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Materials Science

D-Index
40
Citations
5930
World Ranking
12828
National Ranking
3452

Overview

Sakae Tanemura is affiliated with Guilin University of Electronic Technology in China. Their research primarily spans the fields of materials science and engineering, with a focused engagement in materials chemistry, renewable energy, sustainability, and electrical and electronic engineering. Tanemura's work explores key topics including solar-powered water purification methods, membrane separation technologies, advanced thermoelectric materials and devices, thermal properties of materials, solar thermal and photovoltaic systems, advanced battery materials and technologies, as well as supercapacitor materials and fabrication.

Tanemura has contributed to several scientific publications published in notable journals. Recent papers include:

  • "Strategies for breaking theoretical evaporation limitation in direct solar steam generation," 2020, Solar Energy Materials and Solar Cells
  • "Strategies for enhancing ionic conductivity and energy density of gel polymer electrolytes for next-generation flexible energy storage devices," 2023, Sustainable Materials and Technologies
  • "Bifunctional polypyrrole-based conductive paper towards simultaneous efficient solar-driven water evaporation and electrochemical energy storage," 2022, Nanoscale
  • "Realizing high thermoelectric performance in p-type Si1-x-yGexSny thin films at ambient temperature by Sn modulation doping," 2020, Applied Physics Letters
  • "Characterisation of the temperature-dependent M1 to R phase transition in W-doped VO2 nanorod aggregates by Rietveld refinement and theoretical modelling," 2020, Physical Chemistry Chemical Physics

The publication venues where Tanemura's work appears include:

  • Solar Energy Materials and Solar Cells
  • Sustainable Materials and Technologies
  • Nanoscale
  • Applied Physics Letters
  • Physical Chemistry Chemical Physics

Frequent coauthors who have collaborated with Tanemura are:

  • Lei Miao
  • Xiaojiang Mu
  • Yulian Chen
  • Ying Peng
  • Pengfei Wang

The scientific topics and subfields addressed by Tanemura show an emphasis on combining energy-related research with functional material development. This includes improving ionic conductivity in electrolytes, enhancing solar steam generation efficiency, and exploring thermoelectric properties with modulation doping techniques. The integration of electrochemical energy storage mechanisms with solar-driven water evaporation processes also features prominently in the research portfolio.

Best Publications

  • Preparation and characterization of polycrystalline anatase and rutile TiO2 thin films by rf magnetron sputtering

    L Miao;P Jin;K Kaneko;A Terai

  • The emergence of solar thermal utilization: Solar-driven steam generation

    Ziyang Deng;Jianhua Zhou;Lei Miao;Chengyan Liu

  • Nickel Oxide Electrochromic Thin Films Prepared by Reactive DC Magnetron Sputtering

    Kazuki Yoshimura;Takeshi Miki;Sakae Tanemura

  • Optical properties of polycrystalline and epitaxial anatase and rutile TiO2 thin films by rf magnetron sputtering

    S. Tanemura;L. Miao;P. Jin;Kenji Kaneko

  • Fabrication, characterization and Raman study of anatase-TiO2 nanorods by a heating-sol–gel template process

    Lei Miao;Sakae Tanemura;Shoichi Toh;Kenji Kaneko

  • A mimetic transpiration system for record high conversion efficiency in solar steam generator under one-sun

    Peng Fei Liu;Lei Miao;Ziyang Deng;Jianhua Zhou

  • Formation and Thermochromism of VO2 Films Deposited by RF Magnetron Sputtering at Low Substrate Temperature

    Ping Jin;Sakae Tanemura

  • A facile process to prepare copper oxide thin films as solar selective absorbers

    Xiudi Xiao;Lei Miao;Gang Xu;Limei Lu

  • Fabrication and characterization of anatase/rutile–TiO2 thin films by magnetron sputtering: a review

    Sakae Tanemura;Lei Miao;Wilfried Wunderlich;Masaki Tanemura

  • Low resistivity p-ZnO films fabricated by sol-gel spin coating

    Yongge Cao;Lei Miao;Sakae Tanemura;Masaki Tanemura

  • Dependence of microstructure and thermochromism on substrate temperature for sputter-deposited VO2 epitaxial films

    P. Jin;K. Yoshimura;S. Tanemura

  • Extremely high water-production created by a nanoink-stained PVA evaporator with embossment structure

    Ziyang Deng;Ziyang Deng;Lei Miao;Lei Miao;Peng Fei Liu;Jianhua Zhou

  • Solution-processed VO2-SiO2 composite films with simultaneously enhanced luminous transmittance, solar modulation ability and anti-oxidation property.

    Lili Zhao;Lei Miao;Chengyan Liu;Chao Li

  • Efficient, low-cost solar thermoelectric cogenerators comprising evacuated tubular solar collectors and thermoelectric modules

    Ming Zhang;Lei Miao;Yi Pu Kang;Sakae Tanemura;Sakae Tanemura

  • The improvement of optical reactivity for TiO2 thin films by N2–H2 plasma surface-treatment

    Lei Miao;Sakae Tanemura;Hiroshige Watanabe;Yukimasa Mori

  • Relationship between transition temperature and x in V1−xWxO2 films deposited by dual-target magnetron sputtering

    Ping Jin;Sakae Tanemura

  • Optical constants of V(1-x)W(x)O(2) Films.

    Masato Tazawa;Ping Jin;Sakae Tanemura

  • Heating-sol-gel template process for the growth of TiO2 nanorods with rutile and anatase structure

    Lei Miao;Sakae Tanemura;Shoichi Toh;Kenji Kaneko

  • Field electron emission from sputter-induced carbon nanofibers grown at room temperature

    Masaki Tanemura;J. Tanaka;K. Itoh;Y. Fujimoto

  • Flame-treated and fast-assembled foam system for direct solar steam generation and non-plugging high salinity desalination with self-cleaning effect

    Peng Fei Liu;Lei Miao;Ziyang Deng;Jianhua Zhou

  • Morphology Control of Ag Polyhedron Nanoparticles for Cost-Effective and Fast Solar Steam Generation

    Hailong Wang;Lei Miao;Sakae Tanemura

  • Microstructure and bactericidal ability of photocatalytic TiO2 thin films prepared by rf helicon magnetron sputtering

    Lei Miao;Sakae Tanemura;Yoichi Kondo;Misao Iwata

  • Characterization of niobium oxide electrochromic thin films prepared by reactive d.c. magnetron sputtering

    Kazuki Yoshimura;Takeshi Miki;Saburo Iwama;Sakae Tanemura

Frequent Co-Authors

Lei Miao
Lei Miao Shibaura Institute of Technology
Masaki Tanemura
Masaki Tanemura Nagoya Institute of Technology
Kenji Kaneko
Kenji Kaneko Kyushu University
Lixian Sun
Lixian Sun Guilin University of Electronic Technology
Hui Ying Yang
Hui Ying Yang National University of Singapore
Shu Ping Lau
Shu Ping Lau Hong Kong Polytechnic University
Rong Huang
Rong Huang East China Normal University
Tetsuo Soga
Tetsuo Soga Nagoya Institute of Technology
Masayoshi Umeno
Masayoshi Umeno Chubu University
Meiyong Liao
Meiyong Liao National Institute for Materials Science

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