under investigation as well as the analyzis of their physical and chemical properties. The group explores their potential for applications, for example in batteries or spintronics.

Photocatalysis:
The group focuses on organic dyes as photosensitizers for light-driven reactions, such as hydrogen evolution. A particular interest lies on donor-acceptor systems and their combination with catalysts. The aim is to enable more efficient reactions under milder conditions.

Prof. Dr. Birgit EsserPrincipal InvestigatorMail: birgit.esser[at]uni-ulm.de
Esser Lab Birgit Esser Gruppenfoto   The research group of Prof. Dr. Birgit Esser focuses on functional organic molecules and materials. The main topics are organic-based batteries, strained ring systems (chemical rings with high ring strain), and photocatalysis (chemical reactions driven by light in the presence of a catalyst).   Organic Batteries: Organic electrode materials are promising for sustainable batteries, as they are made from readily available, mostly non-toxic elements and can be flexibly designed. Their diverse redox chemistry enables their use in different battery types, for example with sodium, aluminum, or magnesium. The research develops and investigates such materials and how they function.   Strained Ring Systems: Nanohoops are ring-shaped molecules with unique electronic properties. Various variants, such as chiral or redox-active structures are under investigation as well as the analyzis of their physical and chemical properties. The group explores their potential for applications, for example in batteries or spintronics.   Photocatalysis: The group focuses on organic dyes as photosensitizers for light-driven reactions, such as hydrogen evolution. A particular interest lies on donor-acceptor systems and their combination with catalysts. The aim is to enable more efficient reactions under milder conditions.  
Zeitschriftenaufsatz
Daboss Sven, Bräutigam Eva, Esser Birgit, Cramer Tobias, Durukan Mete Batuhan, Fleischmann Simon, Kranz Christine
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Zeitschriftenaufsatz
Adil Md., Wessling Robin, Kokott Nico, Mena-Osteritz Elena, Prifling Benedikt, Osenberg Markus, Diemant Thomas, Schmidt Volker, Manke Ingo, Esser Birgit
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Zeitschriftenaufsatz
Adil Md, Schmidt Maximilian, Vogt Julia, Diemant Thomas, Oschatz Martin, Esser Birgit
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Zeitschriftenaufsatz
Uhl Matthias, Sadeeda, Penert Philipp, Schuster Philipp A., Schick Benjamin W., Muench Simon, Farkas Attila, Schubert Ulrich S., Esser Birgit, Kuehne Alexander J. C., Jacob Timo
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Prof. Dr. Birgit EsserPrincipal InvestigatorTel: Mail: birgit.esser[at]uni-ulm.de
Research groupEsser
Research
Esser Lab Birgit Esser Gruppenfoto   The research group of Prof. Dr. Birgit Esser focuses on functional organic molecules and materials. The main topics are organic-based batteries, strained ring systems (chemical rings with high ring strain), and photocatalysis (chemical reactions driven by light in the presence of a catalyst).   Organic Batteries: Organic electrode materials are promising for sustainable batteries, as they are made from readily available, mostly non-toxic elements and can be flexibly designed. Their diverse redox chemistry enables their use in different battery types, for example with sodium, aluminum, or magnesium. The research develops and investigates such materials and how they function.   Strained Ring Systems: Nanohoops are ring-shaped molecules with unique electronic properties. Various variants, such as chiral or redox-active structures are under investigation as well as the analyzis of their physical and chemical properties. The group explores their potential for applications, for example in batteries or spintronics.   Photocatalysis: The group focuses on organic dyes as photosensitizers for light-driven reactions, such as hydrogen evolution. A particular interest lies on donor-acceptor systems and their combination with catalysts. The aim is to enable more efficient reactions under milder conditions.  
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Zeitschriftenaufsatz
Daboss Sven, Bräutigam Eva, Esser Birgit, Cramer Tobias, Durukan Mete Batuhan, Fleischmann Simon, Kranz Christine
Learn more
Zeitschriftenaufsatz
Adil Md., Wessling Robin, Kokott Nico, Mena-Osteritz Elena, Prifling Benedikt, Osenberg Markus, Diemant Thomas, Schmidt Volker, Manke Ingo, Esser Birgit
Learn more
Zeitschriftenaufsatz
Adil Md, Schmidt Maximilian, Vogt Julia, Diemant Thomas, Oschatz Martin, Esser Birgit
Learn more
Zeitschriftenaufsatz
Uhl Matthias, Sadeeda, Penert Philipp, Schuster Philipp A., Schick Benjamin W., Muench Simon, Farkas Attila, Schubert Ulrich S., Esser Birgit, Kuehne Alexander J. C., Jacob Timo
Learn more

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