Preparation and Characterization of p-Phenylenediamine Supported on Nanocellulose (PDA@CNC) as Novel Recyclable Nano Catalyst for Synthesis of Spiropyran Oxide Derivatives
In this study, p-Phenylenediamine supported on nanocellulose (PDA@CNC) was designed. The prepared nanocatalyst was characterized with various analytical techniques such as FT-IR, XRD, TGA, SEM, and CHN. Nanocatalyst used for the synthesis of spiropyran oxide derivatives by designing a simple and eff...
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Published in | Polycyclic aromatic compounds Vol. 42; no. 9; pp. 6101 - 6111 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Philadelphia
Taylor & Francis
21.10.2022
Taylor & Francis Ltd |
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Abstract | In this study, p-Phenylenediamine supported on nanocellulose (PDA@CNC) was designed. The prepared nanocatalyst was characterized with various analytical techniques such as FT-IR, XRD, TGA, SEM, and CHN. Nanocatalyst used for the synthesis of spiropyran oxide derivatives by designing a simple and efficient method using a three-part reaction between the Isatin derivatives, Malononitrile or Ethyl cyanoacetate and 1,3-dicarbonyl compound. Simple procedure, high yields, short reaction time and environmentally benign method are advantages of this protocol. The nanocatalyst was readily separated by filter and reusable without significant loss of its catalytic efficiency. |
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AbstractList | In this study, p-Phenylenediamine supported on nanocellulose (PDA@CNC) was designed. The prepared nanocatalyst was characterized with various analytical techniques such as FT-IR, XRD, TGA, SEM, and CHN. Nanocatalyst used for the synthesis of spiropyran oxide derivatives by designing a simple and efficient method using a three-part reaction between the Isatin derivatives, Malononitrile or Ethyl cyanoacetate and 1,3-dicarbonyl compound. Simple procedure, high yields, short reaction time and environmentally benign method are advantages of this protocol. The nanocatalyst was readily separated by filter and reusable without significant loss of its catalytic efficiency. |
Author | Mohammadnia, Majid Song, Congcong Shi, Nana Zhang, Zhaogui |
Author_xml | – sequence: 1 givenname: Congcong surname: Song fullname: Song, Congcong organization: College of Applied Chemistry, Food and Drug, Weifang Engineering Vocational College – sequence: 2 givenname: Zhaogui surname: Zhang fullname: Zhang, Zhaogui organization: College of Applied Chemistry, Food and Drug, Weifang Engineering Vocational College – sequence: 3 givenname: Nana surname: Shi fullname: Shi, Nana organization: College of Applied Chemistry, Food and Drug, Weifang Engineering Vocational College – sequence: 4 givenname: Majid surname: Mohammadnia fullname: Mohammadnia, Majid organization: Young Researcher and Elite Club, Department of Chemistry, Bojnord Branch, Islamic Azad University |
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Snippet | In this study, p-Phenylenediamine supported on nanocellulose (PDA@CNC) was designed. The prepared nanocatalyst was characterized with various analytical... |
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SubjectTerms | 1,3-dicarbonyl compound Carbonyl compounds Catalysts Chemical synthesis isatin Malononitrile nanocellulose p-Phenylenediamine Phenylenediamine Reaction time spiropyran oxide Spiropyrans |
Title | Preparation and Characterization of p-Phenylenediamine Supported on Nanocellulose (PDA@CNC) as Novel Recyclable Nano Catalyst for Synthesis of Spiropyran Oxide Derivatives |
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