|
|
|
|
|
|
|
 |
 |
| KEYNOTE |
|
 |
Miguel A. Bañares |
CSIC-Instituto de Catalisis |
Spain |
|
|
 |
 |
| KEYNOTE |
|
 |
Ewelina Lipiec |
Jagiellonian University |
Poland |
|
|
 |
 |
| KEYNOTE |
|
 |
Giulia Manina |
Institut Pasteur |
France |
|
|
 |
 |
| KEYNOTE |
|
 |
Andrea Mario Rossi |
INRIM |
Italy |
|
|
 |
 |
| KEYNOTE |
|
 |
Sylvie Roussel |
Ondalys |
France |
|
|
 |
 |
| KEYNOTE |
|
 |
Dietrich RT Zahn |
TU Chemnitz |
Germany |
|
|
 |
| |
|
|
|
 |
 |
| INVITED |
|
 |
Cinzia Casiraghi |
University of Manchester |
UK |
|
|
 |
 |
| INVITED |
|
 |
Hilton B. de Aguiar |
Laboratoire Kastler Brossel - CNRS |
France |
|
|
 |
 |
| INVITED |
|
 |
Rudolph Erasmus |
University of the Witwatersrand, Johannesburg |
South Africa |
|
|
 |
 |
| INVITED |
|
 |
Tommaso Giovannini |
University of Rome Tor Vergata |
Italy |
|
|
 |
 |
| INVITED |
|
 |
Juan Carlos González Rosillo |
IREC |
Spain |
|
|
 |
 |
| INVITED |
|
 |
Van Hoan Le |
CEA Leti |
France |
|
|
 |
|  |
 |
| INVITED |
|
 |
Claire Mangeney |
Université Paris - Descartes |
France |
|
|
 |
 |
| INVITED |
|
 |
Cyril Ruckebusch |
University of Lille |
France |
|
|
 |
|
 |
|
 |
|
 |
|
 |
| |
|
|
|
|
|
|
|
|
|
|
Andrea Ferrari (Cambridge Graphene Centre / University of Cambridge, UK)
|
|
|
Title to be defined
|
|
|
Juergen Popp (Leibniz-IPHT, Germany)
|
|
|
From Molecular Raman Fingerprints to AI-Driven Precision Medicine
|
|
|
|
|
|
|
|
|
Miguel A. Bañares (CSIC-Instituto de Catalisis, Spain)
|
|
|
Raman to monitor changing materials
and materials in change
|
|
|
Ewelina Lipiec (Jagiellonian University, Poland)
|
|
|
Mind the gap! Plasmonic nanocavity for trapping of local molecular rearrangements in selected biomolecules
|
|
|
Giulia Manina (Institut Pasteur, France)
|
|
|
Mycobacterial phenotypic variation: Insights and opportunities
|
|
|
Andrea Mario Rossi (INRIM, Italy)
|
|
|
Microplastics and Nanoplastics in Drinking Water: Quantification and Polymer Identification
|
|
|
Sylvie Roussel (Ondalys, France)
|
|
|
Machine Learning for Raman Spectroscopy:
From Spectra to Robust Industrial Models
|
|
|
Dietrich RT Zahn (TU Chemnitz, Germany)
|
|
|
Tip-enhanced Raman Spectroscopy and Photoluminescence of 0- and 2-dimensional Semiconductor Nanostructures
|
|
|
|
|
|
|
|
|
Cinzia Casiraghi (University of Manchester, UK)
|
|
|
Raman Spectroscopy of Graphene: From Metrology and Manufacturing to Qualification in Extreme Environments
|
|
|
Hilton B. de Aguiar (Laboratoire Kastler Brossel - CNRS, France)
|
|
|
From High-Speed to Ultrafast Sensing Enabled by (Spontaneous) Compressive Raman Technology
|
|
|
Rudolph Erasmus (University of the Witwatersrand, Johannesburg, South Africa)
|
|
|
Variable temperature Raman spectroscopy: a "benchtop" technique to complement synchrotron characterisation.
|
|
|
Tommaso Giovannini (University of Rome Tor Vergata, Italy)
|
|
|
Surface-Enhanced Raman Scattering: Insights from Atomistic Modelling
|
|
|
Juan Carlos González Rosillo (IREC, Spain)
|
|
|
Nanoscale imaging of grain boundaries in ceramic energy
devices and operando battery chemistry via Tip-Enhanced
Raman Spectroscopy
|
|
|
Van Hoan Le (CEA Leti, France)
|
|
|
Characterization of MoS2 by Raman and Photoluminescence Spectroscopy: From Growth to Property Enhancement
|
|
|
Claire Mangeney (Université Paris - Descartes, France)
|
|
|
SERS-Encoded Metallic Nanoparticles Based on Aryl Diazonium Chemistry for Raman Imaging and Nanosensing
|
|
|
Cyril Ruckebusch (University of Lille, France)
|
|
|
Chemometrics-driven data acquisition to accelerate confocal Raman imaging
|
|
|
|
|
(16) |
|
|
|
Manjunath Balagopalan (International Iberian Nanotechnology Laboratory, Portugal)
|
|
|
Grain-boundaries in nanocrystalline silicon: Insights from Raman Spectroscopy
|
|
|
|
|
|
Morteza Behrouzitabar (Specto Photonics, Italy)
|
|
|
Full vibrational spectroscopy for simultaneous mechanical, structural and chemical analysis
|
|
|
|
|
|
Nathan Blake (Kings College London, UK)
|
|
|
Causal Responsibility Based Explainable AI for Raman Spectroscopy
|
|
|
|
|
|
Jean-Christophe Blancon (Liom Health, Switzerland)
|
|
|
From benchtop to the wrist: calibration-free, robust transcutaneous spectroscopy for noninvasive glucose sensing
|
|
|
|
|
|
Eleonora Bolli (CNR-ISM, Italy)
|
|
|
Nanoscale Chemical Mapping and Local Heterogeneity in PEPOT/SSp-PTh Polymer Blends via TERS
|
|
|
|
|
|
Andrea Chiarello (University of Padova, Italy)
|
|
|
Real-time detection of gas-producing bacteria in milk by Raman spectroscopy
|
|
|
|
|
|
Nicole Dambruin (TU Delft, The Netherlands)
|
|
|
Investigation of different methods for quantitative microbial biomass monitoring in microbial fermentations using Raman spectroscopy
|
|
|
|
|
|
Eric Michele Fantuzzi (Cambridge Raman Imaging, Italy)
|
|
|
Single-Shot Multiplex SRS: High-Throughput Chemical Imaging for Industrial Quality Control and Environmental Monitoring
|
|
|
|
|
|
Jessica Gabb (IS-Instruments, UK)
|
|
|
Hollow-Core Fibre–Enhanced Raman Spectroscopy of High-Pressure Gases
|
|
|
|
|
|
Julia Gala de Pablo (University of Leeds, UK)
|
|
|
Raman Vibrational Imaging of Colorectal Cancer Progression
|
|
|
|
|
|
Yuhan Huang (Université de Bordeaux, France)
|
|
|
TERS with in situ mechanical loading for nanoscale stress probing in suspended graphene
|
|
|
|
|
|
Oleksii Ilchenko (Lightnovo ApS, Denmark)
|
|
|
Raman Spectroscopy for In Vivo Bacterial Infection Diagnostics: From Animal Models to Patient Samples
|
|
|
|
|
|
Wenbo Mo (Laser Fusion Research Center, China Academy of Engineering Physics , China)
|
|
|
Rapid and Multiplexed Molecular Pathology of Breast Cancer via Label-Free SERS and Spectral-Image Fusion
|
|
|
|
|
|
Daojian Qi (China Academy of Engineering Physics, China)
|
|
|
Research on Intelligent Diagnostic Method for Respiratory Viruses Based on SERS-FLIA
|
|
|
|
|
|
Madjid Tarabet (HORIBA France SAS, France)
|
|
|
In Situ EC-Raman Analysis of Ni-based Layered Double Hydroxide Phase Transition Under Alkaline OER
|
|
|
|
|
|
Kuo Zhan (University of Oulu, Finland)
|
|
|
Physics-Aligned Deep Learning Enables SM-SERS DNA Oligomers decoding
|
|
|
|
|
| 12/16 |
|
| 0/0 |
|