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Takahito Ono

Takahito Ono

D-Index & Metrics

Engineering and Technology

D-Index
45
Citations
8883
World Ranking
5417
National Ranking
87

Overview

Takahito Ono is affiliated with Tohoku University in Japan and has a substantial body of research primarily in engineering and materials science. Their work intersects various interdisciplinary fields, reflecting expertise in both fundamental and applied sciences.

The main fields of study for Takahito Ono include:

  • Engineering
  • Materials Science
  • Physics and Astronomy

Their research also extends into specific subfields, notably:

  • Atomic and Molecular Physics, and Optics
  • Electrical and Electronic Engineering
  • Materials Chemistry
  • Biomedical Engineering
  • Mechanical Engineering

Takahito Ono focuses on topics that include:

  • Advanced Thermoelectric Materials and Devices
  • Mechanical and Optical Resonators
  • Advanced MEMS and NEMS Technologies
  • Advanced Sensor and Energy Harvesting Materials
  • Innovative Energy Harvesting Technologies
  • Acoustic Wave Resonator Technologies
  • Magnetic properties of thin films

Among their recent papers are:

  • Microfabrication of functional polyimide films and microstructures for flexible MEMS applications, 2023, Microsystems & Nanoengineering
  • Theoretical and experimental investigation of a thermoelectric generator (TEG) integrated with a phase change material (PCM) for harvesting energy from ambient temperature changes, 2020, Energy Reports
  • Thermoelectric generator with a high integration density for portable and wearable self-powered electronic devices, 2021, Energy Conversion and Management
  • Thermoelectric generators for heat harvesting: From material synthesis to device fabrication, 2020, Energy Conversion and Management
  • Aluminum doped zinc oxide deposited by atomic layer deposition and its applications to micro/nano devices, 2021, Scientific Reports

Takahito Ono has frequently published in several venues including:

  • ECS Meeting Abstracts
  • Mechanical Systems and Signal Processing
  • IEEJ Transactions on Sensors and Micromachines
  • Energy Conversion and Management
  • IEEE Sensors Journal

Their collaborative network includes frequent coauthors such as:

  • Nguyễn Văn Toàn
  • Masaya Toda
  • Naoki Inomata
  • Trương Thị Kim Tươi
  • Dong F. Wang

Best Publications

  • Ultrathin single-crystalline-silicon cantilever resonators: Fabrication technology and significant specimen size effect on Young’s modulus

    Xinxin Li;Takahito Ono;Yuelin Wang;Masayoshi Esashi

  • Energy dissipation in submicrometer thick single-crystal silicon cantilevers

    Jinling Yang;T. Ono;M. Esashi

  • Surface effects and high quality factors in ultrathin single-crystal silicon cantilevers

    Jinling Yang;Takahito Ono;Masayoshi Esashi

  • Mass sensing of adsorbed molecules in sub-picogram sample with ultrathin silicon resonator

    Takahito Ono;Xinxin Li;Hidetoshi Miyashita;Masayoshi Esashi

  • Mechanical behavior of ultrathin microcantilever

    Jinling Yang;Takahito Ono;Masayoshi Esashi

  • Micro-discharge and electric breakdown in a micro-gap

    Takahito Ono;Dong Youn Sim;Masayoshi Esashi

  • Large fluffy particles: a possible explanation of the optical properties of interplanetary dust.

    R. H. Giese;K. Weiss;R. H. Zerull;T. Ono

  • Si nanowire growth with ultrahigh vacuum scanning tunneling microscopy

    Takahito Ono;Hiroaki Saitoh;Masayoshi Esashi

  • Micro instrumentation for characterizing thermoelectric properties of nanomaterials

    Takahito Ono;Chia Cheng Fan;Masayoshi Esashi

  • Microfabrication of functional polyimide films and microstructures for flexible MEMS applications

    Unknown

  • Nonuniform silicon oxidation and application for the fabrication of aperture for near-field scanning optical microscopy

    Phan Ngoc Minh;Takahito Ono;Masayoshi Esashi

  • Pico calorimeter for detection of heat produced in an individual brown fat cell

    Naoki Inomata;Masaya Toda;Masaaki Sato;Akihiko Ishijima

  • Theoretical and experimental investigation of a thermoelectric generator (TEG) integrated with a phase change material (PCM) for harvesting energy from ambient temperature changes

    Truong Thi Kim Tuoi;Nguyen Van Toan;Takahito Ono

  • A physical mechanism of current-induced resistance decrease in heavily doped polysilicon resistors

    K. Kato;T. Ono;Y. Amemiya

  • A piezodriven XY-microstage for multiprobe nanorecording

    Deyuan Zhang;Chienliu Chang;Takahito Ono;Masayoshi Esashi

  • Investigating surface stress: Surface loss in ultrathin single-crystal silicon cantilevers

    Jinling Yang;Takahito Ono;Masayoshi Esashi

  • Effect of Varidase (streptokinase) on biofilm formed by Staphylococcus aureus.

    K. Nemoto;K. Hirota;T. Ono;K. Murakami

  • Thermal treatments and gas adsorption influences on nanomechanics of ultra-thin silicon resonators for ultimate sensing

    Dong F Wang;Takahito Ono;Masayoshi Esashi

  • Microprobe array with electrical interconnection for thermal imaging and data storage

    Dong-Weon Lee;T. Ono;T. Abe;M. Esashi

  • Electrical trimming of heavily doped polycrystalline silicon resistors

    Y. Amemiya;T. Ono;K. Kato

  • Electric-field-enhanced growth of carbon nanotubes for scanning probe microscopy

    Takahito Ono;Hidetoshi Miyashita;Masayoshi Esashi

  • Mass sensing with resonating ultra-thin silicon beams detected by a double-beam laser Doppler vibrometer

    Takahito Ono;Masayoshi Esashi

Frequent Co-Authors

Masayoshi Esashi
Masayoshi Esashi Tohoku University
Seiji Samukawa
Seiji Samukawa Tohoku University
Toshihiro Itoh
Toshihiro Itoh University of Tokyo
Toshiyuki Hashida
Toshiyuki Hashida Tohoku University
Eiji Saitoh
Eiji Saitoh University of Tokyo
Yasuo Cho
Yasuo Cho Tohoku University
Toshio Sakurai
Toshio Sakurai Tohoku University
Satoshi Yamasaki
Satoshi Yamasaki Kanazawa University
Ryutaro Maeda
Ryutaro Maeda National Institute of Advanced Industrial Science and Technology
Liang He
Liang He Sichuan University

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