The Experts below are selected from a list of 1365 Experts worldwide ranked by ideXlab platform
Seiya Tsujimura - One of the best experts on this subject based on the ideXlab platform.
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stable immobilization of enzyme on pendant Glycidyl Group modified mesoporous carbon by graft polymerization of poly Glycidyl methacrylate
Bulletin of the Chemical Society of Japan, 2020Co-Authors: Isao Shitanda, Takanao Kato, Ryo Suzuki, Tatsuo Aikawa, Yoshinao Hoshi, Masayuki Itagaki, Seiya TsujimuraAbstract:Poly(Glycidyl methacrylate) (poly(GMA)) bearing pendant Glycidyl Groups, grafted on the surface of MgO-templated carbon (MgOC), is useful for forming strong multipoint covalent bonds with amino fun...
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Stable Immobilization of Enzyme on Pendant Glycidyl Group-Modified Mesoporous Carbon by Graft Polymerization of Poly(Glycidyl methacrylate)
'The Chemical Society of Japan', 2020Co-Authors: 辻村 清也, Isao Shitanda, Takanao Kato, Ryo Suzuki, Tatsuo Aikawa, Yoshinao Hoshi, Masayuki Itagaki, Seiya TsujimuraAbstract:Poly(Glycidyl methacrylate) (poly(GMA)) bearing pendant Glycidyl Groups, grafted on the surface of MgO-templated carbon (MgOC), is useful for forming strong multipoint covalent bonds with amino functional Groups on the surface of flavin adenine dinucleotide-dependent glucose dehydrogenase (FAD-GDH) molecules. The immobilized FAD-GDH can generate glucose-oxidation catalytic current using 1,2-naphthoquinone (12NQ) as the redox mediator, which is also captured on the electrode surface. The catalytic current is more stable than that obtained using the FAD-GDH-MgOC electrode without poly(GMA) because the leaching of FAD-GDH and 12NQ is suppressed by the enzyme capping effect
Isao Shitanda - One of the best experts on this subject based on the ideXlab platform.
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stable immobilization of enzyme on pendant Glycidyl Group modified mesoporous carbon by graft polymerization of poly Glycidyl methacrylate
Bulletin of the Chemical Society of Japan, 2020Co-Authors: Isao Shitanda, Takanao Kato, Ryo Suzuki, Tatsuo Aikawa, Yoshinao Hoshi, Masayuki Itagaki, Seiya TsujimuraAbstract:Poly(Glycidyl methacrylate) (poly(GMA)) bearing pendant Glycidyl Groups, grafted on the surface of MgO-templated carbon (MgOC), is useful for forming strong multipoint covalent bonds with amino fun...
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Stable Immobilization of Enzyme on Pendant Glycidyl Group-Modified Mesoporous Carbon by Graft Polymerization of Poly(Glycidyl methacrylate)
'The Chemical Society of Japan', 2020Co-Authors: 辻村 清也, Isao Shitanda, Takanao Kato, Ryo Suzuki, Tatsuo Aikawa, Yoshinao Hoshi, Masayuki Itagaki, Seiya TsujimuraAbstract:Poly(Glycidyl methacrylate) (poly(GMA)) bearing pendant Glycidyl Groups, grafted on the surface of MgO-templated carbon (MgOC), is useful for forming strong multipoint covalent bonds with amino functional Groups on the surface of flavin adenine dinucleotide-dependent glucose dehydrogenase (FAD-GDH) molecules. The immobilized FAD-GDH can generate glucose-oxidation catalytic current using 1,2-naphthoquinone (12NQ) as the redox mediator, which is also captured on the electrode surface. The catalytic current is more stable than that obtained using the FAD-GDH-MgOC electrode without poly(GMA) because the leaching of FAD-GDH and 12NQ is suppressed by the enzyme capping effect
Tatsuo Aikawa - One of the best experts on this subject based on the ideXlab platform.
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stable immobilization of enzyme on pendant Glycidyl Group modified mesoporous carbon by graft polymerization of poly Glycidyl methacrylate
Bulletin of the Chemical Society of Japan, 2020Co-Authors: Isao Shitanda, Takanao Kato, Ryo Suzuki, Tatsuo Aikawa, Yoshinao Hoshi, Masayuki Itagaki, Seiya TsujimuraAbstract:Poly(Glycidyl methacrylate) (poly(GMA)) bearing pendant Glycidyl Groups, grafted on the surface of MgO-templated carbon (MgOC), is useful for forming strong multipoint covalent bonds with amino fun...
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Stable Immobilization of Enzyme on Pendant Glycidyl Group-Modified Mesoporous Carbon by Graft Polymerization of Poly(Glycidyl methacrylate)
'The Chemical Society of Japan', 2020Co-Authors: 辻村 清也, Isao Shitanda, Takanao Kato, Ryo Suzuki, Tatsuo Aikawa, Yoshinao Hoshi, Masayuki Itagaki, Seiya TsujimuraAbstract:Poly(Glycidyl methacrylate) (poly(GMA)) bearing pendant Glycidyl Groups, grafted on the surface of MgO-templated carbon (MgOC), is useful for forming strong multipoint covalent bonds with amino functional Groups on the surface of flavin adenine dinucleotide-dependent glucose dehydrogenase (FAD-GDH) molecules. The immobilized FAD-GDH can generate glucose-oxidation catalytic current using 1,2-naphthoquinone (12NQ) as the redox mediator, which is also captured on the electrode surface. The catalytic current is more stable than that obtained using the FAD-GDH-MgOC electrode without poly(GMA) because the leaching of FAD-GDH and 12NQ is suppressed by the enzyme capping effect
Masayuki Itagaki - One of the best experts on this subject based on the ideXlab platform.
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stable immobilization of enzyme on pendant Glycidyl Group modified mesoporous carbon by graft polymerization of poly Glycidyl methacrylate
Bulletin of the Chemical Society of Japan, 2020Co-Authors: Isao Shitanda, Takanao Kato, Ryo Suzuki, Tatsuo Aikawa, Yoshinao Hoshi, Masayuki Itagaki, Seiya TsujimuraAbstract:Poly(Glycidyl methacrylate) (poly(GMA)) bearing pendant Glycidyl Groups, grafted on the surface of MgO-templated carbon (MgOC), is useful for forming strong multipoint covalent bonds with amino fun...
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Stable Immobilization of Enzyme on Pendant Glycidyl Group-Modified Mesoporous Carbon by Graft Polymerization of Poly(Glycidyl methacrylate)
'The Chemical Society of Japan', 2020Co-Authors: 辻村 清也, Isao Shitanda, Takanao Kato, Ryo Suzuki, Tatsuo Aikawa, Yoshinao Hoshi, Masayuki Itagaki, Seiya TsujimuraAbstract:Poly(Glycidyl methacrylate) (poly(GMA)) bearing pendant Glycidyl Groups, grafted on the surface of MgO-templated carbon (MgOC), is useful for forming strong multipoint covalent bonds with amino functional Groups on the surface of flavin adenine dinucleotide-dependent glucose dehydrogenase (FAD-GDH) molecules. The immobilized FAD-GDH can generate glucose-oxidation catalytic current using 1,2-naphthoquinone (12NQ) as the redox mediator, which is also captured on the electrode surface. The catalytic current is more stable than that obtained using the FAD-GDH-MgOC electrode without poly(GMA) because the leaching of FAD-GDH and 12NQ is suppressed by the enzyme capping effect
Yoshinao Hoshi - One of the best experts on this subject based on the ideXlab platform.
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stable immobilization of enzyme on pendant Glycidyl Group modified mesoporous carbon by graft polymerization of poly Glycidyl methacrylate
Bulletin of the Chemical Society of Japan, 2020Co-Authors: Isao Shitanda, Takanao Kato, Ryo Suzuki, Tatsuo Aikawa, Yoshinao Hoshi, Masayuki Itagaki, Seiya TsujimuraAbstract:Poly(Glycidyl methacrylate) (poly(GMA)) bearing pendant Glycidyl Groups, grafted on the surface of MgO-templated carbon (MgOC), is useful for forming strong multipoint covalent bonds with amino fun...
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Stable Immobilization of Enzyme on Pendant Glycidyl Group-Modified Mesoporous Carbon by Graft Polymerization of Poly(Glycidyl methacrylate)
'The Chemical Society of Japan', 2020Co-Authors: 辻村 清也, Isao Shitanda, Takanao Kato, Ryo Suzuki, Tatsuo Aikawa, Yoshinao Hoshi, Masayuki Itagaki, Seiya TsujimuraAbstract:Poly(Glycidyl methacrylate) (poly(GMA)) bearing pendant Glycidyl Groups, grafted on the surface of MgO-templated carbon (MgOC), is useful for forming strong multipoint covalent bonds with amino functional Groups on the surface of flavin adenine dinucleotide-dependent glucose dehydrogenase (FAD-GDH) molecules. The immobilized FAD-GDH can generate glucose-oxidation catalytic current using 1,2-naphthoquinone (12NQ) as the redox mediator, which is also captured on the electrode surface. The catalytic current is more stable than that obtained using the FAD-GDH-MgOC electrode without poly(GMA) because the leaching of FAD-GDH and 12NQ is suppressed by the enzyme capping effect