Alexander Riss

About Alexander Riss

Alexander Riss, With an exceptional h-index of 20 and a recent h-index of 16 (since 2020), a distinguished researcher at Technische Universität München, specializes in the field of Molecular materials, nc-AFM, STM.

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

High thermoelectric power factor through topological flat bands

Cover Picture: On‐Surface Isomerization of Indigo within 1D Coordination Polymers (Angew. Chem. Int. Ed. 15/2024)

Titelbild: On‐Surface Isomerization of Indigo within 1D Coordination Polymers (Angew. Chem. 15/2024)

On‐Surface Isomerization of Indigo within 1D Coordination Polymers

Measurement setup for Nernst and Seebeck effect at high temperatures and magnetic fields tested on elemental bismuth and full-Heusler compounds

Deceptive orbital confinement at edges and pores of carbon-based 1D and 2D nanoarchitectures

Thermoelectric power factor of composites

Study of thermoelectric properties of multi-material composites and thin films versus the single-material performances

Alexander Riss Information

University

Position

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Citations(all)

2867

Citations(since 2020)

1591

Cited By

1905

hIndex(all)

20

hIndex(since 2020)

16

i10Index(all)

32

i10Index(since 2020)

28

Email

University Profile Page

Google Scholar

Alexander Riss Skills & Research Interests

Molecular materials

nc-AFM

STM

Top articles of Alexander Riss

High thermoelectric power factor through topological flat bands

arXiv preprint arXiv:2404.08067

2024/4/11

Cover Picture: On‐Surface Isomerization of Indigo within 1D Coordination Polymers (Angew. Chem. Int. Ed. 15/2024)

Angewandte Chemie International Edition

2024/4/8

Titelbild: On‐Surface Isomerization of Indigo within 1D Coordination Polymers (Angew. Chem. 15/2024)

Angewandte Chemie

2024/4/8

On‐Surface Isomerization of Indigo within 1D Coordination Polymers

Angewandte Chemie

2024/4/8

Measurement setup for Nernst and Seebeck effect at high temperatures and magnetic fields tested on elemental bismuth and full-Heusler compounds

Review of Scientific Instruments

2024/4/1

Deceptive orbital confinement at edges and pores of carbon-based 1D and 2D nanoarchitectures

Nature Communications

2024/2/5

Thermoelectric power factor of composites

Physical Review Applied

2024/1/2

Alexander Riss
Alexander Riss

H-Index: 14

Study of thermoelectric properties of multi-material composites and thin films versus the single-material performances

2024

Alexander Riss
Alexander Riss

H-Index: 14

The role of aromaticity in the cyclization and polymerization of alkyne-substituted porphyrins on Au (111)

Nature Chemistry

2023/12

Roadmap on energy harvesting materials

Journal of Physics: Materials

2023/3/17

Criteria for erroneous substrate contribution to the thermoelectric performance of thin films

Physical Review Applied

2023/5/8

Alexander Riss
Alexander Riss

H-Index: 14

On‐Surface Synthesis of Polyphenylene Wires Comprising Rigid Aliphatic Bicyclo [1.1. 1] Pentane Isolator Units

Angewandte Chemie

2023/5/2

Zinc-Porphine on Coinage Metal Surfaces: Adsorption Configuration and Ligand-Induced Central Atom Displacement

The Journal of Physical Chemistry C

2023/4/10

From spin liquid to magnetic ordering in the anisotropic kagome Y-kapellasite Y₃Cu₉ (OH) ₁₉Cl₈: A single-crystal study

Physical Review B

2023/3/28

On-surface synthesis of enetriynes

Nature Communications

2023/3/6

Pivotal role of carrier scattering for semiconductorlike transport in

Physical Review B

2023/2/16

Unveiling the structure-property relationship in metastable Heusler compounds by systematic disorder tuning

Physical Review B

2023/1/25

Comprehensive fitting tool to analyse temperature‐dependent transport data: Introduction and examples of usage

2023

Complex transport and magnetism of the ternary boride YbPt₅B₂

Physical Review B

2022/5/11

On-surface synthesis of rigid benzenoid-and nonbenzenoid-coupled porphyrin–graphene nanoribbon hybrids

The Journal of Physical Chemistry C

2022/5/7

Alexander Riss
Alexander Riss

H-Index: 14

Davide Bonifazi
Davide Bonifazi

H-Index: 32

See List of Professors in Alexander Riss University(Technische Universität München)

Co-Authors

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