Fluorescence

Fluorometers (Fluorimeters)

Key Takeaways

  • A fluorometer measures fluorescence emitted by a sample after excitation with UV, visible, or near-infrared light.
  • Fluorescence spectroscopy is one of the most sensitive analytical techniques for molecular characterization, trace analysis, and material research.
  • HORIBA offers fluorometers ranging from compact benchtop instruments to advanced modular research systems.
  • Applications include life sciences, biopharmaceuticals, environmental analysis, nanotechnology, semiconductor research, materials science, and forensics.

 

Introduction

Fluorescence measurements can reveal information about molecular structure, concentration, interactions between molecules, environmental conditions, and material properties, making fluorescence spectroscopy an essential tool for modern research and analytical laboratories.

A fluorometer, also called a fluorimeter or spectrofluorometer, is an analytical instrument that measures the fluorescence produced when a sample absorbs light and re-emits it at a different wavelength. Because many materials produce unique fluorescence signatures, fluorometers are widely used to identify, characterize, and quantify compounds with exceptional sensitivity.

Our fluorometers can accommodate any size work area, and are available as compact or benchtop models, or as large modular systems, to suit your requirements. In addition, our fluorometers can be coupled to become modular fluorometer systems, or supercontinuum white-light laser-powered lifetime fluorometers.

Frequently Asked Questions (FAQ)

A fluorometer measures fluorescence intensity, while a spectrofluorometer measures fluorescence as a function of wavelength, providing complete excitation and emission spectra for more detailed analysis.

Industries utilizing fluorescence spectroscopy include pharmaceutical development, biotechnology, environmental monitoring, academic research, semiconductor manufacturing, food science, nanotechnology, and materials science.

Fluorescence spectroscopy can detect naturally fluorescent compounds, fluorescent labels, proteins, nucleic acids, nanoparticles, dissolved organic matter, pharmaceuticals, and many other materials at very low concentrations.

Yes. Certain HORIBA systems, such as Duetta and Veloci, support both fluorescence and absorbance measurements within a single platform.

Browse Products

Duetta: 2-in-1 Fluorescence & Absorbance Spectrometer
Duetta: 2-in-1 Fluorescence & Absorbance Spectrometer

Full Spectra in Milliseconds for Industry and Academia

Veloci BioPharma Analyzer
Veloci BioPharma Analyzer

A-TEEM Spectroscopy

Aqualog®-Next: The Future of Water Analysis is Here
Aqualog®-Next: The Future of Water Analysis is Here

Unlock Unprecedented Insights into Water Quality and Environmental Health

Veloci Wine Analyzer
Veloci Wine Analyzer

A-TEEM Spectroscopy

Fluorolog-QM
Fluorolog-QM

Modular Research Fluorometer for Lifetime and Steady State Measurements

FluoroMax Plus
FluoroMax Plus

Steady State and Lifetime Benchtop Spectrofluorometer

DeltaFlex
DeltaFlex

TCSPC/MCS Fluorescence Lifetime System

DeltaPro
DeltaPro

TCSPC Lifetime Fluorometer

Nanolog
Nanolog

Steady State and Lifetime Nanotechnology EEM Spectrofluorometer

A-TEEM Direktor
A-TEEM Direktor

Your Guide to Multivariate Analysis

FLIMera
FLIMera

SPAD array imaging camera for dynamic FLIM studies at real time video rates

Hybrid Picosecond Photon Detector (HPPD) Series
Hybrid Picosecond Photon Detector (HPPD) Series

HORIBA’s latest development in TCSPC detector technology

InverTau
InverTau

Fluorescence Lifetime Imaging Platform

PPD Photon Counting Detector
PPD Photon Counting Detector

Single photons detection with picosecond accuracy

QM-800
QM-800

DeltaRAM-X based millisecond ratio fluorescence QuantaMaster spectrofluorometer

SpectraLED
SpectraLED

LED Phosphorescence Light Sources

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