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High Transparency Quartz Square Photoelectrochemical Cell with Monolithic Ground Construction and PTFE Lid

Standard & Customized Electrochemical Cells

High Transparency Quartz Square Photoelectrochemical Cell with Monolithic Ground Construction and PTFE Lid

Item Number : PL-DJ04

Price varies based on specs and customizations


Material
High-Transparency Quartz
Light Transmittance
≥ 95%
Max Temperature (Body)
900°C
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Product Overview

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This premium optical reaction vessel is designed for advanced research in photoelectrochemistry, spectroscopy, and analytical chemistry. Built with a high-transparency quartz cell body, this unit provides exceptional light transmission and mechanical durability for demanding B2B laboratory applications.

Ideal for universities, industrial research and development departments, and high-performance testing centers, the equipment facilitates simultaneous optical monitoring and electrochemical analysis. It supports versatile experimental setups across diverse industries, from renewable energy research to semiconductor manufacturing.

With a monolithic construction engineered to resist extreme thermal and chemical environments, this vessel ensures reliable, repeatable, and precise analytical results. Researchers can operate under challenging experimental conditions with complete confidence in the physical and structural integrity of the system.

Key Features

  • Monolithic Ground Quartz Construction: Unlike low-tier cells that rely on chemical adhesive bonding, this high-performance unit is fabricated through an advanced monolithic grinding and polishing process. This physical machining method yields a seamless, single-piece cell body, entirely eliminating the risk of adhesive degradation, contamination of the test medium, or mechanical separation when exposed to harsh solvents or extreme temperature fluctuations.
  • Exceptional Optical Transmittance: The optical-grade quartz walls deliver a guaranteed light transmission rate of no less than 95% across critical UV-Vis-NIR wavelengths. This ultra-high transparency minimizes photon reflection, scattering, and absorption, ensuring that the optical energy directed at your sample remains unattenuated for precise photoelectrochemical quantum efficiency measurements.
  • High-Temperature Thermal Resilience: The pure quartz cell body features an impressive maximum temperature limit of 900°C. This allows researchers to perform high-temperature electrochemical reactions or execute rigorous dry-heat sterilization processes to eliminate organic residues. (Note: Polymer accessories, including the PTFE lid, must be fully detached from the quartz body before exposing the cell to temperatures exceeding their specific thermal thresholds).
  • Chemically Inert PTFE Lid: The vessel includes a premium polytetrafluoroethylene (PTFE) lid, precision-machined to resist strong acids, concentrated bases, and aggressive organic solvents. This lid acts as a secure cover to isolate the open-system bath, ensuring zero chemical contamination during prolonged laboratory runs.
  • Customizable CNC Port Configurations: Capitalizing on our advanced, end-to-end CNC machining capabilities, the PTFE lid can be customized with exact round or square ports according to your specific research design. Whether you require precise ports for working, counter, and reference electrodes, or specialized gas inlet/outlet lines, our machining center delivers perfect tolerances.
  • Flexible Salt Bridge Compatibility: To maintain stable reference potentials and isolate standard reference electrodes, the cell is engineered to seamlessly accommodate auxiliary salt bridges. It supports both fritted glass (sand core) salt bridges and Luggin capillary salt bridges, allowing users to tailor their electrochemical junction configuration to the viscosity and conductivity of their electrolytes.
  • Parallel Optical Windows: The square geometry features perfectly parallel, precision-ground optical faces that reduce optical refraction and beam distortion. This ensures a consistent, perpendicular path length for light beams, which is highly critical for quantitative UV-Vis spectroscopy, photoluminescence tracking, and accurate laser-induced excitation.

Applications

Application Description Key Benefit
Solar Energy & Photocatalytic Water Splitting Evaluation of photoanode materials and semiconductor photocatalysts under solar simulators to measure hydrogen evolution rates and photon-to-current conversion efficiency. High-transparency quartz walls (>95% transmittance) permit full-spectrum UV-Vis-NIR light penetration, facilitating maximum photo-excitation of the active catalyst.
Spectroelectrochemistry (SEC) Real-time monitoring of UV-Vis absorption spectral changes during dynamic electrochemical redox cycles to identify transient reaction intermediates and determine reaction pathways. Monolithic, adhesive-free construction prevents glue dissolution by organic solvents, avoiding baseline drift and optical interference during long-term scans.
Semiconductor Characterization Performing Photoelectrochemical Impedance Spectroscopy (PEIS), Mott-Schottky analysis, and flat-band potential determination of thin-film semiconductors and photo-electrodes. Highly parallel, polished optical windows eliminate refraction and beam distortion, ensuring a uniform light intensity profile across the electrode surface.
Corrosion & Electroanalytical Studies Qualitative and quantitative analysis of trace heavy metals, electrocatalytic processes, and corrosion inhibitors in highly acidic or aggressive electrolyte solutions. The combination of high-purity quartz and a chemically inert PTFE lid provides comprehensive chemical resistance, keeping the cell free from contamination.
Dye-Sensitized Solar Cell (DSSC) Characterization Measuring light-to-electricity conversion efficiency, electron transport dynamics, and dye regeneration kinetics under continuous or pulsed light bias. Customizable CNC-machined PTFE lid allows tight, organized routing of multiple working, counter, reference electrodes, and active gas purging lines.
Elevated Temperature Organic Synthesis Conducting electrochemically driven organic synthesis and catalytic reactions at elevated temperatures where traditional polymer cells fail. Quartz cell body tolerates temperatures up to 900°C, enabling high-temperature reactions and direct autoclave thermal sterilization after chemical runs.

Technical Specifications

Technical Parameter Specification / Feature (PL-DJ04) Specification / Feature (PL-DJ04-S)
Product Model Number PL-DJ04 PL-DJ04-S
System Configuration Open-System Architecture Sealed-System Architecture
Cell Body Material Optical-Grade High-Transparency Quartz Optical-Grade High-Transparency Quartz
Light Transmittance ≥ 95% (UV-Vis-NIR Spectra) ≥ 95% (UV-Vis-NIR Spectra)
Manufacturing Method Monolithic Ground & Polished (No Adhesive/Glue) Monolithic Ground & Polished (No Adhesive/Glue)
Maximum Operating Temperature 900°C (Quartz Cell Body Only) 900°C (Quartz Cell Body Only)
Lid Material High-Purity Polytetrafluoroethylene (PTFE) High-Purity Polytetrafluoroethylene (PTFE)
Lid Port Customization Customizable (Round/Square holes via CNC machining) Customizable (Round/Square holes via CNC machining)
Salt Bridge Integration Compatible with Fritted Glass (Sand Core) or Luggin Capillary Compatible with Fritted Glass (Sand Core) or Luggin Capillary
Sterilization Compatibility Autoclaving or Dry Heat (Ensure PTFE lid is removed) Autoclaving or Dry Heat (Ensure PTFE lid is removed)

Why Choose This Product

  • Superior Monolithic Quality: Our advanced grinding technology ensures that the cell body is fabricated as a single, homogenous quartz piece. This eliminates the chemical contamination, baseline drift, and catastrophic seal failures common with glued alternatives, offering unmatched longevity.
  • Precision Custom CNC Engineering: Unlike mass-produced off-the-shelf labware, KINTEK offers in-house CNC custom machining. We can drill precise round or square holes in the PTFE lid to perfectly match your laboratory's proprietary electrode dimensions and gas port arrangements.
  • Ultra-High Optical Accuracy: With guaranteed light transmittance exceeding 95%, this unit ensures minimal signal loss, providing B2B buyers, research institutes, and testing facilities with highly accurate, reproducible spectroelectrochemical data.
  • High-Temperature Versatility: Resisting temperatures up to 900°C, the cell body provides unique experimental flexibility, allowing high-temperature chemical reactions and robust sterilization routines that are impossible with standard cells.

For a personalized technical consultation, to discuss custom CNC lid port drilling patterns, or to receive a volume procurement quote for your laboratory, please contact KINTEK's technical sales department today.

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Product Datasheet

High Transparency Quartz Square Photoelectrochemical Cell with Monolithic Ground Construction and PTFE Lid

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Standard & Customized Electrochemical Cells


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