World's Best Scientists 2026 revealed!
Michael G. Helander

Michael G. Helander

D-Index & Metrics

Materials Science

D-Index
43
Citations
8363
World Ranking
12256
National Ranking
212

Overview

Michael G. Helander is affiliated with the University of Toronto in Canada, specializing in Engineering with a focus on Electrical and Electronic Engineering. Their research spans multiple subfields including Atomic and Molecular Physics, and Optics, Surfaces, Coatings and Films, Computational Mechanics, and Biomedical Engineering.

The scientist's main research topics include Thin-Film Transistor Technologies, Organic Light-Emitting Diodes Research, Quantum and electron transport phenomena, Molecular Junctions and Nanostructures, 3D IC and TSV technologies, Advanced Memory and Neural Computing, and Organic Electronics and Photovoltaics.

Michael G. Helander has contributed to a number of scholarly papers, including:

  • 55-1: Invited Paper: Self-Assembled Cathode Patterning in AMOLED for Under-Display Camera, 2020, SID Symposium Digest of Technical Papers
  • Estimating Phosphorescent Emission Energies in IrIII Complexes Using Large-Scale Quantum Computing Simulations, 2022, Angewandte Chemie International Edition
  • 54-2: Diffraction Issues of Under Display IR Sensor in AMOLED Displays, 2024, SID Symposium Digest of Technical Papers
  • Self-Assembled Cathode Patterning in AMOLEDs, 2021, Information Display
  • Estimating Phosphorescent Emission Energies in IrIII Complexes Using Large-Scale Quantum Computing Simulations, 2022, Angewandte Chemie

The frequent publication venues for their work include the SID Symposium Digest of Technical Papers, Angewandte Chemie International Edition, Information Display, Angewandte Chemie, and arXiv (Cornell University).

Their collaborative network involves frequent co-authors such as Yi-Lu Chang, Jacky Qiu, Zhibin Wang, Yingjie Zhang, and Scott N. Genin.

Best Publications

  • Universal energy-level alignment of molecules on metal oxides

    Mark T. Greiner;Michael G. Helander;Wing Man Tang;Zhi Bin Wang

  • Transition Metal Oxide Work Functions: The Influence of Cation Oxidation State and Oxygen Vacancies

    Mark T. Greiner;Lily Chai;Michael G. Helander;Wing Man Tang

  • Chlorinated Indium Tin Oxide Electrodes with High Work Function for Organic Device Compatibility

    M. G. Helander;Z. B. Wang;J. Qiu;M. T. Greiner

  • Unlocking the full potential of organic light-emitting diodes on flexible plastic

    Z. B. Wang;M. G. Helander;J. Qiu;D. P. Puzzo

  • Metal/Metal-Oxide Interfaces: How Metal Contacts Affect the Work Function and Band Structure of MoO3

    Mark T. Greiner;Lily Chai;Michael G. Helander;Wing Man Tang

  • Work function of fluorine doped tin oxide

    M. G. Helander;M. T. Greiner;Z. B. Wang;Wing Man Tang

  • Highly Efficient Blue Phosphorescence from Triarylboron-Functionalized Platinum(II) Complexes of N-Heterocyclic Carbenes

    Zachary M. Hudson;Christina Sun;Michael G. Helander;Yi-Lu Chang

  • Effects of processing conditions on the work function and energy-level alignment of NiO thin films

    Mark T. Greiner;Michael G. Helander;Zhi Bin Wang;Wing Man Tang

  • Highly Efficient Warm White Organic Light-Emitting Diodes by Triplet Exciton Conversion

    Yi-Lu Chang;Yin Song;Zhibin Wang;Michael G. Helander

  • Visible Colloidal Nanocrystal Silicon Light-Emitting Diode

    Daniel P Puzzo;Eric J Henderson;Michael G Helander;ZhiBin Wang

  • Enhancing Phosphorescence and Electrophosphorescence Efficiency of Cyclometalated Pt(II) Compounds with Triarylboron

    Zachary M. Hudson;Christina Sun;Michael G. Helander;Hazem Amarne

  • Fluorinated Phenoxy Boron Subphthalocyanines in Organic Light-Emitting Diodes

    Graham E. Morse;Michael G. Helander;Jozef F. Maka;Zheng-Hong Lu

  • N‐Heterocyclic Carbazole‐Based Hosts for Simplified Single‐Layer Phosphorescent OLEDs with High Efficiencies

    Zachary M. Hudson;Zhibin Wang;Michael G. Helander;Zheng-Hong Lu

  • Simple and High Efficiency Phosphorescence Organic Light-Emitting Diodes with Codeposited Copper(I) Emitter

    Zhiwei Liu;Zhiwei Liu;Jacky Qiu;Feng Wei;Jianqiang Wang

  • Analysis of charge-injection characteristics at electrode-organic interfaces: Case study of transition-metal oxides

    Z. B. Wang;M. G. Helander;M. T. Greiner;J. Qiu

  • Highly simplified phosphorescent organic light emitting diode with >20% external quantum efficiency at >10,000 cd/m2

    Z. B. Wang;M. G. Helander;J. Qiu;D. P. Puzzo

  • A metallic molybdenum suboxide buffer layer for organic electronic devices

    M. T. Greiner;M. G. Helander;Z. B. Wang;Wing Man Tang

  • Carrier mobility of organic semiconductors based on current-voltage characteristics

    Z. B. Wang;M. G. Helander;M. T. Greiner;J. Qiu

  • Band alignment at metal/organic and metal/oxide/organic interfaces

    M. G. Helander;Z. B. Wang;J. Qiu;Z. H. Lu

  • C60:LiF blocking layer for environmentally stable bulk heterojunction solar cells.

    Dong Gao;Michael G. Helander;Zhi-Bin Wang;Danny P. Puzzo

Frequent Co-Authors

Zheng-Hong Lu
Zheng-Hong Lu University of Toronto
Dayan Ban
Dayan Ban University of Waterloo
Suning Wang
Suning Wang Queen's University
Geoffrey A. Ozin
Geoffrey A. Ozin University of Toronto
Paul O'Brien
Paul O'Brien University of Manchester
Philip J. Poole
Philip J. Poole National Research Council Canada
H. C. Liu
H. C. Liu Shanghai Jiao Tong University
Gregory D. Scholes
Gregory D. Scholes Princeton University
Mark E. Thompson
Mark E. Thompson University of Southern California
Sai-Wing Tsang
Sai-Wing Tsang City University of Hong Kong

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