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Low-Background Signal-Stable Quartz Fluorescence Flow‑Through Cell with Glass Tube Connectors for Optical Detection Systems -TOQUARTZ®

Designed for precision optical detection, TOQUARTZ® precision quartz fluorescence flow-through cell with glass connectors ensures ultra-low background fluorescence and consistent signal output. Its 4-sided transparent quartz structure enables multi-angle light access with minimal interference. Integrated glass tube connectors support leak-free, bubble-resistant flow in advanced spectroscopic systems.
No MOQ
Custom Design
Factory Direct
Tech Support

Features of Quartz Fluorescence Flow‑Through Cell with
Glass Tube Connectors

The TOQUARTZ® Quartz Fluorescence Flow-Through Cell combines precision optical design with durability for consistent performance in demanding analytical applications. Each cell is manufactured to exact specifications, ensuring reliable results in fluorescence and absorbance measurements.

Precision Optical Transmission

Bubble-Free Flow Design

High-Integrity Tube Integration

Application-Ready Customization Support

Quartz Fluorescence Flow‑Through Cell with Glass Tube Connectors for Modular Spectroscopy Platforms
TOQUARTZ® Quartz Fluorescence Flow‑Through Cell with Glass Tube Connectors

Technical Specifications & Dimensions of Quartz Fluorescence Flow‑Through Cell with Glass Tube Connectors

TOQUARTZ® quartz fluorescence flow-through cells with glass connectors are manufactured to precise tolerances, ensuring consistent performance across analytical applications. Each specification contributes to the cell’s exceptional measurement capabilities.

Technical Specifications

ParameterSpecification
1. Physical Properties
Pressure ResistanceUp to 7 bar (continuous); burst tested to 10 bar
Thermal StabilityOperable from −40°C to +1100°C
Glass Tube Joint Strength>25MPa fused interface tensile resistance
Flow CompatibilitySupports 0.1–2.0mL/min standard analytical flow
Connector IntegrationFused glass tubes with zero-dead-volume interface
2. Chemical Properties
Material Purity≥99.98% SiO2 fused quartz
Acid/Base ResistanceStable from pH 1 to pH 14
Organic Solvent CompatibilityCompatible with >90% analytical solvents
Leachable Metal Content<1ppb for transition metal ions
Etching Resistance>6 months in 1M HCl/HNO3 without transmittance loss
3. Optical Properties
Wavelength Range190nm to 2500nm (UV–VIS–NIR)
Background Fluorescence<0.002 AU @ 220nm excitation
Transmission @220nm>80%
Refractive Index @589.3nm1.458
Optical Window Quality60–40 scratch–dig; UV-grade optical polish

Size Chart

14μl Quartz Fluorescence Flow Cuvette for Ultralow Volume Applications
ModelDescriptionPath LengthVolumeOutline Dimension
AT-BSM-801214μl Quartz Fluorescence Flow Cuvette for Ultralow Volume Applications0.6mm14μl12.5×12.5x25mm
700μl Quartz Fluorescence Flow Cell with Four-Sided Optical Transmission
ModelDescriptionPath LengthVolumeOutline Dimension
AT-BSM-8023700μl Quartz Fluorescence Flow Cell with Four-Sided Optical Transmission2mm700μl12.5×4.5x45mm
1.5ml Quartz Fluorescence Flow Cuvette with Circular Chamber
ModelDescriptionPath LengthVolumeOutline Dimension
AT-BSM-80141.5ml Quartz Fluorescence Flow Cuvette with Circular Chamber10mm1.5ml12.5×12.5x25mm
3.5ml Quartz Fluorescence Flow Cell with Glass Tube, Dual-Sided Transmission (Small Tube)
ModelDescriptionPath LengthVolumeOutline Dimension
AT-BSM-80013.5ml Quartz Fluorescence Flow Cell with Glass Tube, Dual-Sided Transmission (Small Tube)10mm3.5ml12.5×12.5x45mm
3.5ml Quartz Fluorescence Flow Cell with Glass Tube, Dual-Sided Transmission (Large Tube)
ModelDescriptionPath LengthVolumeOutline Dimension
AT-BSM-8001-13.5ml Quartz Fluorescence Flow Cell with Glass Tube, Dual-Sided Transmission (Large Tube)10mm3.5ml12.5×12.5x45mm
3.5ml Quartz Fluorescence Flow Cell with Glass Tube, Four-Sided Optical Access (Small Tube)
ModelDescriptionPath LengthVolumeOutline Dimension
AT-BSM-8001-23.5ml Quartz Fluorescence Flow Cell with Glass Tube, Four-Sided Optical Access (Small Tube)10mm3.5ml12.5×12.5x45mm
4ml Quartz Fluorescence Flow Cuvette Cell with Elongated Body Design
ModelDescriptionPath LengthVolumeOutline Dimension
AT-BSM-8031-24ml Quartz Fluorescence Flow Cuvette with Elongated Body Design10mm4ml13x13x45mm
16ml Quartz Fluorescence Flow Cell Cuvette for Large Volume Analysis
ModelDescriptionPath LengthVolumeOutline Dimension
AT-BSM-803116ml Quartz Fluorescence Flow Cell Cuvette for Large Volume Analysis10mm16ml43x43x13mm
Note: We offer custom specifications to meet your specific requirements. Contact our engineering team for consultation.

TOQUARTZ® Solving Challenges in Spectroscopic Analysis with Quartz Fluorescence Flow‑Through Cell with Glass Tube Connectors

Quartz Fluorescence Flow-Through Cell in HPLC Detection Systems

Post-column fluorescence detection in HPLC requires sustained, high-sensitivity signal acquisition under dynamic flow. However, standard flow cells often suffer from microbubble interference, background fluorescence, and unstable tube connections — leading to baseline drift, reduced peak resolution, and poor reproducibility in low-concentration assays.

Key Advantages

TOQUARTZ® solution

A pharmaceutical CRO in Germany experienced peak tailing and signal noise when detecting a 25 ng/mL impurity in cefotaxime using standard PTFE-capped flow cells. After switching to TOQUARTZ® flow-through cells with integrated glass connectors, background interference was reduced by 72%, and signal-to-noise ratio increased by 38%, enabling quantification below 10 ng/mL with consistent reproducibility over 300+ injections.

Quartz Fluorescence Flow-Through Cell for Environmental Analysis

In environmental monitoring, continuous analysis of acidic, alkaline, and organic-laden samples demands both optical clarity and chemical resilience. Traditional cells with bonded plastic or glass caps often degrade under prolonged exposure to pH-extreme or UV-active compounds, resulting in erratic baselines and frequent cell replacement.

Key Advantages

TOQUARTZ® solution

A coastal water quality lab in South Korea reported optical window etching and fluorescence instability every 4–6 weeks due to acid sulfide samples. With TOQUARTZ® flow-through cells, they operated for over 9 months without degradation, reducing maintenance costs by 87% and improving baseline stability in trace PAH analysis.

Quartz Fluorescence Flow-Through Cell in Research Applications

Advanced fluorescence research frequently requires non-standard cuvette geometries—such as multiple detection angles, unique chamber volumes, or atypical tube orientations. Generic flow cells often lack the optical adaptability and interface precision needed for novel instrument configurations or time-resolved experiments.

Key Advantages

TOQUARTZ® solution

A fluorescence lifetime spectroscopy team at a UK university required a 3-window flow cell with a vertical outlet for dual-angle detection and inline quenching. TOQUARTZ® designed a tailored 10 × 5 mm cell with lateral and top-side fused glass ports. Their system achieved <2% temporal jitter and a 15% increase in photon recovery at 430 nm — outperforming their previous commercial setup.

Customization Services for Your Specific Applications

TOQUARTZ® offers specialized customization options for the quartz fluorescence flow-through cell with glass connectors to meet your exact analytical requirements. Our engineering team works directly with you to design and manufacture cells that integrate seamlessly with your systems.

Dimensional Customization

Flow Design Modifications

Interface Adaptations

Product Usage Guide for Optimal Performance

Proper handling, installation, and maintenance of your quartz fluorescence flow-through cell ensures optimal performance and extended service life. Follow these guidelines to maximize measurement quality and cell longevity.

Installation & Connection

Troubleshooting Common Issues

Maintenance & Storage

Operation Best Practices

Need Engineering Support for Your Quartz Fluorescence Flow-Through Cell Application?

Our technical team provides free consultation to help you
select or customize the right quartz fluorescence flow-through cell with glass connectors for your specific analytical requirements.

Why Partner with TOQUARTZ

Direct Factory Advantage

As a direct manufacturer, we can cut out the numerous intermediate links.

Engineering Expertise

Technical team guides clients from material selection to design optimization, translating specs into deliverables.

Flexible Manufacturing

Handling standard & custom orders via small-batch expertise and prototyping rigor to meet urgent deadlines.

Quality
Assurance

Pre-shipment 3-step validation:
1. dimensional accuracy,
2. material purity ,
3. performance thresholds

Global Supply Chain

Reliable global logistics to industrial hubs (DE/US/JP/KR priority) with trackable milestones.

FAQ

Q: Why is a 4-sided transparent body important in a Quartz Fluorescence Flow‑Through Cell with Glass Tube Connector?

A: The 4-sided transparent quartz design enables multi-angle excitation and emission, essential for flexible fluorescence detection geometries. It allows both traditional 90° and front-face collection setups. This increases compatibility with various spectrofluorometers and dual-mode instruments. It also improves photon collection efficiency in low-signal applications.

A: Unlike plastic caps, the fused glass tube connectors provide a chemically inert and thermally stable interface. This minimizes fluorescence background and prevents degradation in aggressive solvents or elevated temperatures. The seamless fusion ensures leak-free performance at high sensitivity detection levels. It also supports longer service life under continuous flow conditions.

A: Yes. Its internal geometry is optimized to minimize microbubble formation and turbulence. The inlet/outlet orientation and smooth bore transitions prevent dead volume. This reduces noise and baseline instability often caused by trapped air. Reliable performance is ensured even in flow rates under 1 mL/min.

A: Yes. The low-background and high optical clarity of the Quartz Fluorescence Flow‑Through Cell with Glass Tube Connector make it suitable for TRF. Its transparent sidewalls minimize signal loss and scattering. The leak-free flow path ensures consistent sample presentation during gated acquisition. Custom low-volume variants are available to improve temporal response.

A: Standard models with a 10 mm optical path offer internal volumes between 60–100 µL. The connector design minimizes dead volume at entry and exit points. This is essential for reducing sample dilution and improving response time. Smaller-volume custom versions down to 20 µL are also available for microfluidic integration.

Contact our engineering team for technical consultation and pricing. We’ll help you select the optimal specifications for your application requirements.

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