D-Index & Metrics Best Publications

D-Index & Metrics D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines.

Discipline name D-index D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines. Citations Publications World Ranking National Ranking
Chemistry D-index 79 Citations 26,420 671 World Ranking 2082 National Ranking 127

Overview

What is he best known for?

The fields of study he is best known for:

  • Optics
  • Organic chemistry
  • Liquid crystal

Liquid crystal, Optics, Condensed matter physics, Ferroelectricity and Crystallography are his primary areas of study. His Liquid crystal research is multidisciplinary, incorporating elements of Antiferroelectricity, Phase transition, Phase, Molecule and Bent molecular geometry. The various areas that Hideo Takezoe examines in his Optics study include Optoelectronics, Switching time, Phase and OLED.

The Condensed matter physics study combines topics in areas such as Bistability, Spontaneous polarization, Tilt and Dielectric. His Ferroelectricity study combines topics in areas such as Transmittance, Second-harmonic generation, Nucleation, Polarization and Hysteresis. His research in Crystallography intersects with topics in Mesophase, Layer, Mesogen, Stereochemistry and Diffraction.

His most cited work include:

  • Distinct ferroelectric smectic liquid crystals consisting of banana shaped achiral molecules (1028 citations)
  • Bent-Core Liquid Crystals: Their Mysterious and Attractive World (640 citations)
  • Antiferroelectric Chiral Smectic Phases Responsible for the Trislable Switching in MHPOBC (583 citations)

What are the main themes of his work throughout his whole career to date?

The scientist’s investigation covers issues in Liquid crystal, Optics, Crystallography, Condensed matter physics and Phase. His Liquid crystal study combines topics from a wide range of disciplines, such as Antiferroelectricity, Ferroelectricity, Molecule and Phase transition. His Optics research includes themes of Layer and Molecular physics.

His Crystallography study integrates concerns from other disciplines, such as Mesogen, Chirality, Stereochemistry, Diffraction and Bent molecular geometry. His biological study spans a wide range of topics, including Tilt and Dielectric. His Phase research integrates issues from Isotropy, Texture and Birefringence.

He most often published in these fields:

  • Liquid crystal (64.50%)
  • Optics (32.81%)
  • Crystallography (29.00%)

What were the highlights of his more recent work (between 2008-2018)?

  • Liquid crystal (64.50%)
  • Optics (32.81%)
  • Crystallography (29.00%)

In recent papers he was focusing on the following fields of study:

His primary areas of study are Liquid crystal, Optics, Crystallography, Condensed matter physics and Phase. His Liquid crystal research is multidisciplinary, incorporating perspectives in Bent molecular geometry, Molecule and Phase transition. Hideo Takezoe combines subjects such as Layer and Polymer with his study of Optics.

His biological study deals with issues like Columnar phase, which deal with fields such as Discotic liquid crystal. His Condensed matter physics research incorporates elements of Second-harmonic generation, Dielectric, Ferroelectricity, Polarization and Voltage. His study in Phase is interdisciplinary in nature, drawing from both Chemical physics and Atmospheric temperature range.

Between 2008 and 2018, his most popular works were:

  • Light extraction from organic light-emitting diodes enhanced by spontaneously formed buckles (477 citations)
  • Ferroelectric columnar liquid crystal featuring confined polar groups within core-shell architecture. (131 citations)
  • Liquid crystalline corannulene responsive to electric field. (130 citations)

In his most recent research, the most cited papers focused on:

  • Optics
  • Organic chemistry
  • Molecule

Hideo Takezoe spends much of his time researching Liquid crystal, Optics, Condensed matter physics, Crystallography and Molecule. His Liquid crystal research includes elements of Chirality, Bent molecular geometry and Phase. Hideo Takezoe has included themes like Single domain and Atmospheric temperature range in his Optics study.

His Condensed matter physics research incorporates themes from Polarization and Ferroelectricity. His Crystallography study which covers Mesophase that intersects with Phase transition. His studies in Molecule integrate themes in fields like Nanotechnology, Stereochemistry and Polymer, Liquid crystalline.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

Distinct ferroelectric smectic liquid crystals consisting of banana shaped achiral molecules

T. Niori;T. Sekine;J. Watanabe;T. Furukawa.
Journal of Materials Chemistry (1996)

1660 Citations

Bent-Core Liquid Crystals: Their Mysterious and Attractive World

Hideo Takezoe;Yoichi Takanishi.
Japanese Journal of Applied Physics (2006)

1056 Citations

Antiferroelectric Chiral Smectic Phases Responsible for the Trislable Switching in MHPOBC

A. D. L. Chandani;Ewa Gorecka;Yukio Ouchi;Hideo Takezoe.
Japanese Journal of Applied Physics (1989)

927 Citations

Direct Method with Triangular Waves for Measuring Spontaneous Polarization in Ferroelectric Liquid Crystals

Keita Miyasato;Shigeharu Abe;Hideo Takezoe;Atsuo Fukuda.
Japanese Journal of Applied Physics (1983)

750 Citations

Antiferroelectric chiral smectic liquid crystals

Atsuo Fukuda;Yoichi Takanishi;Tadaaki Isozaki;Ken Ishikawa.
Journal of Materials Chemistry (1994)

712 Citations

Light extraction from organic light-emitting diodes enhanced by spontaneously formed buckles

Won Hoe Koo;Soon Moon Jeong;Fumito Araoka;Ken Ishikawa.
Nature Photonics (2010)

616 Citations

Tristable Switching in Surface Stabilized Ferroelectric Liquid Crystals with a Large Spontaneous Polarization

A. D. L. Chandani;Takashi Hagiwara;Yoshi-ichi Suzuki;Yukio Ouchi.
Japanese Journal of Applied Physics (1988)

503 Citations

Novel Phases Exhibiting Tristable Switching

A. D. L. Chandani;Yukio Ouchi;Hideo Takezoe;Atsuo Fukuda.
Japanese Journal of Applied Physics (1989)

488 Citations

Origin of Helix in Achiral Banana-Shaped Molecular Systems

Tomoko Sekine;Teruki Niori;Masato Sone;Junji Watanabe.
Japanese Journal of Applied Physics (1997)

358 Citations

Polarization-modulated smectic liquid crystal phases.

D. A. Coleman;J. Fernsler;N. Chattham;M. Nakata.
Science (2003)

351 Citations

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