This is an interim version of our Electronic Legal Deposit Catalogue-eJournals and eBooks while we continue to recover from a cyber-attack.
On the Role of Collective Electrostatic Effects in Electronic Level Pinning and Work Function Changes by Molecular Adlayers: The Case of Partially Fluorinated DNTTs Adsorbed Flat‐Lying on Various Metals and Hetero‐Structures (Adv. Mater. Interfaces 18/2022). Issue 18 (22nd June 2022)
Record Type:
Journal Article
Title:
On the Role of Collective Electrostatic Effects in Electronic Level Pinning and Work Function Changes by Molecular Adlayers: The Case of Partially Fluorinated DNTTs Adsorbed Flat‐Lying on Various Metals and Hetero‐Structures (Adv. Mater. Interfaces 18/2022). Issue 18 (22nd June 2022)
Main Title:
On the Role of Collective Electrostatic Effects in Electronic Level Pinning and Work Function Changes by Molecular Adlayers: The Case of Partially Fluorinated DNTTs Adsorbed Flat‐Lying on Various Metals and Hetero‐Structures (Adv. Mater. Interfaces 18/2022)
Abstract : Buried Interface Dipoles The formation of a buried interface dipole at a copper/2D cesium/organic hetero‐interface, which can be manipulated by the outer organic monolayer is reported in article number 2200361 by Maximilian Dreher, Gregor Witte, and co‐workers. By combined experimental and theoretical methods the contribution of the inner and outer interface dipoles could be deciphered and their influence on the overall work function shift identified.