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Featured researches published by Anu Baby.


Scientific Reports | 2016

Femtomagnetism in graphene induced by core level excitation of organic adsorbates

Abhilash Ravikumar; Anu Baby; He Lin; Gian Paolo Brivio; Guido Fratesi

We predict the induction or suppression of magnetism in the valence shell of physisorbed and chemisorbed organic molecules on graphene occurring on the femtosecond time scale as a result of core level excitations. For physisorbed molecules, where the interaction with graphene is dominated by van der Waals forces and the system is non-magnetic in the ground state, numerical simulations based on density functional theory show that the valence electrons relax towards a spin polarized configuration upon excitation of a core-level electron. The magnetism depends on efficient electron transfer from graphene on the femtosecond time scale. On the other hand, when graphene is covalently functionalized, the system is magnetic in the ground state showing two spin dependent mid gap states localized around the adsorption site. At variance with the physisorbed case upon core-level excitation, the LUMO of the molecule and the mid gap states of graphene hybridize and the relaxed valence shell is not magnetic anymore.


ACS Nano | 2016

Complex Stoichiometry-Dependent Reordering of 3,4,9,10-Perylenetetracarboxylic Dianhydride on Ag(111) upon K Intercalation

Christian Zwick; Anu Baby; Marco Gruenewald; Elisabeth Verwüster; Oliver T. Hofmann; Roman Forker; Guido Fratesi; Gian Paolo Brivio; Egbert Zojer; Torsten Fritz

Alkali metal atoms are frequently used for simple yet efficient n-type doping of organic semiconductors and as an ingredient of the recently discovered polycyclic aromatic hydrocarbon superconductors. However, the incorporation of dopants from the gas phase into molecular crystal structures needs to be controlled and well understood in order to optimize the electronic properties (charge carrier density and mobility) of the target material. Here, we report that potassium intercalation into the pristine 3,4,9,10-perylenetetracarboxylic dianhydride (PTCDA) monolayer domains on a Ag(111) substrate induces distinct stoichiometry-dependent structural reordering processes, resulting in highly ordered and large KxPTCDA domains. The emerging structures are analyzed by low-temperature scanning tunneling microscopy, scanning tunneling hydrogen microscopy (ST[H]M), and low-energy electron diffraction as a function of the stoichiometry. The analysis of the measurements is corroborated by density functional theory calculations. These turn out to be essential for a correct interpretation of the experimental ST[H]M data. The epitaxy types for all intercalated stages are determined as point-on-line. The K atoms adsorb in the vicinity of the oxygen atoms of the PTCDA molecules, and their positions are determined with sub-Ångström precision. This is a crucial prerequisite for the prospective assessment of the electronic properties of such composite films, as they depend rather sensitively on the mutual alignment between donor atoms and acceptor molecules. Our results demonstrate that only the combination of experimental and theoretical approaches allows for an unambiguous explanation of the pronounced reordering of KxPTCDA/Ag(111) upon changing the K content.


Beilstein Journal of Nanotechnology | 2015

Core-level spectra and molecular deformation in adsorption: V-shaped pentacene on Al(001)

Anu Baby; He Lin; Gian Paolo Brivio; Luca Floreano; Guido Fratesi

Summary By first-principle simulations we study the effects of molecular deformation on the electronic and spectroscopic properties as it occurs for pentacene adsorbed on the most stable site of Al(001). The rationale for the particular V-shaped deformed structure is discussed and understood. The molecule–surface bond is made evident by mapping the charge redistribution. Upon X-ray photoelectron spectroscopy (XPS) from the molecule, the bond with the surface is destabilized by the electron density rearrangement to screen the core hole. This destabilization depends on the ionized carbon atom, inducing a narrowing of the XPS spectrum with respect to the molecules adsorbed hypothetically undistorted, in full agreement to experiments. When looking instead at the near-edge X-ray absorption fine structure (NEXAFS) spectra, individual contributions from the non-equivalent C atoms provide evidence of the molecular orbital filling, hybridization, and interchange induced by distortion. The alteration of the C–C bond lengths due to the V-shaped bending decreases by a factor of two the azimuthal dichroism of NEXAFS spectra, i.e., the energy splitting of the sigma resonances measured along the two in-plane molecular axes.


ACS Nano | 2017

Fully Atomistic Understanding of the Electronic and Optical Properties of a Prototypical Doped Charge-Transfer Interface

Anu Baby; Marco Gruenewald; Christian Zwick; Felix Otto; Roman Forker; Gerben van Straaten; Markus Franke; Benjamin Stadtmüller; Christian Kumpf; Gian Paolo Brivio; Guido Fratesi; Torsten Fritz; Egbert Zojer

The current study generates profound atomistic insights into doping-induced changes of the optical and electronic properties of the prototypical PTCDA/Ag(111) interface. For doping K atoms are used, as KxPTCDA/Ag(111) has the distinct advantage of forming well-defined stoichiometric phases. To arrive at a conclusive, unambiguous, and fully atomistic understanding of the interface properties, we combine state-of-the-art density-functional theory calculations with optical differential reflectance data, photoelectron spectra, and X-ray standing wave measurements. In combination with the full structural characterization of the KxPTCDA/Ag(111) interface by low-energy electron diffraction and scanning tunneling microscopy experiments (ACS Nano2016, 10, 2365–2374), the present comprehensive study provides access to a fully characterized reference system for a well-defined metal–organic interface in the presence of dopant atoms, which can serve as an ideal benchmark for future research and applications. The combination of the employed complementary techniques allows us to understand the peculiarities of the optical spectra of K2PTCDA/Ag(111) and their counterintuitive similarity to those of neutral PTCDA layers. They also clearly describe the transition from a metallic character of the (pristine) adsorbed PTCDA layer on Ag(111) to a semiconducting state upon doping, which is the opposite of the effect (degenerate) doping usually has on semiconducting materials. All experimental and theoretical efforts also unanimously reveal a reduced electronic coupling between the adsorbate and the substrate, which goes hand in hand with an increasing adsorption distance of the PTCDA molecules caused by a bending of their carboxylic oxygens away from the substrate and toward the potassium atoms.


Journal of Physical Chemistry C | 2017

Chemisorption of Pentacene on Pt(111) with a Little Molecular Distortion

Aldo Ugolotti; Shashank S. Harivyasi; Anu Baby; Marcos Dominguez; Anna L. Pinardi; María Francisca López; José A. Martín-Gago; Guido Fratesi; Luca Floreano; Gian Paolo Brivio


Journal of Physical Chemistry C | 2018

Lattice Mismatch Drives Spatial Modulation of Corannulene Tilt on Ag(111)

Anu Baby; He Lin; Abhilash Ravikumar; Carla Bittencourt; Hermann A. Wegner; Luca Floreano; A. Goldoni; Guido Fratesi


Italian National Conference on the Physics of Matter - FisMat 2017 | 2017

Electronic and Structural properties of K doped PTCDA monolayer on Ag(111)

Anu Baby; Marco Gruenewald; Christian Zwick; Felix Otto; Roman Forker; G Van Straaten; Markus Franke; B Stadtmu ̈ller; Christian Kumpf; Gian Paolo Brivio; Guido Fratesi; Torsten Fritz; Egbert Zojer


Workshop on Surfaces, Interfaces and Functionalization Processes in Organic Compounds and Applications (SINFO) | 2016

Electron transfer with core-level excitations at hybrid interfaces

Guido Fratesi; Anu Baby; He Lin; Abhilash Ravikumar; M. Muller; D. Sànchez Portal; A. Selloni; Gian Paolo Brivio


Journal of Physical Chemistry C | 2016

Evidence of Corannulene tilting on Ag(111) from X-ray absorption spectroscopy and core elvel photoemission

He Lin; Luca Floreano; Anu Baby; Carla Bittencourt; Hermann A. Wegner; A. Goldoni; Guido Fratesi


Bulletin of the American Physical Society | 2016

Complex Stoichiometry reordering of PTCDA on Ag(111) upon K Intercalation

Gian Paolo Brivio; Anu Baby; C. Zwick; M. Gruenewald; R. Forker; T. Fritz; Guido Fratesi; Oliver T. Hofmann; Egbert Zojer

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He Lin

University of Milan

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Egbert Zojer

Graz University of Technology

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