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5-Sided Quartz Fluorescence Cuvettes for Spectroscopy Systems -TOQUARTZ®

TOQUARTZ® 5-Sided Quartz Fluorescence Cuvettes with high-purity ≥99.98% (max. up to 99.995% SiO2) is designed for high-precision fluorescence spectroscopy applications requiring multi-angle excitation and detection. It offers excellent UV-VIS-NIR transmittance from 190nm to 4500nm, with no absorption peaks in the working range. The cuvette features five optically polished transparent windows, allowing flexible light path configurations for advanced optical systems.
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Features of 5-Sided Quartz Fluorescence Cuvettes

TOQUARTZ® 5-Sided Quartz Fluorescence Cuvettes combine precision engineering with high-purity materials to deliver exceptional optical performance for demanding laboratory applications. Each cuvette is manufactured to strict specifications to ensure consistent results in fluorescence spectroscopy and multi-angle analysis.

Material Purity

The high-purity quartz with SiO₂ content up to 99.995%, ensuring minimal impurities and maximum optical clarity for precise measurements in sensitive applications.

5 Optical Windows

Five polished transparent sides allow for multi-angle excitation and detection, enabling versatile experimental setups and advanced optical measurements.

Broad Spectral Range

Excellent transmittance from 200nm to 2500nm with no absorption peaks, making these cuvettes ideal for UV, visible, and near-infrared applications.

Chemical Resistance

Superior resistance to acids, bases, salts, and fluoride gases makes these cuvettes ideal for aggressive chemical environments and corrosive samples.

Multi-Directional Detection 5-Sided Quartz Fluorescence Cuvettes for Anisotropy Studies
TOQUARTZ® 5-Sided Quartz Fluorescence Cuvettes

Technical Specifications & Dimensions of 5-Sided Quartz
Fluorescence Cuvettes

TOQUARTZ® 5-sided quartz fluorescence cuvettes are manufactured to precise specifications to ensure optimal performance in your analytical applications. The following technical data provides comprehensive information about the physical, chemical, and optical properties.

Technical Specifications

PropertySpecification
1. Physical Properties
Material CompositionHigh-purity quartz (≥99.995% SiO₂)
Optical Windows5 sides polished
Surface Flatness≤λ/10
Dimension Tolerance±0.1mm standard (±0.05mm available)
Density2.2 g/cm³
Hardness (Mohs)5.5 – 6.5
Thermal Expansion Coefficient5.5 × 10-7/℃
2. Chemical Properties
Chemical ResistanceExcellent resistance to acids, bases, salts and fluoride gases
Water Absorption≤0.01%
Helium PermeabilityNegligible at room temperature
3. Optical Properties
Transmission Range190-4500nm (UV-VIS-NIR)
Refractive Index (589.3nm)146%
UV Transmission (254nm)>80% at 10mm thickness
Surface Quality80-50 scratch-dig

Size Chart

350μl 5-Sided Quartz Fluorescence Cuvette
ModelDescriptionPath
Length
VolumeOutline Dimension
AT-BSM-6028350μl 5-Sided Quartz Fluorescence Cuvette1mm350μl12.5×3.5x45mm
700μl 5-Sided Quartz Fluorescence Cuvette
ModelDescriptionPath
Length
VolumeOutline Dimension
AT-BSM-6028-1700μl 5-Sided Quartz Fluorescence Cuvette2mm700μl12.5×4.5x45mm
1750μl 5-Sided Quartz Fluorescence Cuvette
ModelDescriptionPath
Length
VolumeOutline Dimension
AT-BSM-6028-21750μl 5-Sided Quartz Fluorescence Cuvette5mm1750μl12.5×7.5x45mm
3500μl 5-Sided Quartz Fluorescence Cuvette
ModelDescriptionPath
Length
VolumeOutline Dimension
AT-BSM-6028-33500μl 5-Sided Quartz Fluorescence Cuvette10mm3500μl12.5×12.5x45mm
7000μl 5-Sided Quartz Fluorescence Cuvette
ModelDescriptionPath
Length
VolumeOutline Dimension
AT-BSM-6028-47000μl 5-Sided Quartz Fluorescence Cuvette20mm7000μl12.5×22.5x45mm
10500μl 5-Sided Quartz Fluorescence Cuvette
ModelDescriptionPath
Length
VolumeOutline Dimension
AT-BSM-6028-510500μl 5-Sided Quartz Fluorescence Cuvette30mm10500μl12.5×32.5x45mm
14000μl 5-Sided Quartz Fluorescence Cuvette
ModelDescriptionPath
Length
VolumeOutline Dimension
AT-BSM-6028-614000μl 5-Sided Quartz Fluorescence Cuvette40mm14000μl12.5×42.5x45mm
17500μl 5-Sided Quartz Fluorescence Cuvette
ModelDescriptionPath
Length
VolumeOutline Dimension
AT-BSM-6028-717500μl 5-Sided Quartz Fluorescence Cuvette50mm17500μl12.5×52.5x45mm
35000μl 5-Sided Quartz Fluorescence Cuvette
ModelDescriptionPath
Length
VolumeOutline Dimension
AT-BSM-6028-717500μl 5-Sided Quartz Fluorescence Cuvette50mm17500μl12.5×52.5x45mm
Note: We offer custom specifications to meet your specific requirements. Contact our engineering team for consultation.

TOQUARTZ® Solutions for Precision Spectroscopy Challenges with 5-Sided Quartz Fluorescence Cuvettes

5-Sided Quartz Fluorescence Cuvette in Time-Resolved Fluorescence Lifetime Imaging

In biomedical imaging, FLIM is used to measure the decay time of fluorescence signals, which provides insights into molecular environments, such as pH, ion concentration, or protein interactions. These measurements often require simultaneous excitation and detection from orthogonal angles to minimize photobleaching and maximize signal-to-noise ratio. Standard 2- or 4-window cuvettes limit the flexibility of optical paths, forcing researchers to reposition samples or compromise on detection geometry.

Key Advantages

TOQUARTZ® solution

A biomedical imaging lab at a German university struggled with 15% signal loss due to repeated sample repositioning in FLIM assays. After switching to TOQUARTZ® 5-sided cuvettes, they achieved fixed orthogonal excitation/detection, reducing photobleaching by 28% and improving decay curve resolution by 21%, enabling more accurate pH mapping in live-cell environments.

5-Sided Quartz Fluorescence Cuvette in Quantum Dot Emission Profiling for Display Technology

Quantum dots (QDs) are used in next-generation display panels due to their tunable fluorescence. Characterizing their emission profiles requires multi-angle spectral analysis to evaluate anisotropic emission behavior and angular color shift. Traditional cuvettes restrict the ability to collect emission data from multiple sides simultaneously, leading to incomplete spectral mapping and inaccurate modeling of QD behavior in real-world applications.

Key Advantages

TOQUARTZ® solution

A Korean display materials company faced a 22% mismatch between lab and panel emission profiles due to limited angular data. Using TOQUARTZ® 5-sided cuvettes, they captured full-angle emission in a single run, reducing calibration error to 4.8% and cutting QD formulation cycles from 5 to 3 iterations.

5-Sided Quartz Fluorescence Cuvette in Fluorescence Polarization Assays for Drug Discovery

Fluorescence polarization (FP) assays are widely used in high-throughput screening (HTS) for drug discovery to study molecular binding events. These assays require precise control of excitation and emission polarization angles, often needing multiple detection axes to validate anisotropy and eliminate artifacts. Standard cuvettes limit polarization configurations, leading to false positives or inconsistent results.

Key Advantages

TOQUARTZ® solution

A U.S.-based pharmaceutical company reported 14% false positives in FP assays due to limited polarization configurations. After adopting TOQUARTZ® 5-sided cuvettes, they implemented dual-axis detection in their HTS system, reducing false positives to 3.2% and increasing screening throughput by 25% across 96-well formats.

TOQUARTZ® Customization Options for5-Sided Quartz
Fluorescence Cuvettes

TOQUARTZ® offers comprehensive customization services for our 5-sided quartz fluorescence cuvettes to meet your specific experimental requirements. Our engineering team works closely with you to design and manufacture optical cells that precisely match your specifications.

Dimensional Customization

TOQUARTZ® support precise dimensional adjustments to fit unique instrument holders or sample volumes.

Optical Window Configuration

We offer flexible window arrangements to support complex excitation and detection geometries.

Integration Compatibility

We ensure cuvette compatibility with your existing instruments and automation systems.

Usage and Care Guidelines

Proper handling, cleaning, and storage of your 5-sided quartz fluorescence cuvette will ensure optimal performance and extend its operational life. The following guidelines will help you maintain the optical clarity and precision of your TOQUARTZ® cuvettes.

Handling Instructions

Cleaning Procedures

Storage Recommendations

Lifetime Extension Tips

Need Expert Guidance for Your 5-Sided Quartz Fluorescence Cuvette Application?

Our engineering team provides free technical consultation to
help you select the optimal cuvette configuration for your specific research or 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: What advantages does a 5-Sided Quartz Fluorescence Cuvette offer in multi-angle fluorescence detection?

A: A 5-Sided Quartz Fluorescence Cuvette allows simultaneous excitation and emission collection from multiple directions. This is particularly useful in anisotropy, FLIM, or quantum dot studies where angular resolution is critical. The fifth window enables orthogonal or diagonal light paths without repositioning the sample. This improves signal fidelity and reduces alignment errors.

A: Four transparent sides allow flexible placement of polarizers and detectors at multiple angles. This is essential for accurate fluorescence polarization measurements and anisotropy calculations. It eliminates the need to rotate the cuvette, reducing mechanical error. The design supports dual-axis polarization validation.

A: The additional optical windows enable optimized excitation and emission geometry, maximizing photon collection. This is critical when working with low-abundance fluorophores or weakly emitting samples. The high-purity quartz minimizes background autofluorescence. Together, these features enhance detection sensitivity.

A: The cuvette can withstand high temperatures, but gradual heating and cooling are recommended to avoid thermal shock. The screw cap helps maintain internal pressure and prevents evaporation. For flow-through versions, ensure tubing materials are also temperature-compatible. Always pre-equilibrate the cuvette to avoid condensation on optical surfaces.

A: While the cuvette supports flow-through design, extremely high flow rates may cause turbulence and signal instability. Ensure laminar flow by using appropriate tubing and pump settings. The optical windows are stable under moderate pressure. For high-pressure systems, reinforced cuvette versions are available upon request.

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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