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16886-09-2

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16886-09-2 Usage

General Description

3-(2-Propenyl)indole, also known as β-Carbolines, is a chemical compound that belongs to the category of indole alkaloids. It is a naturally occurring compound found in various plants, such as the Peganum harmala (Syrian Rue) and the Ayahuasca vine. It is known for its psychoactive and hallucinogenic properties and has been used in traditional medicine and shamanic rituals for its mind-altering effects. β-Carbolines have been studied for their potential therapeutic applications in treating various neurological disorders, including depression and anxiety. Additionally, they have been investigated for their potential anti-cancer and anti-inflammatory properties. However,

Check Digit Verification of cas no

The CAS Registry Mumber 16886-09-2 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,6,8,8 and 6 respectively; the second part has 2 digits, 0 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 16886-09:
(7*1)+(6*6)+(5*8)+(4*8)+(3*6)+(2*0)+(1*9)=142
142 % 10 = 2
So 16886-09-2 is a valid CAS Registry Number.
InChI:InChI=1/C11H11N/c1-2-5-9-8-12-11-7-4-3-6-10(9)11/h2-4,6-8,12H,1,5H2

16886-09-2SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 18, 2017

Revision Date: Aug 18, 2017

1.Identification

1.1 GHS Product identifier

Product name 3-prop-2-enyl-1H-indole

1.2 Other means of identification

Product number -
Other names UWJLKFQVYFDQEQ-UHFFFAOYSA

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:16886-09-2 SDS

16886-09-2Relevant articles and documents

1,4-pentadienyl-3-sulfonamides: frameworks for disfavored radical cascade cyclizations.

Bommezijn,Martin,Kennedy,Lizos,Murphy

, p. 3405 - 3407 (2001)

[reaction: see text]. 1,4-pentadienyl-3-sulfonamides afford products including those resulting from disfavored 5-endo-trig reactions when subjected to radical cyclization conditions. Products resulting from pathways featuring 4-exo-trig cyclizations are also detected, even when the 4-exo-trig reaction leads to a highly strained bicyclo[3.2.0] ring system.

Sodium Perborate: A Facile Catalyst for Allylation of Active Centers

Jayaprakash, Soora Harinath,Krishna, Balam Satheesh,Prasad, Sthanikam Siva,Sudha, Sarva Santhi,Reddy, Cirandur Suresh

, p. 355 - 362 (2015)

An efficient and ecofriendly allylation of O-H, N-H, and C-H groups has been achieved successfully with the reaction of allyl bromide by using sodium perborate as a new catalyst in aqueous media. The advantage of this method is operationally simple, short reaction time, good yield, and simple workup conditions over the previously reported conventional methods such as amination, oxyalkylation reactions of allyl bromide, and Friedel-Crafts allylation chemistry.

Zinc-mediated Barbier reactions of pyrrole and indoles: A new method for the alkylation of pyrrole and indoles

Yadav,Reddy,Reddy, P.Muralikrishna,Srinivas

, p. 5185 - 5187 (2002)

Pyrrole and indoles react smoothly with alkyl halides such as allyl bromide, prenyl bromide, crotyl bromide and propargyl bromide in the presence of zinc metal in THF to afford the corresponding 3- and 2-alkyl pyrrole and 3-alkyl indole derivatives in good yields with high regioselectivity.

Synthesis of allyl cyanamides and N-cyanoindoles via the palladium-catalyzed three-component coupling reaction

Kamijo, Shin,Yamamoto, Yoshinori

, p. 11940 - 11945 (2002)

The palladium-catalyzed three-component coupling reaction (TCCR) of aryl isocyanides, allyl methyl carbonate, and trimethylsilyl azide was conducted in the presence of Pd2(dba)3·CHCl3 (2.5 mol %) and dppe (1,2-bis(diphenyl

A Combined Tamaru Allylation/Olefin Cross-Metathesis Approach for the Total Syntheses of (±)-Paniculidine B, (±)-Paniculidine C, and 2-Methylcarbazole

Tseng, Yi-Lun,Liang, Min-Chieh,Chen, I-Chia,Wu, Yen-Ku

, p. 609 - 612 (2018)

A concise approach to the total syntheses of racemic paniculidines B and C is described. The route features a combined Tamaru allylation/olefin cross-metathesis sequence for the regiocontrolled synthesis of prenylindole intermediates. In addition, we report a transformation of the prenylated indole into 2-methylcarbazole catalyzed by sulfonic acid-functionalized silica gel.

Preparation method of 3-substituted oxidized indole and derivative

-

Paragraph 0053; 0055, (2018/06/26)

The invention belongs to the technical field of organic chemistry and pharmaceutical chemistry and particularly relates to a method of preparing 3-substituted oxidized indole and a derivative. In themethod, with a 3-substituted indole derivative as a raw material and one or more of a tetrabutyl ammonium halide compound/sodium chloride/sodium iodide/potassium iodide as additives, and one or more of dichloromethane/1,2-dichloroethane/tetrahydrofurane/methylbenzene/1,4-dioxane/ethyl acetate/methanol are added as solvents; then one or more of [bis(trifluoroacetoxyl)iodine]benzene/iodosobenzene diacetate are added as oxidants in order to carry out a reaction with reaction temperature being controlled, thus producing the 3-substituted oxidized indole derivative. The method has gentle reaction conditions, simple operations, short reaction time and high yield, and is free of a metal catalyst and is environment-friendly.

Diastereoselective Allylation of Aldehydes by Dual Photoredox and Chromium Catalysis

Schwarz, J. Luca,Sch?fers, Felix,Tlahuext-Aca, Adrian,Lückemeier, Lukas,Glorius, Frank

supporting information, p. 12705 - 12709 (2018/10/09)

Herein, we report the redox-neutral allylation of aldehydes with readily available electron-rich allyl (hetero-) arenes, β-alkyl styrenes and allyl-diarylamines. This process was enabled by the combination of photoredox and chromium catalysis, which allowed a range of homoallylic alcohols to be prepared with high levels of selectivity for the anti diastereomer. Mechanistic investigations support the formation of an allyl chromium intermediate from allylic C(sp3)-H bonds and thus significantly extends the scope of the venerable Nozaki-Hiyama-Kishi reaction.

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