Thomas Mueller

About Thomas Mueller

Thomas Mueller, With an exceptional h-index of 46 and a recent h-index of 38 (since 2020), a distinguished researcher at Technische Universität Wien, specializes in the field of 2D materials, In-sensor computing.

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

Optical sensing in high dimensions

In-sensor computing using a MoS2 photodetector with programmable spectral responsivity

Plasmonic-Based Non-Invasive In-Operando Technique for the Characterization of MoS2 Nanoswitches

Flexible CMOS electronics based on 2D p-type WSe2 and n-type MoS2

Geometric deep optical sensing

Optically transparent and thermally efficient 2D MoS2 heaters integrated with silicon microring resonators

Fully Optical in Operando Investigation of Ambient Condition Electrical Switching in MoS2 Nanodevices

Water-based 2-dimensional anatase TiO 2 inks for printed diodes and transistors

Thomas Mueller Information

University

Position

___

Citations(all)

23070

Citations(since 2020)

12813

Cited By

15669

hIndex(all)

46

hIndex(since 2020)

38

i10Index(all)

70

i10Index(since 2020)

52

Email

University Profile Page

Google Scholar

Thomas Mueller Skills & Research Interests

2D materials

In-sensor computing

Top articles of Thomas Mueller

Optical sensing in high dimensions

2023/10/3

In-sensor computing using a MoS2 photodetector with programmable spectral responsivity

Nature Communications

2023/7/17

Dohyun Kwak
Dohyun Kwak

H-Index: 12

Thomas Mueller
Thomas Mueller

H-Index: 32

Plasmonic-Based Non-Invasive In-Operando Technique for the Characterization of MoS2 Nanoswitches

2023/6/26

Flexible CMOS electronics based on 2D p-type WSe2 and n-type MoS2

2023/6/25

Optically transparent and thermally efficient 2D MoS2 heaters integrated with silicon microring resonators

ACS Photonics

2023/6/5

Fully Optical in Operando Investigation of Ambient Condition Electrical Switching in MoS2 Nanodevices

Advanced Materials

2023/3

Water-based 2-dimensional anatase TiO 2 inks for printed diodes and transistors

Nanoscale

2023

Signatures of bright-to-dark exciton conversion in corrugated MoS2 monolayers

Applied Surface Science

2022/10/30

Lukas Mennel
Lukas Mennel

H-Index: 6

Thomas Mueller
Thomas Mueller

H-Index: 32

Sparse pixel image sensor

Scientific Reports

2022/4/5

A photosensor employing data-driven binning for ultrafast image recognition

Scientific Reports

2022/8/24

Low Thermal Conductivity in Franckeite Heterostructures

Nanoscale

2022

1/f Noise Characterization of Bilayer MoS2 Field‐Effect Transistors on Paper with Inkjet‐Printed Contacts and hBN Dielectrics

Advanced Electronic Materials

2021/7

Cinzia Casiraghi
Cinzia Casiraghi

H-Index: 39

Thomas Mueller
Thomas Mueller

H-Index: 32

Inkjet-printed low-dimensional materials-based complementary electronic circuits on paper

npj 2D Materials and Applications

2021/11/16

Thomas Mueller
Thomas Mueller

H-Index: 32

Cinzia Casiraghi
Cinzia Casiraghi

H-Index: 39

High‐Speed Electroluminescence Modulation in Monolayer WS2

Advanced Materials Technologies

2022/5

High-responsivity graphene photodetectors integrated on silicon microring resonators

Nature Communications

2021/6/18

A SPICE Compact Model for Ambipolar 2-D-Material FETs Aiming at Circuit Design

IEEE Transactions on Electron Devices

2021/5/5

Shivendra Kumar Singh
Shivendra Kumar Singh

H-Index: 0

Thomas Mueller
Thomas Mueller

H-Index: 32

Tunable graphene plasmons in nanoribbon arrays: the role of interactions

Optical Materials Express

2021/5/1

Thomas Mueller
Thomas Mueller

H-Index: 32

The performance limits of hexagonal boron nitride as an insulator for scaled CMOS devices based on two-dimensional materials

2021/2

On the suitability of hBN as an insulator for 2D material-based ultrascaled CMOS devices

arXiv preprint arXiv:2008.04144

2020/8/10

See List of Professors in Thomas Mueller University(Technische Universität Wien)