Zobrazeno 1 - 10
of 15
pro vyhledávání: '"Kazuhito WADA"'
Publikováno v:
Journal of CO2 Utilization, Vol 81, Iss , Pp 102718- (2024)
Herein, we present a practical strategy to enhance the performance of a multiphase system for bicarbonate hydrogenation based on a molecular Ru-PNP pincer catalyst. This study demonstrates that the use of organic antioxidants not only mitigates catal
Externí odkaz:
https://doaj.org/article/2024e84cef5d4fbf8f56187bace9eb07
Autor:
Mei Sano, Ryoki Yada, Yusuke Nomura, Takahiro Kusukawa, Hiroshi Ando, Keiji Matsumoto, Kazuhito Wada, Tomonari Tanaka, Hitomi Ohara, Yuji Aso
Publikováno v:
Microorganisms, Vol 8, Iss 6, p 913 (2020)
The authors wish to make the following correction to this paper [...]
Externí odkaz:
https://doaj.org/article/e9748208cdeb43eaa4174c05c6fc35e3
Autor:
Mei Sano, Ryoki Yada, Yusuke Nomura, Takahiro Kusukawa, Hiroshi Ando, Keiji Matsumoto, Kazuhito Wada, Tomonari Tanaka, Hitomi Ohara, Yuji Aso
Publikováno v:
Microorganisms, Vol 8, Iss 5, p 648 (2020)
Recently, we developed a unique microbial screening method based on the Mizoroki–Heck reaction for itaconic acid (IA)-producing fungi. This method revealed that 37 out of 240 fungal strains isolated from soils produce vinyl compounds, including IA.
Externí odkaz:
https://doaj.org/article/be4350324c384ec1bf224432eac24c11
Autor:
Hiroto Takahashi, Kazuhito Wada, Kosei Tanaka, Kyosuke Fujikawa, Yutaka Hitomi, Takatsugu Endo, Masahito Kodera
Publikováno v:
Bulletin of the Chemical Society of Japan. 95:1148-1155
Autor:
Yusuke Nomura, Tomonari Tanaka, Y. Aso, Keiji Matsumoto, Kazuhito Wada, Rintaro Sato, H. Ohara, Mei Sano
Publikováno v:
Journal of applied microbiologyReferences. 130(6)
AIM: Aspergillus niger S17‐5 produces two alkylitaconic acids, 9‐hydroxyhexylitaconic acid (9‐HHIA) and 10‐hydroxyhexylitaconic acid (10‐HHIA), which have cytotoxic and polymer building block properties. In this study, we characterized the
Autor:
Tomonari Tanaka, Takashi Aoki, Ryoki Yada, Hitomi Ohara, Kazuhito Wada, Yuji Aso, Mei Sano, Keiji Matsumoto, Takahiro Kusukawa
Publikováno v:
Materials, Vol 13, Iss 2707, p 2707 (2020)
Materials
Volume 13
Issue 12
Materials
Volume 13
Issue 12
Renewable vinyl compounds itaconic acid (IA) and its derivative 10-hydroxyhexylitaconic acid (10-HHIA) are naturally produced by fungi from biomass. This provides the opportunity to develop new biobased polyvinyls from IA and 10-HHIA monomers. In thi
Autor:
Tomonari Tanaka, Kazuhito Wada, Takahiro Kusukawa, Hitomi Ohara, Yusuke Nomura, Mei Sano, Keiji Matsumoto, Yuji Aso, Hiroshi Ando, Ryoki Yada
Publikováno v:
Microorganisms
Volume 8
Issue 5
Microorganisms, Vol 8, Iss 648, p 648 (2020)
Volume 8
Issue 5
Microorganisms, Vol 8, Iss 648, p 648 (2020)
Recently, we developed a unique microbial screening method based on the Mizoroki&ndash
Heck reaction for itaconic acid (IA)-producing fungi. This method revealed that 37 out of 240 fungal strains isolated from soils produce vinyl compounds, incl
Heck reaction for itaconic acid (IA)-producing fungi. This method revealed that 37 out of 240 fungal strains isolated from soils produce vinyl compounds, incl
Autor:
Keiji Matsumoto, Ryoki Yada, Hiroshi Ando, Tomonari Tanaka, Mei Sano, Takahiro Kusukawa, Kazuhito Wada, Yuji Aso, Hitomi Ohara, Yusuke Nomura
Publikováno v:
Microorganisms, Vol 8, Iss 913, p 913 (2020)
The authors wish to make the following correction to this paper [...]
Autor:
Tadao Hakushi, Kazuhito Wada, Mikio Ouchi, Satoko Nakamura, Yu Liu, Yoshihisa Inoue, Satoshi Nagamune
Publikováno v:
Bulletin of the Chemical Society of Japan. 63:1260-1262
Oligoethylene glycols and some related alcohols were efficiently tosylated with p-toluenesulfonyl chloride in a tetrahydrofuran–water (1:1) mixture in the presence of excess sodium hydroxide. This method is advantageous over the conventional tosyla
Publikováno v:
Chemistry Letters. 17:1005-1008
14,16-Bridged 16-crown-5 derivatives possess unusually high cation-binding abilities for most cations, maintaining the original relative cation-selectivity for Na+ and Ag+, for which the fixed conformation is responsible.