SubsidieMeesters logoSubsidieMeesters
ProjectenRegelingenAnalyses

Optical Microscope for Imaging High-Speed Precision Surface Processes

SURFLIGHT aims to revolutionize optical microscopy with a high-resolution, real-time microscope for monitoring ultrafast surface processes, enhancing catalysis R&D and reducing costs across various industries.

Subsidie
€ 150.000
2024

Projectdetails

Introduction

SURFLIGHT is at the forefront of optical microscopy innovation, aiming to bring an exceptional microscope to the market. We have developed a high-resolution microscope (up to 2 nm) capable of monitoring ultrafast surface processes (μs-scale) on non-transparent materials under real operational conditions. This innovation holds promise for industries like semiconductors, batteries, and green energy, where it is critical to visualize surface phenomena label-free and in real-time.

Technology Overview

SURFLIGHT's microscope excels in identifying active sites on surfaces and nanomaterials, essential for catalytic reactions or solar energy conversion. This technology streamlines catalysis R&D by offering real-time visualizations, cutting costs, and optimizing catalyst utilization.

Benefits of the Technology

  1. Minimizes the need for repetitive tests, conserving time and resources.
  2. Enhances catalyst lifespans and reduces replacements through real-time monitoring of catalyst degradation under real-world conditions.
  3. Safeguards against large-scale process failures, resulting in substantial cost savings in materials and reduced downtime.

Market Analysis

A thorough market analysis within SURFLIGHT will allow us to step up our dialogue with academic as well as industrial partners and thoroughly characterize the industry’s demands and needs for the microscope. This will allow us to undertake a final optimization of the microscope once we identify the initial targeted customer sector.

Future Vision

This ERC PoC will be central for pursuing these goals. We envision SURFLIGHT in the market rapidly and attracting commercial interest from a wide range of industrial sectors.

Financiële details & Tijdlijn

Financiële details

Subsidiebedrag€ 150.000
Totale projectbegroting€ 150.000

Tijdlijn

Startdatum1-6-2024
Einddatum30-11-2025
Subsidiejaar2024

Partners & Locaties

Projectpartners

  • LUDWIG-MAXIMILIANS-UNIVERSITAET MUENCHENpenvoerder

Land(en)

Germany

Inhoudsopgave

European Research Council

Financiering tot €10 miljoen voor baanbrekend frontier-onderzoek via ERC-grants (Starting, Consolidator, Advanced, Synergy, Proof of Concept).

Bekijk regeling

Vergelijkbare projecten binnen European Research Council

ProjectRegelingBedragJaarActie

Real-time, High-throughput, Coherent X-ray Microscopy: from Large-Scale Installations to Tabletop Device

HYPER aims to develop a cost-effective tabletop coherent XUV microscope for advanced nanoscale imaging, enhancing accessibility and understanding in optoelectronics and biomedical applications.

ERC Proof of...€ 150.000
2024
Details

Next-gen fluorescence imaging for research and theranostics

The project aims to develop the TriScanner, a novel fluorescence microscope that enhances imaging speed, resolution, and sensitivity for multicellular systems in research and clinical applications.

ERC Proof of...€ 150.000
2023
Details

Fast Electro-Optic Fluorescence Lifetime Microscopy (EOFLIM) for super-resolution microscopy and brain surgery.

The project develops a high-speed, sensitive EOFLIM detector for super-resolution and surgical applications, enhancing imaging capabilities in research and cancer diagnostics.

ERC Proof of...€ 150.000
2022
Details

Super-resolution microscopy for semiconductor metrology

The MICROSEM project aims to develop a super-resolution microscopy technique using high-harmonic generation for sub-100 nm imaging in semiconductors, enhancing metrology without labeling.

ERC Proof of...€ 150.000
2024
Details

A light-efficient microscope for fast volumetric imaging of photon starved samples

LowLiteScope aims to revolutionize bioluminescence microscopy by using AI-driven light field techniques for high-resolution 3D imaging of biological samples, enhancing research capabilities in life sciences.

ERC Proof of...€ 150.000
2024
Details
ERC Proof of...

Real-time, High-throughput, Coherent X-ray Microscopy: from Large-Scale Installations to Tabletop Device

HYPER aims to develop a cost-effective tabletop coherent XUV microscope for advanced nanoscale imaging, enhancing accessibility and understanding in optoelectronics and biomedical applications.

ERC Proof of Concept
€ 150.000
2024
Details
ERC Proof of...

Next-gen fluorescence imaging for research and theranostics

The project aims to develop the TriScanner, a novel fluorescence microscope that enhances imaging speed, resolution, and sensitivity for multicellular systems in research and clinical applications.

ERC Proof of Concept
€ 150.000
2023
Details
ERC Proof of...

Fast Electro-Optic Fluorescence Lifetime Microscopy (EOFLIM) for super-resolution microscopy and brain surgery.

The project develops a high-speed, sensitive EOFLIM detector for super-resolution and surgical applications, enhancing imaging capabilities in research and cancer diagnostics.

ERC Proof of Concept
€ 150.000
2022
Details
ERC Proof of...

Super-resolution microscopy for semiconductor metrology

The MICROSEM project aims to develop a super-resolution microscopy technique using high-harmonic generation for sub-100 nm imaging in semiconductors, enhancing metrology without labeling.

ERC Proof of Concept
€ 150.000
2024
Details
ERC Proof of...

A light-efficient microscope for fast volumetric imaging of photon starved samples

LowLiteScope aims to revolutionize bioluminescence microscopy by using AI-driven light field techniques for high-resolution 3D imaging of biological samples, enhancing research capabilities in life sciences.

ERC Proof of Concept
€ 150.000
2024
Details

Vergelijkbare projecten uit andere regelingen

ProjectRegelingBedragJaarActie

Photonic chip based high-throughput, multi-modal and scalable optical nanoscopy platform

NanoVision aims to revolutionize optical nanoscopy with an affordable, compact, and high-throughput photonic-chip solution, enhancing accessibility and flexibility for research and clinical labs.

EIC Transition€ 2.489.571
2022
Details

The world’s most sensitive absorption microscope

QlibriNANO aims to validate and enhance the world's most sensitive absorption microscope for nanoscale matter analysis, targeting market readiness and scalability by 2027.

EIC Transition€ 2.480.000
2024
Details

MULTIMODE NONLINEAR FIBER BASED ENDOSCOPIC IMAGING AND TREATMENT

MULTISCOPE aims to revolutionize optical diagnostics and therapy by developing a dual-function endoscopic device for real-time optical biopsy and cold atmospheric plasma treatment in gastrointestinal care.

EIC Pathfinder€ 2.863.733
2024
Details

Revolutionizing Spatial Biology with a cutting-edge Multi-Scale Imaging platform

The NanoSCAN project aims to develop the SAFe-nSCAN platform for high-resolution 3D tissue analysis, enhancing molecular profiling and advancing personalized therapies in immuno-oncology.

EIC Transition€ 2.489.162
2023
Details

Breaking the penetration limit of microscopy – Photoswitching Optoacoustics

SWOPT aims to revolutionize in vivo imaging by combining optoacoustic imaging and photoswitching to visualize individual cells deep within tissues, enhancing research in life sciences and biomedicine.

EIC Pathfinder€ 3.536.935
2022
Details
EIC Transition

Photonic chip based high-throughput, multi-modal and scalable optical nanoscopy platform

NanoVision aims to revolutionize optical nanoscopy with an affordable, compact, and high-throughput photonic-chip solution, enhancing accessibility and flexibility for research and clinical labs.

EIC Transition
€ 2.489.571
2022
Details
EIC Transition

The world’s most sensitive absorption microscope

QlibriNANO aims to validate and enhance the world's most sensitive absorption microscope for nanoscale matter analysis, targeting market readiness and scalability by 2027.

EIC Transition
€ 2.480.000
2024
Details
EIC Pathfinder

MULTIMODE NONLINEAR FIBER BASED ENDOSCOPIC IMAGING AND TREATMENT

MULTISCOPE aims to revolutionize optical diagnostics and therapy by developing a dual-function endoscopic device for real-time optical biopsy and cold atmospheric plasma treatment in gastrointestinal care.

EIC Pathfinder
€ 2.863.733
2024
Details
EIC Transition

Revolutionizing Spatial Biology with a cutting-edge Multi-Scale Imaging platform

The NanoSCAN project aims to develop the SAFe-nSCAN platform for high-resolution 3D tissue analysis, enhancing molecular profiling and advancing personalized therapies in immuno-oncology.

EIC Transition
€ 2.489.162
2023
Details
EIC Pathfinder

Breaking the penetration limit of microscopy – Photoswitching Optoacoustics

SWOPT aims to revolutionize in vivo imaging by combining optoacoustic imaging and photoswitching to visualize individual cells deep within tissues, enhancing research in life sciences and biomedicine.

EIC Pathfinder
€ 3.536.935
2022
Details

SubsidieMeesters logoSubsidieMeesters

Vind en verken subsidieprojecten in Nederland en Europa.

Links

  • Projecten
  • Regelingen
  • Analyses

Suggesties

Heb je ideeën voor nieuwe features of verbeteringen?

Deel je suggestie
© 2025 SubsidieMeesters. Alle rechten voorbehouden.