<?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/7628F0F7-C7FB-4AC6-9323-0E94E0A2D0D5" ns1:id="7628F0F7-C7FB-4AC6-9323-0E94E0A2D0D5"><ns1:links><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/persons/B373FC4A-1D7F-4A02-A081-8517EF7C71FC" ns1:rel="PM_PER"/><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/organisations/69DB9E08-C0B1-4F33-8FD4-EDC4DF325112" ns1:rel="LEAD_ORG"/><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/organisations/69DB9E08-C0B1-4F33-8FD4-EDC4DF325112" ns1:rel="PARTICIPANT_ORG"/><ns1:link ns1:end="2013-11-30T00:00:00Z" ns1:href="http://gtr.ukri.org/gtr/api/funds/F88E35AD-025E-44FE-A141-0EE3F5F82926" ns1:rel="FUND" ns1:start="2013-07-31T23:00:00Z"/></ns1:links><ns2:identifiers><ns2:identifier ns2:type="RCUK">131303</ns2:identifier></ns2:identifiers><ns2:title>Catalysis by Itterative Rational Design</ns2:title><ns2:status>Closed</ns2:status><ns2:grantCategory>Feasibility Studies</ns2:grantCategory><ns2:leadFunder>Innovate UK</ns2:leadFunder><ns2:abstractText>The proposed project will demonstrate the feasibility of a system to quantitatively examine the effects of size, density, and material mix, of nano-particles on a catalyst’s performance. Control over critical catalyst parameters at the nano-scale, with an associated capacity to vary these critical parameters in a systematic manner, could deliver new and improved catalysts for applications in drug discovery and energy. The system to be demonstrated through the project builds on a novel nano-particle production, selection and deposition machine capable of cost effectively depositing nano-particles of any given metal and size, onto any given surface and at any chosen density. Through this project, the nano-particle system will be integrated with a novel micro-reactor to demonstrate it's potential to deliver a ‘step change’ in catalyst development strategy; allowing fast, efficient and focused development of new and existing catalysts.</ns2:abstractText></ns2:project>