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Open-Access Quartz Fluorescence Cuvette without Caps for Spectral Analysis -TOQUARTZ®

TOQUARTZ® high-purity UV-grade quartz fluorescence cuvette without cap features excellent optical transparency across 190–2500nm wavelength range. Manufactured with ≥99.99% SiO₂ (up to 99.995%) for precision spectroscopy applications. Available in multiple path lengths from 3mm to 50mm with standard and custom dimensions.
No MOQ
Custom Design
Factory Direct
Tech Support

Features of Quartz Fluorescence Cuvette without Caps

TOQUARTZ® quartz fluorescence cuvettes without cap are engineered for high-performance spectroscopic analysis, providing superior optical properties and precision measurements for scientific research and analytical applications.

High-Purity Material

Manufactured from ultra-pure fused quartz (≥99.99% SiO₂, up to 99.995%) with minimal trace elements, providing low autofluorescence for sensitive detection applications.

Open-Top Design

Convenient sample access for quick loading, mixing, titration, and real-time reaction monitoring. Ideal for dynamic experiments and rapid sample changes.

Optical Properties

Exceptional transparency from UV to NIR range (190-2500nm) with no absorption peaks, ensuring accurate spectroscopic measurements across the entire spectrum.

Chemical Resistance

Exceptional resistance to acids, bases, and corrosive chemicals (except HF). Suitable for aggressive samples and harsh laboratory environments without contamination.

Quartz Fluorescence Cuvette without Caps for Continuous Monitoring
TOQUARTZ® Quartz Fluorescence Cuvette without Caps

Technical Specifications & Dimensions of Quartz Fluorescence Cuvette without Caps

TOQUARTZ® fluorescence cuvettes without cap are manufactured to precise specifications to ensure consistent performance in spectroscopic applications across research, analysis, and quality control environments.

Technical Specifications

ParameterSpecification
1. Physical Properties
MaterialFused Quartz (SiO₂)
Purity≥99.99% (up to 99.995%)
Density2.2 g/cm³
Tensile Strength≥350 MPa
Thermal Expansion Coefficient5.5×10-7/℃
Thermal Conductivity1.3 W/m·K
2. Chemical Properties
Chemical ResistanceExcellent (except HF)
Acid ResistanceHigh (pH 1-14)
Water AbsorptionNil
3. Optical Properties
Transmission Range190-2500nm
Refractive Index (at 589.3nm)1.4585
UV Cutoff≤185nm
Surface QualityOptically polished, scratch-free
Bubble ContentClass 0 (bubble-free)

Size Chart

2100μl Quartz Fluorescence Cuvette without Cap
ModelDescriptionPath
Length
Volume
AT-BSM-6002-12100μl Quartz Fluorescence Cuvette without Cap3mm2100μl
3500μl Quartz Fluorescence Cuvette without Cap
ModelDescriptionPath
Length
Volume
AT-BSM-6002-23500μl Quartz Fluorescence Cuvette without Cap5mm3500μl
5600μl Quartz Fluorescence Cuvette without Cap
ModelDescriptionPath
Length
Volume
AT-BSM-6002-35600μl Quartz Fluorescence Cuvette without Cap8mm5600μl
7000μl Quartz Fluorescence Cuvette without Cap
ModelDescriptionPath
Length
Volume
AT-BSM-6002-47000μl Quartz Fluorescence Cuvette without Cap10mm7000μl
53000μl Quartz Fluorescence Cuvette without Cap Path Length 20mm
ModelDescriptionPath
Length
VolumeOutline Dimension
AT-BSM-600953000μl Quartz Fluorescence Cuvette without Cap Path Length 20mm20mm53000μl24x54x55mm
53000μl Quartz Fluorescence Cuvette without Cap Path Length 50mm
ModelDescriptionPath
Length
VolumeOutline Dimension
AT-BSM-6009-153000μl Quartz Fluorescence Cuvette without Cap Path Length 50mm50mm53000μl24x54x55mm
Note: We offer custom specifications to meet your specific requirements. Contact our engineering team for consultation.

Solving Laboratory Challenges with TOQUARTZ®
Open-Top Fluorescence Cuvettes

Quartz Fluorescence Cuvette without Cap in DNA Intercalation Dye Screening for Genetic Toxicology

In genetic toxicology labs, fluorescence-based DNA intercalation assays are used to evaluate genotoxicity of chemical compounds. These assays involve adding intercalating dyes (e.g., ethidium bromide, SYBR Green) to DNA samples and measuring fluorescence intensity changes. During the assay, precise timing of dye addition and mixing is critical to avoid signal decay or photobleaching. Capped cuvettes delay reagent addition and increase the risk of inconsistent timing across samples.

Key Advantages

TOQUARTZ® solution

A genetic toxicology lab in Osaka reported inconsistent fluorescence signals (CV >12%) due to staggered dye addition using capped cuvettes. After switching to TOQUARTZ® open-top cuvettes, they achieved CV <3.5% across 96 samples. The ability to inject SYBR Green simultaneously into all cuvettes reduced timing deviation and improved assay reproducibility by 4×.

Quartz Fluorescence Cuvette without Cap for Fluorescent Nanoparticle Dispersion Stability Testing

In nanomaterials R&D, researchers often evaluate the dispersion stability of fluorescent nanoparticles (e.g., quantum dots, carbon dots) in various solvents or biological buffers. These tests require frequent agitation, pH adjustment, or surfactant addition during fluorescence monitoring. Capped cuvettes restrict access and are prone to pressure buildup during stirring or heating, leading to sample loss or cuvette damage.

Key Advantages

TOQUARTZ® solution

A nanomaterials lab in Dresden observed 2–3 cuvette failures per week due to pressure cracks during heated dispersion tests using capped cells. After adopting TOQUARTZ® open-top cuvettes, failure rate dropped to 0% over 3 months. Real-time surfactant addition during fluorescence monitoring also improved dispersion half-life measurement accuracy by 22%.

Quartz Fluorescence Cuvette without Cap in Chlorophyll Fluorescence Quenching Studies for Plant Physiology

In plant physiology research, chlorophyll fluorescence quenching is used to study photosynthetic efficiency under stress conditions. Researchers often need to inject stress-inducing agents (e.g., salt, herbicides) into leaf extract samples during real-time fluorescence monitoring. Capped cuvettes hinder rapid injection and may trap air bubbles, distorting fluorescence signals.

Key Advantages

TOQUARTZ® solution

A plant physiology team in Alberta reported 15% signal distortion due to air bubbles trapped in capped cuvettes during chlorophyll quenching assays. Switching to TOQUARTZ® open-top cuvettes enabled vertical pipetting and real-time salt injection, reducing signal noise by 70% and improving NPQ (non-photochemical quenching) measurement consistency across 12 plant species.

TOQUARTZ® Customization Options for Quartz Fluorescence Cuvette without Caps

TOQUARTZ® offers tailored solutions for Quartz Fluorescence Cuvette without Cap to meet the specific dimensional, functional, and integration needs of scientific and industrial users.

Dimensional Customization

TOQUARTZ® support flexible geometry adjustments to match your instrument or assay setup.

Material Purity Selection

We offer material options to match purity, UV transparency, and chemical resistance needs.

Custom Design Process

Our engineering team supports you through every step of custom Quartz Fluorescence Cuvette without Cap development.

Usage and Care Guidelines

Proper handling, maintenance, and storage of quartz fluorescence cuvettes without caps ensures optimal performance and extended service life, helping you obtain reliable results while protecting your investment.

Proper Handling

Cleaning Procedure

Storage Recommendations

Usage Precautions

Need Engineering Support for Your Quartz Fluorescence Cuvette Project?

Our technical team provides free consultation on material selection, design optimization, and application-specific 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: How does the open-top design affect sample evaporation during fluorescence analysis?

A: The Quartz Fluorescence Cuvette without Cap does not prevent evaporation, especially during long-duration assays or under heating. For short-term fluorescence measurements, evaporation is minimal and manageable. If needed, temporary sealing with lab film or custom lids is possible. Always monitor sample volume in high-temperature or long-read protocols.

A: The open design of the Quartz Fluorescence Cuvette without Cap does expose the sample to ambient air. However, in controlled lab environments, contamination risk is minimal. For sensitive assays, users can cover the top with sterile film or use laminar flow hoods. Proper handling protocols are recommended.

A: The Quartz Fluorescence Cuvette without Cap maintains a fixed optical path length through its precision-machined geometry. The absence of a cap does not affect light alignment. Optical surfaces are polished to ensure minimal scattering. Consistent path length is maintained across batches.

A: Yes, the open-top design of the Quartz Fluorescence Cuvette without Cap allows rapid reagent addition without removing any closure. This is especially useful in time-sensitive assays such as DNA intercalation or enzyme kinetics. It minimizes delay between reagent mixing and fluorescence reading. This improves reproducibility across multiple samples.

A: No, the Quartz Fluorescence Cuvette without Cap is made from ultra-pure quartz with minimal autofluorescence. The absence of a cap does not introduce background signal. Optical surfaces are polished to reduce stray light. It is suitable for low-signal fluorescence detection.

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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