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Flower-like molybdenum disulfide decorated ZIF-8-derived nitrogen-doped dodecahedral carbon for electro-catalytic degradation of phenol - ScienceDirect

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管理番号 新品 :94131130822
中古 :94131130822-1
メーカー 51ce7a558bd 発売日 2025-05-10 15:55 定価 6500円
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Flower-like molybdenum disulfide decorated ZIF-8-derived nitrogen-doped dodecahedral carbon for electro-catalytic degradation of phenol - ScienceDirect

Flower-like molybdenum disulfide decorated ZIF-8-derived nitrogen-doped  dodecahedral carbon for electro-catalytic degradation of phenol -  ScienceDirectFlower-like molybdenum disulfide decorated ZIF-8-derived nitrogen-doped dodecahedral carbon for electro-catalytic degradation of phenol - ScienceDirect,MSI Laptop Intel Core i9-13900HX 32GB Memory 2 TB PCIe SSD GeForce RTX 4060  Laptop GPU 16'' Touchscreen Windows 11 Home 64-bit Creator Z16 HX Studio  A13VFTA-046US - Newegg.comMSI Laptop Intel Core i9-13900HX 32GB Memory 2 TB PCIe SSD GeForce RTX 4060 Laptop GPU 16'' Touchscreen Windows 11 Home 64-bit Creator Z16 HX Studio A13VFTA-046US - Newegg.com,Recent advances in molecular recognition and ultrasensitive detection of  growth-promoting drug residues in meat and meat products - ScienceDirectRecent advances in molecular recognition and ultrasensitive detection of growth-promoting drug residues in meat and meat products - ScienceDirect,Degradation of tetracycline in saline water by KOCN-modified FeMoO4  catalyst based on non-radical pathway: Singlet oxygen formation and DFT  calculation - ScienceDirectDegradation of tetracycline in saline water by KOCN-modified FeMoO4 catalyst based on non-radical pathway: Singlet oxygen formation and DFT calculation - ScienceDirect,In situ construction of a 2D CoTiO 3 /g-C 3 N 4 photocatalyst with an  S-scheme heterojunction and its excellent performance for CO 2 reduction -  Sustainable Energy & Fuels (RSC Publishing) DOI:10.1039/D2SE01158AIn situ construction of a 2D CoTiO 3 /g-C 3 N 4 photocatalyst with an S-scheme heterojunction and its excellent performance for CO 2 reduction - Sustainable Energy & Fuels (RSC Publishing) DOI:10.1039/D2SE01158A

 

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