ANUSHREE DUTTA
ETH Zurich, Technion – Israel Institute of Technology, Universität Potsdam Institut für Chemie
About
Nanomaterials & Spectroscopy Specialist | Expertise in TERS/SERS, Plasmonic Catalysis, Optical Fibre Biosensing, DNA Origami, Cell Culture Methods, and Advanced Characterization
Key Expertise - Surface and tip-enhanced Raman spectroscopy (SERS/TERS), Nanomaterial synthesis
Other expertise -
- in-situ and operando catalysis methods,
- broad range of characterisation techniques (AFM, SEM, TEM, XPS, confocal microscopy),
-Skilled in DNA origami for single-molecule spectroscopy,
-Optical fibre–based biosensing,
-Cell culture methods for nanomaterial-cell interaction studies.
- Scientific data visualisation using Origin, Illustrator, and Gwyddion.
I am broadly interested in the application of nanoscale spectroscopy and engineered nanostructures to address challenges in sustainability and health. My work spans sustainable energy conversion pathways, nanoplastic detection in biological systems, and plasmon-mediated chemical reactions. I have extensive experience with single-molecule SERS, tip-enhanced Raman spectroscopy (TERS), and fibre-optic sensing technologies. I am also interested in DNA origami-based nanosystems as platforms for highly sensitive molecular detection.
Employment
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ETH Zurich Postdoctoral Scientist2024 - Present
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Technion – Israel Institute of Technology Post/doctoral fellow2023 - Present
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Universität Potsdam Institut für Chemie Post doctoral research scholar2018 - 2023
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (17)
- Advancements in Nanoscale Chemical Analysis using Tip-Enhanced Raman Spectroscopy Save
- Plasmon-driven chemical transformation of a secondary amide probed by surface enhanced Raman scattering Save
- Plasmonic reactivity of halogen thiophenols on gold nanoparticles studied by SERS and XPS Save
- Molecular states and spin crossover of hemin studied by DNA origami enabled single-molecule surface-enhanced Raman scattering Save
- Spatial Separation of Plasmonic Hot-Electron Generation and a Hydrodehalogenation Reaction Center Using a DNA Wire Save
- Kinetics and Mechanism of Plasmon-Driven Dehalogenation Reaction of Brominated Purine Nucleobases on Ag and Au Save
- A versatile DNA origami based plasmonic nanoantenna for label-free single-molecule SERS Save
- Plasmon mediated decomposition of brominated nucleobases on silver nanoparticles–A surface enhanced Raman scattering (SERS) study Save
- Field-assisted growth of magnetic nanoparticle supercrystals Save
- Probing cancer cells through intracellular aggregation-induced emission kinetic rate of copper nanoclusters Save