UPB Bildmarke
Press, Communications and Marketing Office
Contact
  • Deutsch
  • English
    • Open Page "Studies"
      • Open Page "Prospective students"
      • Eltern
    • Students
    • International students & prospective students
    • School & teachers
    • Open Page "Teaching"
      • Open Page "Profile"
      • Academic Mission Statement
      • Digitalization & E-Learning
      • Open Source
      • Open Page "Teaching"
      • Competence-Oriented Education
      • Exam design
      • Organizing Courses
      • Course Evaluations
      • General Education Requirements
      • Lecture series on sustainability
    • AI in teaching
      • Open Page "Digital Teaching"
      • Digital Teaching
      • Digital learning rooms
      • Digital test formats
      • Digital test formats
      • Digital tools
      • FAQs
      • Open Page "Qualification and service"
      • Higher Education Development Unit
      • Writing Center
      • Internal Professional Development and Further Education
      • Interdisciplinary Cooperation to Improve Quality in Teacher Education (PLAZ)
      • Faculty-Specific Initiatives
      • Internationally Focused Academics
      • Open Page "Educational innovations"
      • Teaching Awards at UPB
      • Fellowship
      • Best-Practices Teaching Symposium
      • Teaching Projects
      • E-Learning Label
      • Open Page "Teaching research networks"
      • DH.NRW
      • Foundation for Innovation in Higher Education
      • Centre for Higher Mathematics Education (khdm)
      • Academic quality
    • Open Page "Research"
      • Open Page "Research profile"
      • Key research areas
      • Interdisciplinary research institutes
      • Research in the faculties
      • Collaborative Research Centres
      • Graduate Programmes and Schools
      • DFG Research Units
      • DFG Priority Programmes
      • ERC Grants
      • Leibniz Prize Winners
      • Heinz Maier Leibnitz Prize Winners
      • Open Page "Academic career"
      • Early career stages
      • Professorship at Paderborn University
      • Job portal
      • University as an employer
      • Open Page "Research funding and services"
      • Funding and application advice
      • Legal advice in research and development
      • Ethics Committee
      • Research Information at UPB
      • Research data management
      • Publication Service of the University Library
      • Open Access Portal
      • Inventions & patents
      • Start-ups and entrepreneurship
      • Network for Interdisciplinary Research
      • Internal grants (Committee for Research and Junior Academics)
      • Open Page "Research culture"
      • Research-Oriented Standards on Gender Equality
      • Gender & Diversity Consulting
      • Ethics committee
      • Good Research Practice
      • Human Resources Strategy for Researchers
    • Open Page "Transfer"
    • Creating together
    • Innovating together
    • Reflecting together
    • Contacts
    • Open Page "International"
    • International Profile
    • International Campus
    • Open Page "University"
      • Open Page "About us"
      • Mission Statement
      • History
      • Important Personalities and Pioneers
      • University Society
      • Alumni
      • Unishop
      • Open Page "Our organisation"
      • University Executive Board
      • Advisory Board
      • Senate
      • Faculties
      • Central University Administration
      • Central research institutes
      • Central operating units
      • Agencies and authorised representatives
      • Anlauf- und Beratungsstellen
      • Universitätskommissionen
      • Open Page "Working at UPB"
      • Vacancies
      • Equality, Compatibility and Diversity
      • Welcome Services
      • Personnel development
      • Scientific career paths
      • Dual Career Service
      • Healthy university
      • Social, sporting and cultural activities
    • Maps & directions
    • Open Page "Faculties"
    • Faculty of Arts and Humanities
    • Faculty of Business Administration and Economics
    • Faculty of Science
    • Faculty of Mechanical Engineering
    • Faculty of Computer Science, Electrical Engineering and Mathematics
  • Press
Using the smallest “construction set” in the world, a research team from the universities of Marburg, Giessen and Paderborn is designing new materials for computer chips, light-emitting diodes and solar cells.
Using the smallest “construction set” in the world, a research team from the universities of Marburg, Giessen and Paderborn is designing new materials for computer chips, light-emitting diodes and solar cells.
Contact
  1. Paderborn University
  2. University
  3. Press, Communications and Marketing Office
Back to the news list

Just a few atoms thick: new func­tion­al ma­ter­i­als de­veloped

06.05.2021  |  Research

A contribution from Pressemitteilung

Share post on:

  • Share on Instagram
  • Teilen auf Twitter
  • Teilen auf Facebook
  • Teilen auf Xing
  • Teilen auf LinkedIn
  • Teilen über E-Mail
  • Link kopieren

Using the smallest “construction set” in the world, a research team from the universities of Marburg, Giessen and Paderborn is designing new materials for computer chips, light-emitting diodes and solar cells.

They are 50,000 times thinner than a human hair, and just a few atoms thick: two-dimensional materials are the thinnest substances it is possible to make today. They have completely new properties and are regarded as the next major step in modern semiconductor technology. In the future they could be used instead of silicon in computer chips, light-emitting diodes and solar cells. Until now, the development of new two-dimensional materials has been limited to structures with layers of rigid chemical bonds in two spatial directions – like a sheet of paper in a stack. Now for the first time, a research team from the universities of Marburg, Giessen and Paderborn, led by Dr. Johanna Heine (Inorganic Chemistry, Philipps University of Marburg) has overcome this limitation by using an innovative concept. The researchers developed an organic-inorganic hybrid crystal which consists of chains in a single direction, yet still forms two-dimensional layers in spite of this. This makes it possible to combine different material components, like pieces in a construction set, to create tailored materials with innovative properties.

In this project, the research team combined the advantages of two-dimensional materials and hybrid perovskites – the eponymous mineral perovskite is well-known for its optoelectronic properties, and can be combined with other materials to improve these characteristics. “What is special about this is that it offers completely new options for targeted design of future functional materials,” says Dr. Johanna Heine, a chemist and junior research group leader at the University of Marburg, describing this highly topical research area which has great application potential. “This physical effect – first discovered here – could make it possible to tune the colour of future lighting and display technologies in a simple and targeted way,” says physicist Philip Klement, lead author and doctoral student in the research group led by Professor Sangam Chatterjee at the Justus Liebig University of Giessen (JLU).

The work was carried out in an interdisciplinary collaboration: Dr. Johanna Heine’s team at the University of Marburg first developed the chemical synthesis and created the material as a single bulk crystal. Philip Klement and Professor Chatterjee’s team at JLU then used these crystals to produce individual atomically thin layers and investigated them using optical laser spectroscopy. They found a spectrally broadband (“white”) light emission, whose colour temperature can be tuned by changing the thickness of the layer. Working closely with Professor Stefan Schumacher and his team of theoretical physicists at Paderborn University the researchers made a microscopic study of the effect and were able to improve the properties of the material.

In this way the researchers were able to cover the entire process from synthesis of the material and understanding its properties, to modelling the properties. Their findings have been published in the specialist journal “Advanced Materials”.

Publication:

Philip Klement, Natalie Dehnhardt, Chuan-Ding Dong, Florian Dobener, Samuel Bayliff, Julius Winkler, Detlev M. Hofmann, Peter J. Klar, Stefan Schumacher, Sangam Chatterjee, and Johanna Heine: Atomically Thin Sheets of Lead-Free One-Dimensional Hybrid Perovskites Feature Tunable White-Light Emission from Self-Trapped Excitons. Advanced Materials 2021, https://onlinelibrary.wiley.com/doi/full/10.1002/adma.202100518

Image (Elisa Monte, Experimental Physics I, Justus Liebig University of Giessen): Artistic representation of the crystal structure of the innovative material. Individual layers of the crystal can simply be lifted off.
Download (400 KB)

Contact

business-card image

Prof. Dr. Stefan Schumacher

Department of Physics

Coordinator MSc Optoelectronics & Photonics

Write email
More about the person
In the foreground, a part of building Q with the lettering "Universität Paderborn", in front of which more than 20 students are passing by; in the background, building I.
Universität Paderborn

Warburger Str. 100
33098 Paderborn
Germany

Phone University

+49 5251 60-0
Quick links
  • Cafeteria
  • Online application
  • Library
  • PAUL
  • PANDA
Social networks
Legal notice
  • Imprint
  • Data privacy
  • Whistleblower system
  • Accessibility Declaration