This work presents an integrated green chemistry approach for the sustainable extraction of bioactive constituents from Areca catechu husk and the eco-friendly synthesis of biologically important thiazolidinone derivatives. The study is divided into two major sections. The first part focuses on the valorization of areca husk, an abundant agro-industrial waste, through the extraction of polyphenolic compounds using conventional and advanced extraction techniques. Special emphasis has been placed on the use of the distillable ionic liquid DIMCARB as a green solvent system to improve extraction efficiency while minimizing environmental impact. The extracted materials were further evaluated for total phenolic and tannin contents using Folin–Ciocalteau based analytical methods. Optimization of extraction parameters including solvent polarity, ionic liquid ratio, temperature, and extraction time was systematically investigated to achieve maximum recovery of bioactive compounds. The second part of the research explores the green synthesis of bioactive thiazolidinone derivatives using chitosan as a biodegradable and reusable catalyst. Thiazolidinones are an important class of heterocyclic compounds known for diverse pharmacological activities including anticancer, antimicrobial, anti-inflammatory, and antitubercular properties. The study demonstrates an environmentally benign one-pot synthetic methodology involving aldehydes, amines, and thioglycolic acid under mild reaction conditions. Various reaction parameters such as catalyst loading, solvent systems, reaction temperature, and substrate scope were optimized to improve product yield and reaction efficiency. Advanced analytical and characterization techniques including FT-IR, 1H NMR, GC, and GC-MS were employed for structural confirmation and evaluation of synthesized compounds and extracted constituents. By integrating sustainable extraction processes with green catalytic synthesis, this research highlights the potential of combining natural product chemistry, green solvents, and biodegradable catalysts for pharmaceutical and medicinal chemistry applications. The work contributes toward environmentally responsible
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
Vendeur : Grand Eagle Retail, Bensenville, IL, Etats-Unis
Paperback. Etat : new. Paperback. This work presents an integrated green chemistry approach for the sustainable extraction of bioactive constituents from Areca catechu husk and the eco-friendly synthesis of biologically important thiazolidinone derivatives. The study is divided into two major sections. The first part focuses on the valorization of areca husk, an abundant agro-industrial waste, through the extraction of polyphenolic compounds using conventional and advanced extraction techniques. Special emphasis has been placed on the use of the distillable ionic liquid DIMCARB as a green solvent system to improve extraction efficiency while minimizing environmental impact. The extracted materials were further evaluated for total phenolic and tannin contents using Folin-Ciocalteau based analytical methods. Optimization of extraction parameters including solvent polarity, ionic liquid ratio, temperature, and extraction time was systematically investigated to achieve maximum recovery of bioactive compounds. The second part of the research explores the green synthesis of bioactive thiazolidinone derivatives using chitosan as a biodegradable and reusable catalyst. Thiazolidinones are an important class of heterocyclic compounds known for diverse pharmacological activities including anticancer, antimicrobial, anti-inflammatory, and antitubercular properties. The study demonstrates an environmentally benign one-pot synthetic methodology involving aldehydes, amines, and thioglycolic acid under mild reaction conditions. Various reaction parameters such as catalyst loading, solvent systems, reaction temperature, and substrate scope were optimized to improve product yield and reaction efficiency. Advanced analytical and characterization techniques including FT-IR, 1H NMR, GC, and GC-MS were employed for structural confirmation and evaluation of synthesized compounds and extracted constituents. By integrating sustainable extraction processes with green catalytic synthesis, this research highlights the potential of combining natural product chemistry, green solvents, and biodegradable catalysts for pharmaceutical and medicinal chemistry applications. The work contributes toward environmentally responsible This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. N° de réf. du vendeur 9789999344920
Quantité disponible : 1 disponible(s)
Vendeur : California Books, Miami, FL, Etats-Unis
Etat : New. N° de réf. du vendeur I-9789999344920
Quantité disponible : Plus de 20 disponibles
Vendeur : PBShop.store US, Wood Dale, IL, Etats-Unis
PAP. Etat : New. New Book. Shipped from UK. Established seller since 2000. N° de réf. du vendeur L2-9789999344920
Quantité disponible : Plus de 20 disponibles
Vendeur : PBShop.store UK, Fairford, GLOS, Royaume-Uni
PAP. Etat : New. New Book. Shipped from UK. Established seller since 2000. N° de réf. du vendeur L2-9789999344920
Quantité disponible : Plus de 20 disponibles
Vendeur : Revaluation Books, Exeter, Royaume-Uni
Paperback. Etat : Brand New. 80 pages. 6.00x0.19x9.00 inches. In Stock. N° de réf. du vendeur x-9999344925
Quantité disponible : 2 disponible(s)
Vendeur : AHA-BUCH GmbH, Einbeck, Allemagne
Taschenbuch. Etat : Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - This work presents an integrated green chemistry approach for the sustainable extraction of bioactive constituents from Areca catechu husk and the eco-friendly synthesis of biologically important thiazolidinone derivatives. The study is divided into two major sections. The first part focuses on the valorization of areca husk, an abundant agro-industrial waste, through the extraction of polyphenolic compounds using conventional and advanced extraction techniques. Special emphasis has been placed on the use of the distillable ionic liquid DIMCARB as a green solvent system to improve extraction efficiency while minimizing environmental impact. The extracted materials were further evaluated for total phenolic and tannin contents using Folin-Ciocalteau based analytical methods. Optimization of extraction parameters including solvent polarity, ionic liquid ratio, temperature, and extraction time was systematically investigated to achieve maximum recovery of bioactive compounds. The second part of the research explores the green synthesis of bioactive thiazolidinone derivatives using chitosan as a biodegradable and reusable catalyst. Thiazolidinones are an important class of heterocyclic compounds known for diverse pharmacological activities including anticancer, antimicrobial, anti-inflammatory, and antitubercular properties. The study demonstrates an environmentally benign one-pot synthetic methodology involving aldehydes, amines, and thioglycolic acid under mild reaction conditions. Various reaction parameters such as catalyst loading, solvent systems, reaction temperature, and substrate scope were optimized to improve product yield and reaction efficiency. Advanced analytical and characterization techniques including FT-IR, 1H NMR, GC, and GC-MS were employed for structural confirmation and evaluation of synthesized compounds and extracted constituents. By integrating sustainable extraction processes with green catalytic synthesis, this research highlights the potential of combining natural product chemistry, green solvents, and biodegradable catalysts for pharmaceutical and medicinal chemistry applications. The work contributes toward environmentally responsible. N° de réf. du vendeur 9789999344920
Quantité disponible : 2 disponible(s)
Vendeur : AussieBookSeller, Truganina, VIC, Australie
Paperback. Etat : new. Paperback. This work presents an integrated green chemistry approach for the sustainable extraction of bioactive constituents from Areca catechu husk and the eco-friendly synthesis of biologically important thiazolidinone derivatives. The study is divided into two major sections. The first part focuses on the valorization of areca husk, an abundant agro-industrial waste, through the extraction of polyphenolic compounds using conventional and advanced extraction techniques. Special emphasis has been placed on the use of the distillable ionic liquid DIMCARB as a green solvent system to improve extraction efficiency while minimizing environmental impact. The extracted materials were further evaluated for total phenolic and tannin contents using Folin-Ciocalteau based analytical methods. Optimization of extraction parameters including solvent polarity, ionic liquid ratio, temperature, and extraction time was systematically investigated to achieve maximum recovery of bioactive compounds. The second part of the research explores the green synthesis of bioactive thiazolidinone derivatives using chitosan as a biodegradable and reusable catalyst. Thiazolidinones are an important class of heterocyclic compounds known for diverse pharmacological activities including anticancer, antimicrobial, anti-inflammatory, and antitubercular properties. The study demonstrates an environmentally benign one-pot synthetic methodology involving aldehydes, amines, and thioglycolic acid under mild reaction conditions. Various reaction parameters such as catalyst loading, solvent systems, reaction temperature, and substrate scope were optimized to improve product yield and reaction efficiency. Advanced analytical and characterization techniques including FT-IR, 1H NMR, GC, and GC-MS were employed for structural confirmation and evaluation of synthesized compounds and extracted constituents. By integrating sustainable extraction processes with green catalytic synthesis, this research highlights the potential of combining natural product chemistry, green solvents, and biodegradable catalysts for pharmaceutical and medicinal chemistry applications. The work contributes toward environmentally responsible This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. N° de réf. du vendeur 9789999344920
Quantité disponible : 1 disponible(s)
Vendeur : CitiRetail, Stevenage, Royaume-Uni
Paperback. Etat : new. Paperback. This work presents an integrated green chemistry approach for the sustainable extraction of bioactive constituents from Areca catechu husk and the eco-friendly synthesis of biologically important thiazolidinone derivatives. The study is divided into two major sections. The first part focuses on the valorization of areca husk, an abundant agro-industrial waste, through the extraction of polyphenolic compounds using conventional and advanced extraction techniques. Special emphasis has been placed on the use of the distillable ionic liquid DIMCARB as a green solvent system to improve extraction efficiency while minimizing environmental impact. The extracted materials were further evaluated for total phenolic and tannin contents using Folin-Ciocalteau based analytical methods. Optimization of extraction parameters including solvent polarity, ionic liquid ratio, temperature, and extraction time was systematically investigated to achieve maximum recovery of bioactive compounds. The second part of the research explores the green synthesis of bioactive thiazolidinone derivatives using chitosan as a biodegradable and reusable catalyst. Thiazolidinones are an important class of heterocyclic compounds known for diverse pharmacological activities including anticancer, antimicrobial, anti-inflammatory, and antitubercular properties. The study demonstrates an environmentally benign one-pot synthetic methodology involving aldehydes, amines, and thioglycolic acid under mild reaction conditions. Various reaction parameters such as catalyst loading, solvent systems, reaction temperature, and substrate scope were optimized to improve product yield and reaction efficiency. Advanced analytical and characterization techniques including FT-IR, 1H NMR, GC, and GC-MS were employed for structural confirmation and evaluation of synthesized compounds and extracted constituents. By integrating sustainable extraction processes with green catalytic synthesis, this research highlights the potential of combining natural product chemistry, green solvents, and biodegradable catalysts for pharmaceutical and medicinal chemistry applications. The work contributes toward environmentally responsible This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. N° de réf. du vendeur 9789999344920
Quantité disponible : 1 disponible(s)