Linda Angela Zotti , ORCID 0000-0002-5292-6759

About Linda Angela Zotti , ORCID 0000-0002-5292-6759

Linda Angela Zotti , ORCID 0000-0002-5292-6759, With an exceptional h-index of 23 and a recent h-index of 17 (since 2020), a distinguished researcher at Universidad Autónoma de Madrid, specializes in the field of Nanotechnology, Condensed Matter Physics, Molecular Electronics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Magnetoconductance from spin-charge inter-conversion in two-terminal molecular nanojunctions with strong spin-orbit coupling electrodes.

Antiaromatic non-alternant heterocyclic compounds as molecular wires

Efficient Electron Hopping Transport through Azurin-Based Junctions

Chiral Single‐Molecule Potentiometers Based on Stapled ortho‐ Oligo(phenylene)ethynylenes

A group-theoretic approach to the origin of chirality-induced spin selectivity in non-magnetic molecular junctions

Experimental data confirm carrier-cascade model for solid-state conductance across proteins

A group-theoretic approach to chirality-induced spin selectivity in molecular junctions

Recent advances in understanding the electron transport through metal-azurin-metal junctions

Linda Angela Zotti , ORCID 0000-0002-5292-6759 Information

University

Position

Departamento de Física Teórica de la Materia Condensada

Citations(all)

2066

Citations(since 2020)

1060

Cited By

1448

hIndex(all)

23

hIndex(since 2020)

17

i10Index(all)

34

i10Index(since 2020)

27

Email

University Profile Page

Google Scholar

Linda Angela Zotti , ORCID 0000-0002-5292-6759 Skills & Research Interests

Nanotechnology

Condensed Matter Physics

Molecular Electronics

Top articles of Linda Angela Zotti , ORCID 0000-0002-5292-6759

Magnetoconductance from spin-charge inter-conversion in two-terminal molecular nanojunctions with strong spin-orbit coupling electrodes.

Journal of Physics: Conference Series

2024/2/1

Antiaromatic non-alternant heterocyclic compounds as molecular wires

Journal of Materials Chemistry C

2024

Efficient Electron Hopping Transport through Azurin-Based Junctions

The Journal of Physical Chemistry Letters

2023/12/7

Chiral Single‐Molecule Potentiometers Based on Stapled ortho‐ Oligo(phenylene)ethynylenes

Angewandte Chemie

2023/4/11

A group-theoretic approach to the origin of chirality-induced spin selectivity in non-magnetic molecular junctions

ACS Nano

2023

Experimental data confirm carrier-cascade model for solid-state conductance across proteins

The Journal of Physical Chemistry B

2023/2/15

A group-theoretic approach to chirality-induced spin selectivity in molecular junctions

APS March Meeting Abstracts

2023

Recent advances in understanding the electron transport through metal-azurin-metal junctions

Frontiers in Physics

2022/7/4

Adhesion of thin metallic layers on Au surfaces

Journal of Physics: Condensed Matter

2022/5/6

Constrained DFT for Molecular Junctions

Nanomaterials

2022/4/6

Spin-imbalances in non-magnetic nano-systems: using non-equilibrium Green’s function DFT to model spin-selective phenomena mediated by spin-orbit coupling

Proceedings of the 65th Annual Conference of the South African Institute of Physics

2022

Molecular Electronics

Springer Handbook of Electronic and Photonic Materials

2017

The role of metal ions in the electron transport through azurin-based junctions

Applied Sciences

2021/4/21

Can Electron Transport through a Blue-Copper Azurin Be Coherent? An Ab Initio Study

The Journal of Physical Chemistry C

2021/1/13

Three-state molecular potentiometer based on a non-symmetrically positioned in-backbone linker

Journal of Materials Chemistry C

2021

Electron transport through single proteins, peptides and amino acids

APS March Meeting Abstracts

2021

Single-molecule conductance of dibenzopentalenes: antiaromaticity and quantum interference

Chemical Communications

2021

Rational design of an unusual 2D-MOF based on Cu (I) and 4-hydroxypyrimidine-5-carbonitrile as linker with conductive capabilities: a theoretical approach based on high …

Chemical Communications

2020

Taming quantum interference in single molecule junctions: induction and resonance are key

Physical Chemistry Chemical Physics

2020

See List of Professors in Linda Angela Zotti , ORCID 0000-0002-5292-6759 University(Universidad Autónoma de Madrid)

Co-Authors

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