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MilliporeSigma

Z805025

Hellma® fluorescence cuvettes, semi Micro

High Performance Quartz Glass, spectral range 200-2500 nm, pathlength 10x4 mm, chamber volume 1000 μL

Synonym(s):

Semi-Small Fluorescence Cuvettes

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1 EA

$603.00

$603.00


Estimated to ship onMarch 02, 2026Details

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About This Item

NACRES:
NB.44
UNSPSC Code:
41121813

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material

Suprasil® quartz

manufacturer/tradename

Hellma 108F-QS, Hellma

parameter

200-2500 nm spectral range

technique(s)

photometry: suitable

H × W × D

45 mm × 12.5 mm × 12.5 mm

chamber volume

1000 μL

pathlength

10x4 mm

detection method

fluorometric

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1 of 4

This Item
Z600253Z600768Z802875
material

Suprasil® quartz

material

Suprasil® quartz

material

Suprasil® quartz

material

Suprasil® quartz

manufacturer/tradename

Hellma 108F-QS

manufacturer/tradename

Hellma 104F-QS

manufacturer/tradename

Hellma 114F-QS

manufacturer/tradename

Hellma 104.002F-QS

parameter

200-2500 nm spectral range

parameter

200-2,500 nm spectral range

parameter

200-2,500 nm spectral range

parameter

200-2500 nm spectral range

technique(s)

photometry: suitable

technique(s)

-

technique(s)

-

technique(s)

photometry: suitable

H × W × D

45 mm × 12.5 mm × 12.5 mm

H × W × D

45 mm × 12.5 mm × 12.5 mm

H × W × D

46 mm × 12.5 mm × 12.5 mm

H × W × D

45 mm × 12.5 mm × 12.5 nm

chamber volume

1000 μL

chamber volume

1,400 μL

chamber volume

1,400 μL , 1400 μL

chamber volume

700 μL

General description

with PTFE lid

Application


  • Total Luminescence Spectroscopy for Quantification of Temperature Effects on Photophysical Properties of Photoluminescent Materials: This research utilized fluorescence cuvettes to investigate how temperature variations affect the luminescence properties of materials, essential for developing temperature-stable photoluminescent devices (Wamsley et al., 2023).

  • Reflection-enhanced laser-induced fluorescence spectroscopy to improve the analytical sensitivity in liquids: Enhancing detection capabilities in liquid samples by using fluorescence cuvettes demonstrates critical advancements in analytical methods, particularly in biochemical and environmental testing scenarios (Abdel-Harith & Abdel-Salam, 2023).

  • Accurate correction method and algorithm of fluorescence secondary inner filter effect (sIEF) in fluorescence quantitative analysis: This study provides a refined quantitative approach in fluorescence analysis, correcting for errors introduced by the inner filter effect in cuvettes, pivotal for ensuring accuracy in biomedical and chemical research (Li et al., 2023).

  • Digital Protein Detection in Bulk Solutions: This application involves the use of fluorescence cuvettes in a novel digital detection methodology for proteins, offering substantial improvements over traditional techniques by enhancing sensitivity and specificity, relevant in clinical diagnostics and molecular biology (Beck et al., 2022).

Legal Information

Hellma is a registered trademark of Hellma GmbH
Suprasil is a registered trademark of HERAEUS QUARZGLAS GMBH & CO.

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