Karin Zojer

About Karin Zojer

Karin Zojer, With an exceptional h-index of 26 and a recent h-index of 17 (since 2020), a distinguished researcher at Technische Universität Graz, specializes in the field of materials modeling, device modeling, organic electronic devices.

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

R‐Vine Copulas for Data‐Driven Quantification of Descriptor Relationships in Porous Materials

Physics informed neural networks reveal valid models for reactive diffusion of volatiles through paper

SIMPLE ANALYTICAL METHODS AS BASIS FOR PHYSICS INFORMED NEURAL NETWORKS REVEALING VALID MODELS FOR REACTIVE DIFFUSION OF VOLATILES THROUGH PAPER

Joint distributions of local pore space properties quantitatively explain simulated air flow variations in paper

Sample layout aiding efficient scans of heterogeneous sheet-like materials

Transport of organic volatiles through paper: physics-informed neural networks for solving inverse and forward problems

Where is the water?

Capturing centimeter-scale local variations in paper pore space via μ-CT: A benchmark study using calendered paper

Karin Zojer Information

University

Position

___

Citations(all)

2759

Citations(since 2020)

1211

Cited By

2051

hIndex(all)

26

hIndex(since 2020)

17

i10Index(all)

43

i10Index(since 2020)

25

Email

University Profile Page

Google Scholar

Karin Zojer Skills & Research Interests

materials modeling

device modeling

organic electronic devices

Top articles of Karin Zojer

R‐Vine Copulas for Data‐Driven Quantification of Descriptor Relationships in Porous Materials

Advanced Theory and Simulations

2024/4/22

Physics informed neural networks reveal valid models for reactive diffusion of volatiles through paper

Chemical Engineering Science

2024/3/5

Ulrich Hirn
Ulrich Hirn

H-Index: 13

Karin Zojer
Karin Zojer

H-Index: 16

SIMPLE ANALYTICAL METHODS AS BASIS FOR PHYSICS INFORMED NEURAL NETWORKS REVEALING VALID MODELS FOR REACTIVE DIFFUSION OF VOLATILES THROUGH PAPER

2023/9/19

Ulrich Hirn
Ulrich Hirn

H-Index: 13

Karin Zojer
Karin Zojer

H-Index: 16

Joint distributions of local pore space properties quantitatively explain simulated air flow variations in paper

Transport in Porous Media

2023/7

Sample layout aiding efficient scans of heterogeneous sheet-like materials

2023/4/14

Transport of organic volatiles through paper: physics-informed neural networks for solving inverse and forward problems

Transport in Porous Media

2022/12

Ulrich Hirn
Ulrich Hirn

H-Index: 13

Karin Zojer
Karin Zojer

H-Index: 16

Where is the water?

2022

Capturing centimeter-scale local variations in paper pore space via μ-CT: A benchmark study using calendered paper

Microscopy and Microanalysis

2021/12

Simulation of charge carriers in organic electronic devices: Methods with their fundamentals and applications

2021/7

Karin Zojer
Karin Zojer

H-Index: 16

On variability and interdependence of local porosity and local tortuosity in porous materials: a case study for sack paper

Methodology and computing in applied probability

2021/6

2D Semiconductors: Interfacial Band Engineering of MoS2/Gold Interfaces Using Pyrimidine‐Containing Self‐Assembled Monolayers: Toward Contact‐Resistance …

Advanced Electronic Materials

2020/5/1

Interfacial Band Engineering of MoS2/Gold Interfaces Using Pyrimidine‐Containing Self‐Assembled Monolayers: Toward Contact‐Resistance‐Free Bottom‐Contacts

Advanced Electronic Materials

2020/5

See List of Professors in Karin Zojer University(Technische Universität Graz)