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Miklós Zrínyi

Miklós Zrínyi

D-Index & Metrics

Materials Science

D-Index
51
Citations
10696
World Ranking
9832
National Ranking
7

Overview

Miklós Zrínyi is affiliated with Semmelweis University in Hungary. Their research spans multiple interdisciplinary fields, mainly focusing on biomedical engineering, biomaterials, and general health professions.

Their recent publications include work on diverse topics such as hydrogels, flexible actuators, nursing communication, and biodegradable membranes. Some notable papers are:

  • Sensitive piezoresistive pressure sensor based on micropyramid patterned tough hydrogel, 2023, Applied Surface Science
  • Magnetic hydrogel-based flexible actuators: A comprehensive review on design, properties, and applications, 2023, Chemical Engineering Journal
  • Staying with nursing: the impact of conflictual communication, stress and organizational problem-solving, 2020, International Nursing Review
  • Burnout and patient safety: A discriminant analysis of paediatric nurses by low to high managerial support, 2020, Nursing Open
  • Poly(amino acid) based fibrous membranes with tuneable in vivo biodegradation, 2021, PLoS ONE

The frequent co-authors collaborating with Miklós Zrínyi include:

  • A. Pakai
  • Adrienn Ujváriné Siket
  • Yong Mei Chen
  • Yuan He
  • A. Oláh

Their research has been published repeatedly in journals such as:

  • Nursing Open
  • Value in Health
  • Zenodo (CERN European Organization for Nuclear Research)
  • Journal of Molecular Liquids
  • BMC Nursing

Within their fields of study, their work primarily addresses the following subfields:

  • Biomedical Engineering
  • Biomaterials
  • General Health Professions
  • Research and Theory
  • Physiology

The major topics covered in their body of work include:

  • Electrospun Nanofibers in Biomedical Applications
  • Advanced Sensor and Energy Harvesting Materials
  • Nursing education and management
  • Healthcare professionals' stress and burnout
  • 3D Printing in Biomedical Research
  • Hydrogels: synthesis, properties, applications
  • Healthcare Education and Workforce Issues

Best Publications

  • Self-healing gels based on constitutional dynamic chemistry and their potential applications

    Zhao Wei;Jian Hai Yang;Jinxiong Zhou;Feng Xu

  • Novel biocompatible polysaccharide-based self-healing hydrogel

    Zhao Wei;Jian Hai Yang;Zhen Qi Liu;Feng Xu

  • Magnetic field sensitive functional elastomers with tuneable elastic modulus

    Zsolt Varga;Genovéva Filipcsei;Miklós Zrínyi

  • Magnetic Field-Responsive Smart Polymer Composites

    Genovéva Filipcsei;Ildikó Csetneki;András Szilágyi;Miklós Zrínyi

  • Technologies for circulating tumor cell separation from whole blood

    Petra Bankó;Sun Young Lee;Viola Nagygyörgy;Miklós Zrínyi

  • Deformation of ferrogels induced by nonuniform magnetic fields

    M. Zrínyi;L. Barsi;A. Büki

  • Ferrogel: a new magneto-controlled elastic medium

    M. Zrínyi;L. Barsi;A. Büki

  • Preparation and Responsive Properties of Magnetically Soft Poly(N-isopropylacrylamide) Gels

    Patience Makhosaxana Xulu;Genovéva Filipcsei;Miklós Zrínyi

  • Novel highly elastic magnetic materials for dampers and seals: Part I. Preparation and characterization of the elastic materials

    S. Abramchuk;E. Kramarenko;E. Kramarenko;G. Stepanov;L. V. Nikitin

  • Dextran-based self-healing hydrogels formed by reversible diels-alder reaction under physiological conditions.

    Zhao Wei;Jian Hai Yang;Xiao Jing Du;Feng Xu

  • Studies on the mechanical and swelling behavior of polymer networks based on the scaling concept. 4. Extension of the scaling approach to gels swollen to equilibrium in a diluent of arbitrary activity

    Ferenc Horkay;Miklos Zrínyi

  • Smart composites with controlled anisotropy

    Zsolt Varga;Genovéva Filipcsei;Miklós Zrínyi

  • Electric field sensitive neutral polymer gels

    G Filipcsei;J Fehér;M Zrı́nyi

  • Direct observation of abrupt shape transition in ferrogels induced by nonuniform magnetic field

    M. Zrı́nyi;L. Barsi;D. Szabó;H.-G. Kilian

  • Derivation of the Matalon-Packter law for Liesegang patterns

    T. Antal;M. Droz;J. Magnin;Z. Rácz

  • Novel highly elastic magnetic materials for dampers and seals: part II. Material behavior in a magnetic field

    S. Abramchuk;E. Kramarenko;E. Kramarenko;D. Grishin;G. Stepanov

  • Exceptionally tough and notch-insensitive magnetic hydrogels

    Hussain Haider;Can Hui Yang;Wen Jiang Zheng;Jian Hai Yang

  • Magnetism and compressive modulus of magnetic fluid containing gels

    Tetsu Mitsumata;Kazuo Ikeda;Jian Ping Gong;Yoshihito Osada

  • Preparation of magnetic polystyrene latex via the miniemulsion polymerization technique

    I. Csetneki;M. Kabai Faix;A. Szilágyi;A. L. Kovács

  • On-demand microfluidic control by micropatterned light irradiation of a photoresponsive hydrogel sheet

    Shinji Sugiura;András Szilágyi;András Szilágyi;Kimio Sumaru;Koji Hattori

  • Synthesis and swelling properties of novel pH-sensitive poly(aspartic acid) gels.

    Tamás Gyenes;Viktória Torma;Benjámin Gyarmati;Miklós Zrínyi

Frequent Co-Authors

Feng Xu
Feng Xu Xi'an Jiaotong University
Toshiyuki Takagi
Toshiyuki Takagi Tohoku University
Jinxiong Zhou
Jinxiong Zhou Xi'an Jiaotong University
Alexei R. Khokhlov
Alexei R. Khokhlov Lomonosov Moscow State University
Jian Ping Gong
Jian Ping Gong Hokkaido University
Zhimao Yang
Zhimao Yang Xi'an Jiaotong University
János Kertész
János Kertész Central European University
Bastien Chopard
Bastien Chopard University of Geneva
Shaohua Jiang
Shaohua Jiang Nanjing Forestry University

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