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2,3-pyridinedicarboxylic acid-modified MIL-88A(Fe) for enhanced peroxymonosulfate activation to degrade organic contaminants - ScienceDirect

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管理番号 新品 :60721127863
中古 :60721127863-1
メーカー ebb52463 発売日 2025-06-02 22:17 定価 8900円
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2,3-pyridinedicarboxylic acid-modified MIL-88A(Fe) for enhanced peroxymonosulfate activation to degrade organic contaminants - ScienceDirect

2,3-pyridinedicarboxylic acid-modified MIL-88A(Fe) for enhanced  peroxymonosulfate activation to degrade organic contaminants - ScienceDirect2,3-pyridinedicarboxylic acid-modified MIL-88A(Fe) for enhanced peroxymonosulfate activation to degrade organic contaminants - ScienceDirect,Staged oxidation of hydrocarbons with simultaneously enhanced conversion  and selectivity employing O2 as oxygen source catalyzed by 2D  metalloporphyrin-based MOFs possessing bimetallic active centers -  ScienceDirectStaged oxidation of hydrocarbons with simultaneously enhanced conversion and selectivity employing O2 as oxygen source catalyzed by 2D metalloporphyrin-based MOFs possessing bimetallic active centers - ScienceDirect,Efficient and Selective Oxygenation of Cycloalkanes and Alkyl Aromatics  with Oxygen through Synergistic Catalysis of Bimetallic Active Centers in  Two-Dimensional Metal-Organic Frameworks Based on MetalloporphyrinsEfficient and Selective Oxygenation of Cycloalkanes and Alkyl Aromatics with Oxygen through Synergistic Catalysis of Bimetallic Active Centers in Two-Dimensional Metal-Organic Frameworks Based on Metalloporphyrins,Efficient and Selective Oxygenation of Cycloalkanes and Alkyl Aromatics  with Oxygen through Synergistic Catalysis of Bimetallic Active Centers in  Two-Dimensional Metal-Organic Frameworks Based on MetalloporphyrinsEfficient and Selective Oxygenation of Cycloalkanes and Alkyl Aromatics with Oxygen through Synergistic Catalysis of Bimetallic Active Centers in Two-Dimensional Metal-Organic Frameworks Based on Metalloporphyrins,Multi-omics analyses reveal the responses of wheat (Triticum aestivum L.)  and rhizosphere bacterial community to nano(micro)plastics stress | Journal  of Nanobiotechnology | Full TextMulti-omics analyses reveal the responses of wheat (Triticum aestivum L.) and rhizosphere bacterial community to nano(micro)plastics stress | Journal of Nanobiotechnology | Full Text

 

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