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Aqua‐mediated rapid and benign synthesis of 1,2,6,7‐tetrahydro‐8H‐indeno[5,4‐b]furan‐8‐one‐appended novel 2‐arylidene indanones of pharmacological interest at ambient temperature

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This article is published in Journal of The Chinese Chemical Society.The article was published on 2020-02-01. It has received 25 citations till now. The article focuses on the topics: Furan & Green chemistry.

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Ultrasound Promoted Stereoselective Synthesis of 2,3-Dihydrobenzofuran Appended Chalcones at Ambient Temperature

TL;DR: In this article, an ultrasound promoted the synthesis of a series of (E)-3-(2,3-dihydrobenzofuran 5-yl)-1-(aryl)prop2-en-1-one derivatives from 2,3dihd-dynohexofuran-5-carbaldehyde and various aromatic ketones under clean conditions.
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Solvent-free grindstone synthesis of four new (E)-7-(arylidene)-indanones and their structural, spectroscopic and quantum chemical study: a comprehensive theoretical and experimental exploration

TL;DR: In this paper, four new compounds of (E)-7-(arylidene)-indanone skeleton have been synthesized using a grindstone chemistry approach; environmentally viable protocol.
References
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Organic Synthesis “On Water”

TL;DR: The currently burgeoning field of organic synthesis in aqueous media encompasses a large family of reactions, and water is still not commonly used as a sole solvent for organic synthesis, at least in part because most organic compounds do not dissolve in water to a significant extent.
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Organic chemistry in water

TL;DR: Water has emerged as a versatile solvent for organic chemistry in recent years and gives completely new reactivity, including pericyclic reactions, reactions of carbanion equivalent, and reactions of carbocation equivalent.
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Green chemistry oriented organic synthesis in water

TL;DR: This tutorial review briefly discusses organic synthesis in water with a Green Chemistry perspective.
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On the Theory of Organic Catalysis "on Water"

TL;DR: In this article, a molecular origin of the striking rate increase observed in a reaction on water is studied theoretically, and a method is given for comparing the rate constants of different rate processes, homogeneous, neat and on-water, all of which have different units, by introducing models that reduce them to the same units.
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