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3-acetoxy-1-acetyl-6-fluoro-indole is a complex organic chemical compound with the molecular formula C13H10FNO4. It is a derivative of indole, a heterocyclic aromatic organic compound that contains a benzene ring fused to a pyrrole. The compound features a 6-fluoro substitution, which introduces a fluorine atom at the 6th position of the indole ring, and has an acetoxy group at the 3rd position and an acetyl group at the 1st position. This molecule is of interest in the field of organic chemistry and may have potential applications in the synthesis of pharmaceuticals and other chemical products due to its unique structure and properties.

3798-90-1

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3798-90-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 3798-90-1 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 3,7,9 and 8 respectively; the second part has 2 digits, 9 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 3798-90:
(6*3)+(5*7)+(4*9)+(3*8)+(2*9)+(1*0)=131
131 % 10 = 1
So 3798-90-1 is a valid CAS Registry Number.

3798-90-1Relevant academic research and scientific papers

Indoxyl-based umpolung strategy for the synthesis of unsymmetrical 3,3′-biindoles

Guo, Jing,Weng, Jiang,Huang, Gong-Bin,Huang, Lin-Jie,Chan, Albert S.C.,Lu, Gui

supporting information, p. 5493 - 5496 (2016/11/19)

3,3′-Bisindoles are known to be important structural motifs found in bioactive natural products, pharmaceuticals, and functional materials. Herein, a novel indoxyl-based approach was established for the synthesis of unsymmetrical 3,3′-biindoles from indoles and indoxyls. This approach generated moderate to excellent yields of the desired products (24 examples, up to 98% yield). The present method features broad substrate scope, operational simplicity, high atom economy, and utilization of non-toxic and inexpensive molecular iodine as catalyst. The applicability of this method has been demonstrated by the facile gram-scale synthesis.

N-heterocyclic carbene-catalyzed enantioselective annulation of indolin-3-ones with bromoenals

Ni, Qijian,Song, Xiaoxiao,Raabe, Gerhard,Enders, Dieter

supporting information, p. 1535 - 1538 (2014/06/09)

N-Heterocyclic carbene-catalyzed reactions of indolin-3-ones with 2-bromoenals opened an asymmetric access to 3,4-dihydropyrano[3,2-b]indol-2(5 H)-ones in good yields and with good to excellent enantioselectivities. This protocol tolerates a broad substrate scope. In addition, a possible mechanism for the annulation reaction is presented. More NHC-organocatalysis: N-Heterocyclic carbene-catalyzed reactions of indolin-3-ones with 2-bromoenals opened an asymmetric access to 3,4-dihydropyrano[3,2-b]indol-2(5 H)-ones in good yields and with good to excellent enantioselectivities. This protocol tolerates a broad substrate scope. In addition, a possible mechanism for the annulation reaction is presented.

Design, synthesis and pharmacological evaluation of conformationally restricted N-arylsulfonyl-3-aminoalkoxy indoles as a potential 5-HT6 receptor ligands

Nirogia, Ramakrishna V.S.,Kambhampati, Ramasastri,Daulatabad, Anand V.,Gudla, Parandhama,Shaikh, Mohammad,Achanta, Pramod Kumar,Shinde, Anil K.,Dubey, Pramod Kumar

scheme or table, p. 341 - 349 (2012/01/06)

A series of novel conformationally restricted N1-arylsulfonyl-3-aminoalkoxy indoles were designed and synthesized as 5-HT6 receptor (5-HT6R) ligands. Many of the synthesized compounds have moderate in vitro-binding affinities at 5-HT6R. The lead compound 8b (% inhibition=97.2 at 1 μM) from this series has good pharmacokinetic profile in male Wister rats and is active in animal model of cognition like Morris water maze. The details of chemistry, SAR, pharmacokinetics and pharmacological data constitute the subject matter of this report.

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