Heiner Linke

About Heiner Linke

Heiner Linke, With an exceptional h-index of 46 and a recent h-index of 27 (since 2020), a distinguished researcher at Lunds Universitet, specializes in the field of Nanoelectronics, nanothermodynamics, molecular motors.

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

Sub-Nanomolar Detection of Oligonucleotides Using Molecular Beacons Immobilized on Lightguiding Nanowires

Motility of an autonomous protein-based artificial motor that operates via a burnt-bridge principle

Electrical conductance and thermopower of β-substituted porphyrin molecular junctions─ synthesis and transport

Exploitation of engineered light-switchable myosin XI for nanotechnological applications

Information-to-work conversion in single-molecule experiments: From discrete to continuous feedback

Geometric symmetry breaking and nonlinearity can increase thermoelectric power

Fundamental energy cost of finite-time parallelizable computing

Nanolithographic Fabrication Technologies for Network-Based Biocomputation Devices

Heiner Linke Information

University

Position

NanoLund Solid State Physics

Citations(all)

8968

Citations(since 2020)

2976

Cited By

7406

hIndex(all)

46

hIndex(since 2020)

27

i10Index(all)

131

i10Index(since 2020)

72

Email

University Profile Page

Google Scholar

Heiner Linke Skills & Research Interests

Nanoelectronics

nanothermodynamics

molecular motors

Top articles of Heiner Linke

Sub-Nanomolar Detection of Oligonucleotides Using Molecular Beacons Immobilized on Lightguiding Nanowires

Nanomaterials

2024/2/29

Motility of an autonomous protein-based artificial motor that operates via a burnt-bridge principle

Nature Communications

2024/2/23

Heiner Linke
Heiner Linke

H-Index: 28

Electrical conductance and thermopower of β-substituted porphyrin molecular junctions─ synthesis and transport

Journal of the American Chemical Society

2023/10/24

Exploitation of engineered light-switchable myosin XI for nanotechnological applications

ACS nano

2023/8/28

Heiner Linke
Heiner Linke

H-Index: 28

Till Korten
Till Korten

H-Index: 11

Information-to-work conversion in single-molecule experiments: From discrete to continuous feedback

Physical Review E

2023/5/25

Geometric symmetry breaking and nonlinearity can increase thermoelectric power

arXiv preprint arXiv:2304.01616

2023/4/4

Fundamental energy cost of finite-time parallelizable computing

Nature Communications

2023/1/27

Nanolithographic Fabrication Technologies for Network-Based Biocomputation Devices

Materials

2023/1/24

Fluorescence excitation enhancement by waveguiding nanowires

Nanoscale Advances

2023

Debatt: Sverige måsta satsa på utveckling av nya halvledare

Dagens Industri

2022

Heiner Linke
Heiner Linke

H-Index: 28

The lawnmower: an artificial protein-based burnt-bridge molecular motor

APS March Meeting Abstracts

2022

Heiner Linke
Heiner Linke

H-Index: 28

Solving the 3‐Satisfiability Problem Using Network‐Based Biocomputation

Advanced Intelligent Systems

2022/12

Optical molecular nanowire sensor

2022/10/27

Enhanced Optical Biosensing by Aerotaxy Ga (as) P nanowire platforms suitable for scalable production

ACS Applied Nano Materials

2022/7/1

Solving exact cover instances with molecular-motor-powered network-based biocomputation

ACS Nanoscience Au

2022/6/23

Optical-Beam-Induced Current in InAs/InP Nanowires for Hot-Carrier Photovoltaics

ACS Applied Energy Materials

2022/6/2

Solving the 3-SAT problem using network-based biocomputation

arXiv preprint arXiv:2203.17154

2022/3/31

Biocomputation Using Molecular Agents Moving in Microfluidic Channel Networks: An Alternative Platform for Information Technology

2022/3/30

Thermoelectric measurements on InAs nanowires with a ratchet-barrier

2022/3/28

Heiner Linke
Heiner Linke

H-Index: 28

See List of Professors in Heiner Linke University(Lunds Universitet)

Co-Authors

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