Electrochemical Workstations | Sciencetech Inc.

Electrochemical Workstations

Zahner Electrochemical Instruments

High Quality Expert Instruments

A Potentiostat is used in with a three electrode cell to perform a myriad of electrochemical experiments, ranging from measuring half-cell potentials, impedance spectroscopy, redox chemistry, and chemical phenomena. These experiments are relevant for corrosion studies, battery chemistry development, materials characterization and more. 

Sciencetech is pleased to represent Zahner in Canada. With 40 years of experience in the field, Zahner’s high-quality electrochemical instruments are backed by years of expertise. Zahner’s systems are an excellent choice for many applications such as corrosion testing, photoelectrochemistry, fuel cell testing, and Li-ion battery testing .

Zahner potentiostats are designed to provide the highest level of performance in electrochemical experiments and have been proven to be precise and versatile devices for any kind of electrochemical application. Zahner potentiostats can be equipped with multiple plug and play add-on cards, which introduce additional analog and digital input/output signals. This modular function makes Zahner's potentiostats very flexible and allows the possibility to customize the potentiostat to suit the needs of its users. 

Zahner Zennium X

Zennium

Electrochemical Workstation


The core of the Zahner instrumentation is an electrochemical workstation. With the Zennium, Zennium E, Zennium-pro, and Zennium-X, there is a workstation available to support the most advanced techniques, as well as a cost-effective option for more straightforward applications. Supported by the Thales software, many different techniques can be accessed from the same software interface, making the Zahner line convenient and easy to use.

With modular components to add on, accessories for your specific technique can be simply and easily added to your workstation, customizing your setup for your specific requirements.

CIMPS Instruments

Photoelectrochemistry


For photoelectrochemistry, the CIMPS instruments are a powerful choice. With a light source included and kept stable by a control loop, considerations such as non-linearity, ageing, and temperature drift no longer need be considered. The package includes the light source (driven by an included slave potentiostat), optical bench, photoelectrochemical cell, and all required software. For QE and IPCE measurements, consider the CIMPS-QE/IPCE package, including all necessary components to collect QE and IPCE measurements from your sample.

The Zahner CIMPS measurement system has been designed with focus on the special demands of dynamic photo-electric investigations like IMPS and IMVS, popular today for instance in alternative solar cell research. Besides all traditional electrochemical investigations supported by THALES - like impedance measurements, cyclic voltammetry, current-potential curves, etc. - now mixed photo electric transfer functions, known as Intensity Modulated Photo Spectra(IMPS/IMVS), can be measured. 

Zahner CIMPS

Electrochemical Workstation Models

Product Comparison

With the following electrochemical workstations available as a base, you can perform many measurements with the workstation alone or choose add-ons to customize your capabilities for your specific requirements:

Contact Us Today
Get more information or request a quote.
X

Product Category

View Filter

x
Clear all x

Filter Option



Lightsource LS 1200
-Dom. wavelength: 1200 nm
-Max. input current: 1200 mA

For pricing information, please request a quotation from sales@sciencetech-inc.com.
Lightsource LS 1200
-Dom. wavelength: 1200 nm
-Max. input current: 1200 mA

For pricing information, please request a quotation from sales@sciencetech-inc.com.
2,472.00 2472.0 USD
Price Valid only in North America


Photo-electrochemical cell
-Front window 20 mm diam., quartz
-Solid material: Teflon
-Ag/AgCl reference electrode & Pt counter-electrode
-Cable-set
-Dimensions: 60 x 25 x 80 mm; Volume: 7.9 cm³
-For photocurrent spectroscopy with TLS03, PECC-1 calibration is required

For pricing information, please request a quotation from sales@sciencetech-inc.com.
Photo-electrochemical cell
-Front window 20 mm diam., quartz
-Solid material: Teflon
-Ag/AgCl reference electrode & Pt counter-electrode
-Cable-set
-Dimensions: 60 x 25 x 80 mm; Volume: 7.9 cm³
-For photocurrent spectroscopy with TLS03, PECC-1 calibration is required

For pricing information, please request a quotation from sales@sciencetech-inc.com.
2,121.00 2121.0 USD
Price Valid only in North America


Photo-Electrochemical Cell

The PECC-1/PECC-2 are specially tailored for testing electrode materials with photoelectrochemical techniques. Several mounting options for samples offer flexibility for various tasks.

Front window 20 mm diam., BK7 or quartz
Solid material: Teflon
Ag/AgCl reference electrode & Pt counter-electrode
Cable set
Dimensions: 60 x 25 x 80 mm

For pricing information, please request a quotation from sales@sciencetech-inc.com.
Photo-Electrochemical Cell

The PECC-1/PECC-2 are specially tailored for testing electrode materials with photoelectrochemical techniques. Several mounting options for samples offer flexibility for various tasks.

Front window 20 mm diam., BK7 or quartz
Solid material: Teflon
Ag/AgCl reference electrode & Pt counter-electrode
Cable set
Dimensions: 60 x 25 x 80 mm

For pricing information, please request a quotation from sales@sciencetech-inc.com.
2,027.00 2027.0 USD
Price Valid only in North America


High Impedance Probe

The HiZ probe set is specially designed for high impedance measurements and raise the input impedance up to 1000 TΩ || 1 pF.

U- and I-probe come in two small boxes which can easily be placed near by the sample. By this, electrical noise artifacts are minimized. Typical applications are investigations on passive layers, oxydes, nitrides, dielectric films, ceramic substrates, low conductive electrolytes, lacquers, coatings, microelectrodes etc.
The HiZ Probe set is connected to the Probe I and the Probe E terminals of the IM6 or Zennium. No additional hardware is needed.

Input impedance: 5 pF//10 T (typ.)

For pricing information, please request a quotation from sales@sciencetech-inc.com.
High Impedance Probe

The HiZ probe set is specially designed for high impedance measurements and raise the input impedance up to 1000 TΩ || 1 pF.

U- and I-probe come in two small boxes which can easily be placed near by the sample. By this, electrical noise artifacts are minimized. Typical applications are investigations on passive layers, oxydes, nitrides, dielectric films, ceramic substrates, low conductive electrolytes, lacquers, coatings, microelectrodes etc.
The HiZ Probe set is connected to the Probe I and the Probe E terminals of the IM6 or Zennium. No additional hardware is needed.

Input impedance: 5 pF//10 T (typ.)

For pricing information, please request a quotation from sales@sciencetech-inc.com.
1,651.00 1651.0 USD
Price Valid only in North America


The FRA-Probe interfaces a third-party potentiostat or an electronic load to a ZENNIUM series potentiostat. The probe allows ZENNIUM potentiostats to modulate the current or voltage signal of third party potentiostats and carry out EIS measurements. The FRA-Probe allows ZENNIUM users to expand the power range to unlimited scales enabling EIS measurements on extreme samples like full stack fuel cells.

The third party potentiostat or the electronic load must provide an analog control input and analog signal outputs for use with the FRA-Probe.

The FRA-Probe interfaced setup can also be incorporated in a Python lab environment and can be controlled remotely.

For pricing information, please request a quotation from sales@sciencetech-inc.com.
The FRA-Probe interfaces a third-party potentiostat or an electronic load to a ZENNIUM series potentiostat. The probe allows ZENNIUM potentiostats to modulate the current or voltage signal of third party potentiostats and carry out EIS measurements. The FRA-Probe allows ZENNIUM users to expand the power range to unlimited scales enabling EIS measurements on extreme samples like full stack fuel cells.

The third party potentiostat or the electronic load must provide an analog control input and analog signal outputs for use with the FRA-Probe.

The FRA-Probe interfaced setup can also be incorporated in a Python lab environment and can be controlled remotely.

For pricing information, please request a quotation from sales@sciencetech-inc.com.
1,441.00 1441.0 USD
Price Valid only in North America


The EPC42 is the link between the ZENNIUM potentiostat and the power and auxiliary potentiostats or electronic loads. One EPC42 card can address up to four PP/EL/XPOT devices sequentially. Up to four EPC42 cards can be installed in a ZENNIUM X and ZENNIUM PRO potentiostat. In total, a ZENNIUM series potentiostat can be simultaneously connected with up to 16 external PPs/ELs, which can be controlled sequentially.

-Control up to 16 external potentiostats and loads

For pricing information, please request a quotation from sales@sciencetech-inc.com.
The EPC42 is the link between the ZENNIUM potentiostat and the power and auxiliary potentiostats or electronic loads. One EPC42 card can address up to four PP/EL/XPOT devices sequentially. Up to four EPC42 cards can be installed in a ZENNIUM X and ZENNIUM PRO potentiostat. In total, a ZENNIUM series potentiostat can be simultaneously connected with up to 16 external PPs/ELs, which can be controlled sequentially.

-Control up to 16 external potentiostats and loads

For pricing information, please request a quotation from sales@sciencetech-inc.com.
1,334.00 1334.0 USD
Price Valid only in North America


Zahner's TEMP-U2 enables the temperature measurements by direct connection of two thermocouples. Two additional voltage input channels are available and provide the opportunity to record additional variables during the electrochemical measurement. For example, the voltage channels can be configured with a pH electrode or a pressure chamber to record the pH value or chamber pressure during the measurement.

Unless otherwise requested, the TEMP-U is delivered pre-configured for two NiCrNi (type K) thermocouples and two voltage inputs in the range of ±8 V.

-2 thermocouple inputs
-2 analog voltage inputs

For pricing information, please request a quotation from sales@sciencetech-inc.com.
Zahner's TEMP-U2 enables the temperature measurements by direct connection of two thermocouples. Two additional voltage input channels are available and provide the opportunity to record additional variables during the electrochemical measurement. For example, the voltage channels can be configured with a pH electrode or a pressure chamber to record the pH value or chamber pressure during the measurement.

Unless otherwise requested, the TEMP-U is delivered pre-configured for two NiCrNi (type K) thermocouples and two voltage inputs in the range of ±8 V.

-2 thermocouple inputs
-2 analog voltage inputs

For pricing information, please request a quotation from sales@sciencetech-inc.com.
1,328.00 1328.0 USD
Price Valid only in North America


The MIO addon card provides four analog output channels with a voltage range of ±10 V. In addition the MIO card is also equipped with four isolated digital input and four isolated digital relay output channels. The MIO addon card is used to receive and send trigger signals between the ZENNIUM potentiostats and a third party device.

-Remote Integration possible
-Can be controlled in Thales or script software

For pricing information, please request a quotation from sales@sciencetech-inc.com.
The MIO addon card provides four analog output channels with a voltage range of ±10 V. In addition the MIO card is also equipped with four isolated digital input and four isolated digital relay output channels. The MIO addon card is used to receive and send trigger signals between the ZENNIUM potentiostats and a third party device.

-Remote Integration possible
-Can be controlled in Thales or script software

For pricing information, please request a quotation from sales@sciencetech-inc.com.
1,200.00 1200.0 USD
Price Valid only in North America
Copyright © Sciencetech