New article on band bending engineering
Our article Band Bending Engineering at Organic/Inorganic Interfaces Using Organic Self-Assembled Monolayers just appeared in Advanced Electronic Materials (). It will be part of a special issue feature Aalto's new Materials Platform.
Adsorbing strong electron donors or acceptors on semiconducting surfaces induces band bending, whose extent and magnitude are strongly dependent on the doping concentration of the semiconductor. This study applies hybrid density-functional theory calculations together with the recently developed charge reservoir electrostatic sheet technique to account for charge transfer from the bulk of the semiconductor to the interface. This study further investigates the impact of surface-functionalization with specifically tailored self-assembled monolayers (SAMs). For the example of three chemically-similar SAMs, that all bond to the ZnO surface via pyridine docking groups, it is shown that the SAMs introduce shallow or deep donor levels that pin the band bending at the position of the SAM’s highest occupied molecular orbital. In this way, the magnitude of the induced band bending can be controlled by the type of SAM, to a point where the doping-concentration dependence is completely eliminated.
Read more news
Enhancing doctoral researchers’ work-life skills – Join the DOC+ events
Doctoral student or postdoc, have you been pondering about building a meaningful doctoral career? Or about the future of AI in research and working life? These events and learning opportunities are for you!
Specialised AI models could be Finland's next global export
Specialised, resource-efficient AI models could be the next competitive edge of our country, and a way to stand out among the use of large language models.
Business & economics and computer science ranked in top 100 globally
The Times Higher Education ranking measures universities with 18 indicators, including international research and citations