What is PD IEC/TS 62607-4-3 – Contact and coating resistivity measurements for nanomaterials about?
PD IEC/TS 62607-4-3 is an international standard that focuses on nanomanufacturing and key control characteristics. PD IEC/TS 62607-4-3 provides a standardized test method for the measurement of contact and coating resistivity of nano-enabled electrode materials. This method will enable a customer to:
- Decide whether a coating composite material is usable
- Select best combinations of coating composite material with fabrication technologies suitable for their application
Who is PD IEC/TS 62607-4-3 - Contact and coating resistivity measurements for nanomaterials for?
PD IEC/TS 62607-4-3 on contact and coating resistivity measurements for nanomaterials is useful for:
- Nano-enabled electrical energy storage providers
- Nanomanufacturing industries
- Research & Development teams
- Fabrication laboratories
Why should you use PD IEC/TS 62607-4-3 - Contact and coating resistivity measurements for nanomaterials?
The future utilization of renewable energy technologies including e-mobility for individual transportation significantly depends on the development of efficient systems for energy storage. From today's perspective, lithium-ion batteries, supercapacitors, and their derivative concepts are regarded as the most promising innovative candidates.
PD IEC/TS 62607-4-3 provides standard methods to measure coating and contact resistivity of nano-enabled electrode materials and to evaluate the best combinations of the composite material recipes and fabrication technologies for carbon-containing coatings of such nano-enabled electrodes. PD IEC/TS 62607-4-3 helps to assist in comparing the contact and coating resistivity of composite materials with carbon nanomaterial content in the study stage, not for evaluating the electrode in end products.
PD IEC/TS 62607-4-3 is applicable for nano-enabled materials exhibiting function or performance only possible with nanotechnology, intentionally added to composite materials for measurable and significant improvement of the current flow in the electrodes of electrical energy storage devices.