<?xml version="1.0" encoding="UTF-8"?><ns2:project xmlns:ns1="http://gtr.rcuk.ac.uk/gtr/api" xmlns:ns2="http://gtr.rcuk.ac.uk/gtr/api/project" xmlns:ns3="http://gtr.rcuk.ac.uk/gtr/api/fund" xmlns:ns4="http://gtr.rcuk.ac.uk/gtr/api/person" xmlns:ns5="http://gtr.rcuk.ac.uk/gtr/api/project/outcome" xmlns:ns6="http://gtr.rcuk.ac.uk/gtr/api/organisation" ns1:created="2026-07-08T08:44:08Z" ns1:href="http://gtr.ukri.org/gtr/api/projects/842BBF62-BDC3-4B23-A447-EF0D58890EB8" ns1:id="842BBF62-BDC3-4B23-A447-EF0D58890EB8"><ns1:links><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/persons/0A6E7165-6D07-4F94-A4A5-DCE5694863DB" ns1:rel="PM_PER"/><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/organisations/CB0D21CD-D240-448E-BCEE-954962DA802B" ns1:rel="LEAD_ORG"/><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/organisations/D9E2F69B-E694-49DC-B660-E0AA6C7A28E8" ns1:rel="PARTICIPANT_ORG"/><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/organisations/3E9596FB-D0B7-465E-9F14-D2477E49D762" ns1:rel="PARTICIPANT_ORG"/><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/organisations/CB0D21CD-D240-448E-BCEE-954962DA802B" ns1:rel="PARTICIPANT_ORG"/><ns1:link ns1:end="2016-06-29T23:00:00Z" ns1:href="http://gtr.ukri.org/gtr/api/funds/0552A99A-4DB5-4B0B-AEB5-0ED0D07210F7" ns1:rel="FUND" ns1:start="2014-06-30T23:00:00Z"/></ns1:links><ns2:identifiers><ns2:identifier ns2:type="RCUK">101784</ns2:identifier></ns2:identifiers><ns2:title>ELECTRO-TEG - Electrodeposition of thermoelectric materials to produce novel thermoelectric generator devices</ns2:title><ns2:status>Closed</ns2:status><ns2:grantCategory>Collaborative R&amp;D</ns2:grantCategory><ns2:leadFunder>Innovate UK</ns2:leadFunder><ns2:abstractText>Material advances (in particular in nano-structuring) have produced a step change in the thermoelectric performance over the last 5 years which has led to some wate heat energy recovery technoloiges being commercialised within the autmotive sector. As a result, there is increased market pull and the market for these TEGs is growing considerably. However, the relatively high cost of large-scale manufacture due to labour intensive material consolidation, machining and hand assembly is hampering widespread commercialisation. It is therefore becoming clear that unless cost-effective manufacturing technologies for the production of the thermo-electric material and their integration into efficient devices are developed then mass production will be exported to low-cost economies. ELECTROTEG will address these limitations through the development of a low temperature thermoelectric electro-deposition process that will enable the commercial manufacture of fully dense nano-structured thermo-electric materials in-situ, eliminating the need for material consolidation, machining and hand assembly.</ns2:abstractText></ns2:project>