This project leverages two major technological innovations: the preparation technology for thermoelectric materials with high thermoelectric performance and high mechanical strength, and the automated production technology for high-performance MicroTEC, and is dedicated to the R&D and market application of high-end thermoelectric devices and systems.
Chip Thermal Management
Optical modules, lasers, detectors and other high-end chips play a critical role in fields such as artificial intelligence, mobile communications, high-end instrumentation, and require thermoelectric devices to precisely control chip temperature.
Thermoelectric power generation from temperature differences
Temperature-difference power generation technology based on the thermoelectric effect can be used for waste-heat recovery in high-energy-consumption industries such as steel, cement and chemicals, thereby supporting the national “dual-carbon” (carbon peaking and carbon neutrality) strategy.
1、 Innovation in material fabrication technology: Mastered hot-extrusion technology and equipment capable of batch preparation thermoelectric materials with high mechanical strength and high thermoelectric performance.
2、 Innovation in material formulation and process: Capable of batch production of thermoelectric materials with high thermoelectric performance and high mechanical properties.
3、 Innovation in interface engineering: By using interface engineering techniques, high-performance and highly stable thermoelectric devices with low interfacial thermal and electrical resistance are achieved.