2022

(論文)

  1. M. Wei, X. Du, Y. Zhang, X. Shan, W. Wang, Y. Chen, D. Jiang, F. Xu, H. Shiigi, Z. Chen*,
    Ultrasensitive self-driven photoelectrochemical aptasensor for lincomycin detection based on oxygen vacancy-tunable BiOBr nanosheet coupled with dual-function of N-doped Ti3C2 quantum dots,
    Biosens. Bioelectron. X, 12, 100266 (8 pages) (2022).
  2. S. Tanabe, S. Itagaki, K. Matsui, S. Nishii, Y. Yamamoto, Y. Sadanaga, H. Shiigi*,
    Simultaneous Optical Detection of Multiple Bacterial Species Using Nanometer-Scaled Metal−Organic Hybrids (Cover),
    Anal. Chem., 94(31), 10984-10990 (2022).
  3. S. Itagaki, S. Tanabe, H. Ikeda, X. Shan, S. Nishii, Y. Yamamoto, Y. Sadanaga, Z. Chen, H. Shiigi*,
    Development of highly sensitive optical nanoantenna for bacterial detection (Cover),
    Analyst, 147, 2355-2360 (2022).
  4. Q. Cao, D. Jiang, F. Xu, J. Wen, W. Wang, H. Shiigi, Z. Chen*,
    Au-doped MOFs catalyzed electrochemiluminescence platform coupled with target-induced self-enrichment for detection of synthetic cannabinoid RCS-4,
    Mikrochimica acta, 189, 313-313 (2022).
  5. M. He, D. Wang, H. Shiigi, C. Liu, W. Wang, X. Shan, Z. Chen*,
    Black phosphorous dots phosphatized bio-based carbon nanofibers/bimetallic organic framework as catalysts for oxygen evolution reaction,
    International Journal of Hydrogen Energy, 47, 17194-17203 (2022).
  6. C. Kojima*, H. Xia, Y. Yamamoto, H. Shiigi,
    A Naked-eye Colorimetric pH and Temperature Sensor Based on Gold Nanoparticle-Loaded Stimuli-Sensitive Dendrimers(Front Cover),
    ChemNanoMat, 8, e202100442(6 pages) (2022).
  7. J. Wen, D. Jiang, X. Shan, W. Wang, F. Xu, H. Shiigi, Z. Chen*,
    Ternary electrochemiluminescence biosensor based on black phosphorus quantum dots doped perylene derivative and metal organic frameworks as a coreaction accelerator for the detection of chloramphenicol,
    Microchemical Journal, 172, e106927(9 pages) (2022).
  8. H. Ikeda, S. Itagaki, S. Nishii, Y. Yamamoto, Y. Sadanaga, H. Shiigi*,
    Electrochemical measurement of microbial activity,
    Review of Polarography, 68(1), 15-25 (2022).
  9. R. Nojiri, K. Osada, Y. Kurosaki, M. Matsuoka, Y. Sadanaga*,
    Variations in gaseous nitric acid concentrations at Tottori, Japan: Long-range transport from the Asian continent and local production,
    Atmospheric Environment,274, 118988 (8 pages) (2022).
  10.  N. Kohno*, J. Zhou, J. Li, M. Takemura, N. Ono, Y. Sadanaga, Y. Nakashima, K. Sato, S. Kato, Y. Sakamoto,Y. Kajii*,
    Impacts of missing OH reactivity and aerosol uptake of HO2 radicals on tropospheric O3 production during the AQUAS-Kyoto summer campaign in 2018
    Atmospheric Environment, 281, 119130 (11 pages) (2022).
  11.  N. K. Kim, Y. P. Kim, Y. S. Ghim, M. J. Song, C. H. Kim, K. S. Jang, K. Y. Lee, H. J. Shin, J. S. Jung, Z. Wu, A. Matsuki, N. Tang, Y. Sadanaga, S. Kato, A. Natsagdorj, S. Tseren-Ochir, B. Baldorj, C. K. Song, J. Y. Lee*,
    Spatial distribution of PM2.5 chemical components during winter at five sites in Northeast Asia: High temporal resolution measurement study
    Atmospheric Environment, 290, 119359 (14 pages) (2022).
  12.  S. Itahashi*, S. Hattori*, A. Ito, Y. Sadanaga, N. Yoshida, A. Matsuki,
    Role of dust and iron solubility in sulfate formation during the long-range transport in East Asia evidenced by 17O-excess signatures
    Environmental Science and Technology, 56, 13634-13643 (2022).

(著書)

  1. 松井響平,板垣賢広,田邉 壮,孫 術益,山本陽二郎,椎木 弘,
    金ナノ粒子とセルロースナノファイバとの複合化とその応用(分担),
    S&T, 523-533 (2022).

(記事)

  1. 椎木 弘*
    金属ナノ粒子と高分子材料のハイブリッド化による新素材の開発
    Web Journal, 28(7), 7-10 (2022).
  2. 田邉 壮,板垣賢広,松井 響平
    金属から出る光の色を利用し、食中毒の原因菌を迅速かつ同時に識別することに成功!
    Chem-Station (2022/11/2).  https://www.chem-station.com/blog/2022/10/nsmoh.html
  3. 板垣賢広,西井成樹,山本陽二郎,定永靖宗,椎木 弘*
    高感度光アンテナによる微生物検査法の開発
    BIO INDUSTRY, 39(7), 64-71 (2022).
  4. 梶井克純*, 坂本陽介, 河野七瀬, 佐藤 圭, 森野 悠, 吉野彩子, 高見昭憲, 定永靖宗,
    大気中過酸化ラジカル (HO2 及び RO2) の化学ダイナミクス研究 —オゾン生成機構の完全理解とエアロゾル変質過程の解明に向けて—,
    大気環境学会誌, 57 (1), A3-A6 (2022).
  5. 定永靖宗*, 井上和也, 河野七瀬, 坂本陽介, 佐藤 圭, 森野 悠, 高見昭憲, 吉野彩子, 梶井克純,
    実大気観測によるオゾン生成レジームの直接評価,
    大気環境学会誌, 57 (1), A7-A9 (2022).
  6. 佐藤 圭*, 森野悠, 坂本陽介, 定永靖宗, 今村隆史, 梶井克純
    室内実験とモデル計算によるHOx 反応性に関する研究: オゾン生成ポテンシャルにエアロゾルが及ぼす効果の解明に向けて,
    大気環境学会誌, 57 (1), A10-A13 (2022).
  7. 山田 丸*, 定永靖宗*,
    特集にあたって: フィールドエアロゾル観測のプラットフォーム,
    エアロゾル研究, 37, 86 (2022).
  8. 定永靖宗*
    窒素酸化物の連続計測-SDGs との関連性-,
    ぶんせき, 460-464 (2022).