理工学部

堀越 智

Horikoshi Satoshi

基本情報

所属
上智大学 理工学部物質生命理工学科 教授
学位
学士(化学)(明星大学)
修士(化学)(明星大学)
博士(化学)(明星大学)

連絡先
horikosisophia.ac.jp
研究者番号
50424784
J-GLOBAL ID
201201099074346669
researchmap会員ID
7000000334

(研究テーマ)
新規マイクロ波光触媒法による環境浄化法の開発
災害地におけるマイクロ波無電極ランプを用いた迅速水処理法の開発
マイクロ波・マイクロリアクターを用いた新規ナノ粒子合成
マイクロ波磁場効果の解明
放射性物質吸着を目指した活性炭/ゼオライト複合材料の開発
生化学分野におけるマイクロ波の利用検討
光触媒を用いた光有機合成
光触媒を用いたCO2の固定化


論文

 242
  • Miki Takizawa, Takahiro Yamane, Akinobu Matsumoto, Takashi Miyazawa, Satoshi Horikoshi
    Molecules 31(7) 1068-1068 2026年3月24日  査読有り招待有り責任著者
    The development of sustainable and environmentally benign N-methylation methodologies is essential for enhancing sustainable synthetic practice in pharmaceutical manufacturing. In this study, we demonstrate that microwave heating (MWH) markedly enhanced the efficiency of cobalt-catalyzed N-methylation using methanol or methanol-d4 as green C1 sources. Compared with conventional heating (CH), MWH enabled highly efficient syntheses of key pharmaceutical intermediates—including 6-dimethylamino-1-hexanol, imipramine hydrochloride, and butenafine hydrochloride—under milder conditions and shorter reaction times and without generating hazardous halogen-containing waste. UV–vis spectroscopic analysis revealed that MWH accelerated the transformation of Co(acac)2 into catalytically active Co species by approximately four-fold, providing a mechanistic basis for the enhanced reactivity. We hypothesized that this effect was caused by the selective microwave heating of the catalyst, which in turn promoted the rapid generation of catalytically active species. Notably, MWH also significantly improved the N-trideuteromethylation of amines using methanol-d4, achieving a 95% yield for imipramine-d3 hydrochloride versus 32% under CH. Molecular dynamics simulations indicated that methanol-d4 exhibited slower dipole relaxation and enhanced cluster fragmentation under microwave fields, improving catalyst–substrate contact, while kinetic isotope effects stabilized reactive intermediates. These synergistic effects account for the pronounced microwave promotion observed in deuterated systems. Overall, the combination of MWH and cobalt catalysis offers an energy-efficient, waste-minimizing, and environmentally benign strategy for the scalable synthesis of both methylated and deuterated amines.
  • 堀越 智
    電気清浄 63(5) 323-331 2025年12月  査読有り招待有り筆頭著者
  • S. Horikoshi, S. Kawasako, N. Serpone
    Journal of oleo science 74 1047-1055 2025年10月  査読有り筆頭著者責任著者
  • Satoshi Horikoshi, Kanon Hirota, Nick Serpone
    Molecules 30(19) 3951-3951 2025年10月1日  査読有り招待有り筆頭著者責任著者
    This study addresses challenges in recycling electronic waste (e-waste) by developing a self-degrading electrical wire coating material using graphitic carbon nitride (g-C3N4). Two types, melamine-derived carbon nitride (MCN) and urea-derived carbon nitride (UCN), were synthesized and evaluated for their photocatalytic activity by measuring the decolorization rate of rhodamine-B (RhB). UCN demonstrated superior photocatalytic performance compared to the widely used TiO2. When incorporated into PVC film, UCN achieved a maximum weight loss of 68% in photodegradation tests after 40 days of irradiation, contributing to reduced environmental impact. A UCN-mixed coating for a vinyl-insulated cable prototype showed that photodecomposition in water facilitated copper wire separation. The study also indicated that water is vital for the decomposition process, while UCN enhanced stiffness and tensile strength of the material without compromising elongation and electrical insulation properties.
  • 堀越 智
    日本接着学会誌 61 185-191 2025年8月  査読有り招待有り筆頭著者責任著者

MISC

 55

書籍等出版物

 46

講演・口頭発表等

 508

担当経験のある科目(授業)

 8

共同研究・競争的資金等の研究課題

 30

メディア報道

 57

その他

 59