Mahiar Max Hamedi

About Mahiar Max Hamedi

Mahiar Max Hamedi, With an exceptional h-index of 28 and a recent h-index of 24 (since 2020), a distinguished researcher at Kungliga Tekniska högskolan, specializes in the field of Organic Electronics, Nano Electronics, Self-assembly, E-textiles.

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

Entropy Drives Interpolymer Association in Water: Insights into Molecular Mechanisms

Cleanroom‐Free Direct Laser Micropatterning of Polymers for Organic Electrochemical Transistors in Logic Circuits and Glucose Biosensors

2D MXene electrochemical transistors

Dynamic Networks of Cellulose Nanofibrils Enable Highly Conductive and Strong Polymer Gel Electrolytes for Lithium‐Ion Batteries

Paper‐based bacterial lysis enables sample‐to‐answer home‐based DNA testing

Ultrastrong Ionotronic Films Showing Electrochemical Osmotic Actuation

Electrochemically Controlled Hydrogels with Electrotunable Permeability and Uniaxial Actuation

A 3D paper microfluidic device for enzyme‐linked assays: Application to DNA analysis

Mahiar Max Hamedi Information

University

Position

Ass. Professor Institute

Citations(all)

4770

Citations(since 2020)

2972

Cited By

2914

hIndex(all)

28

hIndex(since 2020)

24

i10Index(all)

48

i10Index(since 2020)

42

Email

University Profile Page

Google Scholar

Mahiar Max Hamedi Skills & Research Interests

Organic Electronics

Nano Electronics

Self-assembly

E-textiles

Top articles of Mahiar Max Hamedi

Entropy Drives Interpolymer Association in Water: Insights into Molecular Mechanisms

Langmuir

2024/3/22

Cleanroom‐Free Direct Laser Micropatterning of Polymers for Organic Electrochemical Transistors in Logic Circuits and Glucose Biosensors

Advanced Science

2024/1/15

2D MXene electrochemical transistors

Nanoscale

2024

Dynamic Networks of Cellulose Nanofibrils Enable Highly Conductive and Strong Polymer Gel Electrolytes for Lithium‐Ion Batteries

Advanced Functional Materials

2023/7

Paper‐based bacterial lysis enables sample‐to‐answer home‐based DNA testing

Advanced Materials Technologies

2023/2

Electrochemically Controlled Hydrogels with Electrotunable Permeability and Uniaxial Actuation

Advanced Materials

2023/11

A 3D paper microfluidic device for enzyme‐linked assays: Application to DNA analysis

Biotechnology Journal

2023/9

Toward Continuous Molecular Testing Using Gold-Coated Threads as Multi-Target Electrochemical Biosensors

Biosensors

2023/8/25

High‐Speed Ionic Synaptic Memory Based on 2D Titanium Carbide MXene

Advanced Functional Materials

2022/3

Additive-free red phosphorus/Ti 3 C 2 T x MXene nanocomposite anodes for metal–ion batteries

Energy Advances

2022

Portable electroanalytical nucleic acid amplification tests using printed circuit boards and open-source electronics

Analyst

2022

Hierarchical soot nanoparticle self-assemblies for enhanced performance as sodium-ion battery anodes

Journal of Materials Chemistry A

2022

A disposable, wearable, flexible, stitched textile electrochemical biosensing platform

Biosensors and Bioelectronics

2021/12/15

Andrew Piper
Andrew Piper

H-Index: 13

Mahiar Max Hamedi
Mahiar Max Hamedi

H-Index: 20

Electroanalytical paper-based nucleic acid amplification biosensors with integrated thread electrodes

Analytical Chemistry

2021/10/14

Mahiar Max Hamedi
Mahiar Max Hamedi

H-Index: 20

Liquid-phase exfoliation of layered biochars into multifunctional heteroatom (Fe, N, S) co-doped graphene-like carbon nanosheets

Chemical Engineering Journal

2021/9/15

Polyelectrolyte-Assisted Dispersions of Reduced Graphite Oxide Nanoplates in Water and Their Gas-Barrier Application

ACS Applied Materials & Interfaces

2021/9/3

Layer‐by‐Layer Assembly of Strong Thin Films with High Lithium Ion Conductance for Batteries and Beyond

Small

2021/8

Thread-based wearable devices

2021/6

Woven electroanalytical biosensor for nucleic acid amplification tests

Advanced Healthcare Materials

2021/6

See List of Professors in Mahiar Max Hamedi University(Kungliga Tekniska högskolan)

Co-Authors

academic-engine