2023
DOI: 10.1002/cctc.202300727
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Porous Organic Polymer with Free Carboxylic Acids (Carboxy‐POP) for Heterogeneous Catalytic One‐Pot Synthesis of Xanthenes and Acridines

Alka Karn,
Chetna Yadav,
Ajay Kumar Sahoo
et al.

Abstract: Porous organic polymers (POPs) – the emergent hydrothermally stable, amorphous and porous materials – have proven to be invaluable for catalytic applications. Through a rational bottom‐up design, we have developed a Carboxy‐POP, a POP that is adorned by Bronsted acid (COOH) functionalities, for heterogeneous catalysis. The Carboxy‐POP has been comprehensively characterized by FT‐IR, solid‐state 13C NMR, SEM, TEM, etc. It exhibits a moderate porosity with a BET surface area of 381 m2 g‐1 and acidic concentratio… Show more

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“…The decomposition of the free carboxylic acid groups of EDTA leads to a gradual mass loss around 230 °C. 44 Above 400 °C up to 600 °C, a little additional mass loss was observed due to the complete decomposition of organic segments. 45 The magnetic properties of the products were estimated using VSM, and magnetization curves are presented in Fig.…”
Section: Catalyst: Preparation and Characterizationmentioning
confidence: 99%
“…The decomposition of the free carboxylic acid groups of EDTA leads to a gradual mass loss around 230 °C. 44 Above 400 °C up to 600 °C, a little additional mass loss was observed due to the complete decomposition of organic segments. 45 The magnetic properties of the products were estimated using VSM, and magnetization curves are presented in Fig.…”
Section: Catalyst: Preparation and Characterizationmentioning
confidence: 99%