H2020Doctoral network2017–2022

MAESTRO · MAking pErovskiteS TRuly explOitable

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2017-11-01 → 2022-04-30
EU contribution
€3,829,217
Participants
17
Scheme
MSCA-ITN

Lines connect the coordinator with its partners.

Results in brief

MAking pErovskiteS TRuly explOitable

MAESTRO focusses on perovskites, a material shown in the last 10 years to have revolutionised solar power with the potential to do the same for display technology. Perovskites are a class of compounds with the same crystal structure type as CaTiO3, called the perovskite structure. Hybrid organic-inorganic perovskites, including Pb or Sn halides, are widely used in solar cells and light emitting diodes. Perovskite solar cells offer significant advantages: they are potentially low cost, simple to manufacture and possess exceptional optoelectronic properties leading to efficient light harvesting and emission. A schematic diagram of perovskite film fabrication by solution processing is shown in the image © Matt Klug, Oxford Photovoltaics. An increasing number of companies, a mixture of multinationals and start-ups, is commercialising this technology, mainly in solar power but also in display technology. Despite their promise, perovskites are far from their full potential. Further progress is limited by low stability (lifetimes are much less than 25 years offered by silicon cells, the industry standard), by their environmental impact (many perovskites used in devices contain lead) and by the need to upscale their manufacture without sacrificing the high efficiency seen in the small cells made in the lab. MAESTRO’s objective is to generate new skills, knowledge and innovation in the exploitation of perovskite materials for optoelectronics with a focus on solar power and efficient lighting. To achieve this objective an intersectoral and multidisciplinary network of 10 academic and 7 industrial partners was created with members from 9 EU and Associated countries. Early Stage researchers (ESRs) were hired by each partner. ESRs investigated means of prolonging cell lifetimes, reducing cell toxicity and upscaling manufacturing whilst maintaining the exceptionally high power efficiencies for the solar cells that have attracted worldwide attention. Exploitation was considered at all stages from laboratory to fabrication. MAESTRO’s cross sector and cross disciplinary research allowed the students to develop skills and experience, giving them a wide range of career options. Training was provided in science and technology across physics, chemistry, materials science, electrical engineering. Transferable skills were developed in planning, teamwork, communications, information technology, organization, leadership and the skills needed for innovation, such as understanding markets, product life cycles, business models and return on investment. Information on partners, research, training and outreach activities along with YouTube videos could be found on https://maestro-itn.eu and twitter feed @MAESTRO_ITN.

Data: CORDIS, © European Union

Project objective

The European Training Network MAESTRO (MAking pErovskiteS TRuly explOitable) will generate new skills, knowledge and innovation in the exploitation of perovskite materials in solar power and efficient lighting through establishing exploitation paths for perovskite devices in an integrated unitary approach. MAESTRO is an intersectoral and multidisciplinary network of 10 academic and 7 industrial beneficiaries from 8 EU and Associated countries, including 2 countries in the EU-13. It focusses on perovskite semiconductors, a material shown in the last 4 years to have a major impact on solar power and potentially also in display technology. Our research aims to make perovskite based devices commercially viable. MAESTRO offers broad skills development and experience of cross sector research to 15 Early Stage Researchers, ESRs. Training is provided in (i) science and technology across physics, chemistry, materials science, electrical engineering, in two major application areas, solar cells and light emitting diodes, and other uses such as lasers and photodiodes; (ii) exploitation from laboratory to fabrication; (iii) transferable skills of communication, information technology, organization, planning, teamwork, leadership; (iv) skills needed for innovation, such as understanding markets, product life cycles, business models, return on investment. Gender aspects are addressed through supervisors, mentors and training. The research undertaken by MAESTRO will teach the ESRs how to deal with complexities and uncertainties, making them very broad and highly adaptable. Their PhDs will position them to be comfortable in both corporate and academic worlds. They will be able to seek careers that are rewarding professionally and financially, through career paths in self-employment, finance, consultancy, contracting, engineering, computer science, production

Original text from CORDIS.

Participants

  • UNIVERSITY OF BATH · BATHCoordinatorUnited Kingdom
  • 3GSOLAR PHOTOVOLTAICS LTD · JerusalemIsrael
  • BAR ILAN UNIVERSITY · Ramat GanIsrael
  • ECOLE POLYTECHNIQUE FEDERALE DE LAUSANNE · LausanneSwitzerland
  • FONDAZIONE ISTITUTO ITALIANO DI TECNOLOGIA · GenovaItaly
  • GREATCELL SOLAR UK LIMITED · St AsaphUnited Kingdom
  • NATIONAL CENTER FOR SCIENTIFIC RESEARCH ""DEMOKRITOS"""" · Agia ParaskeviGreece
  • NPL MANAGEMENT LIMITED · MIDDLESEXUnited Kingdom
  • OXFORD PHOTOVOLTAICS LIMITED · YARNTONUnited Kingdom
  • SAULE SPOLKA AKCYJNA · WROCLAWPoland
  • SWANSEA UNIVERSITY · SwanseaUnited Kingdom
  • THE CHANCELLOR, MASTERS AND SCHOLARS OF THE UNIVERSITY OF OXFORD · OxfordUnited Kingdom
  • TIBERLAB S.R.L. · RomaItaly
  • UAB MODERNIOS E-TECHNOLOGIJOS · VilniusLithuania
  • UNIVERSITA DEGLI STUDI DI ROMA TOR VERGATA · RomaItaly
  • UNIVERSITAT JAUME I DE CASTELLON · Castellon De La PlanaSpain
  • UNIVERSITAT KONSTANZ · KonstanzGermany

Links

Data: CORDIS, © European Union