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Dive into the research topics where Hitesh D. Patel is active.

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Featured researches published by Hitesh D. Patel.


RSC Advances | 2014

Recent advances in the synthesis of quinolines: a review

Shraddha M. Prajapati; Kinjal D. Patel; Rajesh H. Vekariya; Shyamali N. Panchal; Hitesh D. Patel

Quinolines have become important compounds because of their variety of applications in medicinal, synthetic organic chemistry as well as in the field of industrial chemistry. In recent years there are greater societal expectations that chemists should produce greener and more sustainable chemical processes. This review article gives information about the green and clean syntheses using alternative reaction methods for the synthesis of quinoline derivatives. The article includes synthesis by microwave, using clay or some other catalyst which could be recycled and reused, one-pot reaction, solvent-free reaction conditions, using ionic liquids, ultrasound promoted synthesis and photocatalytic synthesis (UV radiation).


Synthetic Communications | 2014

Recent Advances in the Synthesis of Coumarin Derivatives via Knoevenagel Condensation: A Review

Rajesh H. Vekariya; Hitesh D. Patel

Abstract The synthesis of coumarins through Knoevenagel condensation is one of the most important processes in synthetic organic chemistry and medicinal chemistry. Compounds including a coumarin (2-oxo-2H-1-benzopyran) backbone have a wide range of application in the pharmaceutical field. Thus, many methodologies have been developed for the synthesis of this important class of compounds. However, some methods are always associated with toxic and corrosive catalysts, longer reaction time, poor yield, less purity, and by-products along with the desired product. Furthermore, some of these processes are not efficient and environmentally friendly. Therefore, mild, efficient, and environmentally friendly protocols have been developed recently by many scientists for the synthesis of coumarin derivatives via Knoevenagel condensation with good yield and purity. In this review, we have summarized various methods for the synthesis of coumarins via Knoevenagel condensation. GRAPHICAL ABSTRACT


RSC Advances | 2014

Recent advances in the synthesis of 2-substituted benzothiazoles: a review

Neelam P. Prajapati; Rajesh H. Vekariya; Mayuri A. Borad; Hitesh D. Patel

Benzothiazole can serve as unique and versatile scaffolds, especially in synthetic and pharmaceutical chemistry because of their potent and significant pharmacological activities. This important class of derivatives possess numerous pharmacological activities like antitumor, antimicrobial, anti-inflammatory, anticonvulsant, antidiabetic activities and so on. Many scientists have developed a wide range of methodologies for the synthesis of the 2-substituted benzothiazole nucleus and its derivatives using different types of catalysts to improve the selectivity, purity and yield of the products. Thus, the present review article focuses mainly on the different kind of reactions involved in synthesis of the 2-substituted benzothiazole nucleus and its derivatives.


Synthetic Communications | 2014

Review of Synthesis of Multispiro Heterocyclic Compounds from Isatin

Mayuri A. Borad; Manoj N. Bhoi; Neelam P. Prajapati; Hitesh D. Patel

Abstract Because of its various biological activities, isatin plays important roles in organic chemistry. The C-3 carbonyl group of the isatin possesses very high reactivity and thus isatin possesses many diverse applications in organic synthesis. This carbonyl group reacts like a prochiral center. For the organic synthetic chemist, the conception of a spiroheterocyclic building block has always been interesting, as it often requires synthetic design based on specific strategies. This review summarizes the synthesis of various multispiro heterocyclic compounds by using isatin through 1,3-dipolar cycloaddition reactions and multicomponent reactions. GRAPHICAL ABSTRACT


Synthetic Communications | 2014

Review of Synthesis of 1,3,4-Oxadiazole Derivatives

Kinjal D. Patel; Shraddha M. Prajapati; Shyamali N. Panchal; Hitesh D. Patel

Abstract 1,3,4-Oxadiazole nucleus shows a broad spectrum of pharmaceutical applications. Thus, in recent years scientists have developed various new methods for the synthesis of its derivatives. Here we give a review of recent developments in the synthesis over the past decade (2004–2013). GRAPHICAL ABSTRACT


Synthetic Communications | 2015

Sulfonic Acid–Functionalized Silica (SiO2-Pr-SO3H) as a Solid and a Heterogeneous Catalyst in Green Organic Synthesis: Recent Advances

Rajesh H. Vekariya; Hitesh D. Patel

Abstract The application of sulfonic acid–functionalized silica (SBA-Pr-SO3H) as a catalyst in organic synthesis has become an efficient and green strategy for the selective construction of organic motifs. Therefore, the great efforts have been made by scientists to replace the conventional acid catalysts by sulfonic acid–functionalized silica used as solid, heterogeneous catalyst in various organic transformations. The sustainable advantage of sulfonic acid–functionalized silica is that it can be recovered and reused several times without loss of its efficiency. In this tutorial review, we attempt to give an overview about the use of sulfonic acid–functionalized silica as a catalyst in the synthesis of various organic compounds having industrial as well as pharmaceutical applications. GRAPHICAL ABSTRACT


RSC Advances | 2015

Sulfonated polyethylene glycol (PEG-OSO3H) as a polymer supported biodegradable and recyclable catalyst in green organic synthesis: recent advances

Rajesh H. Vekariya; Hitesh D. Patel

The objective of this review is to summarize some of the recent advances in a sulfuric acid-modified polyethylene glycol 6000 (PEG-OSO3H) as a stable, recyclable and bio-degradable polymeric catalyst in organic synthesis. PEG-OSO3H is a highly efficient and eco-friendly catalyst, which catalyzed various organic reactions and could be recovered and reused several times without significant loss of its activity. In this review, preparation and application of PEG-OSO3H in organic synthesis are investigated.


Synthetic Communications | 2014

Synthetic Strategies for Fused Benzothiazoles: Past, Present, and Future

Manoj N. Bhoi; Mayuri A. Borad; Hitesh D. Patel

Abstract Benzothiazole is used as a building block in organic synthesis, which serves as a key template for the development of various therapeutic agents and shows a wide spectrum of activities. The attractive application of benzothiazole in organic synthesis is undoubtedly due to the highly reactive C-2 amino group, which is responsible for the change in its bioactivity. The construction of a poly-heterocyclic compound with the fused hetero-systems has attracted increasing attention because of the diverse range of potential therapeutic activities. Significant efforts have been undertaken to exploit different synthetic routes to these compounds. This article gives a comprehensive account of the synthetic utility of benzothiazole employed in the design and synthesis of different types of compounds containing fused heterocyclic rings with greater emphasis on recent literature. GRAPHICAL ABSTRACT


Synthetic Communications | 2014

Selective Nitration of Phenolic Compounds by Green Synthetic Approaches

Rajesh H. Vekariya; Hitesh D. Patel

Abstract Aromatic nitration is one of the most important unit processes in synthetic organic chemistry and in the chemical industry. Particularly, nitrophenols are important precursors for the production of dyestuffs, pharmaceuticals, agrochemicals, explosives, plastics, and other industrially important products. Many commercial processes are available for the production of these important nitro precursors, but some processes are commonly lead to mixtures of regioisomers and are not environmentally friendly. Thus, in recent years many scientists have been developed new methodologies to improve selectivity and yield of the products. In this review, we summarize recent advances in the synthesis of nitrophenols by green chemistry approaches. GRAPHICAL ABSTRACT


RSC Advances | 2015

Melamine trisulfonic acid (MTSA): an efficient and recyclable heterogeneous catalyst in green organic synthesis

Rajesh H. Vekariya; Kinjal D. Patel; Hitesh D. Patel

Melamine trisulfonic acid (MTSA) as a highly efficient heterogeneous solid acid catalyst catalyzes various organic transformations. The great efforts have been made by many scientists to utilize MTSA as a green catalyst for the preparations of N- and O-containing heterocyclic compounds, for the protections of alcohol, phenols, amines and aldehydes and ketones, for the acetylation of alcohols and phenols and for the N-formylation of amines. The superior advantage of this heterogeneous catalyst is that it can be recovered and reused several times without the loss of their efficiency. In this review, preparation and applications of MTSA in organic synthesis are investigated.

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Dhanji P. Rajani

Veer Narmad South Gujarat University

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Smita D. Rajani

Veer Narmad South Gujarat University

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