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51537-77-0

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51537-77-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 51537-77-0 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 5,1,5,3 and 7 respectively; the second part has 2 digits, 7 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 51537-77:
(7*5)+(6*1)+(5*5)+(4*3)+(3*7)+(2*7)+(1*7)=120
120 % 10 = 0
So 51537-77-0 is a valid CAS Registry Number.

51537-77-0Downstream Products

51537-77-0Relevant academic research and scientific papers

Eco-Friendly Methodology for the Formation of Aromatic Carbon–Heteroatom Bonds by Using Green Ionic Liquids

Richards, Kenza,Petit, Eddy,Legrand, Yves-Marie,Grison, Claude

supporting information, p. 809 - 814 (2020/11/30)

A new sustainable method is reported for the formation of aromatic carbon–heteroatom bonds under solvent-free and mild conditions (no co-oxidant, no strong acid and no toxic reagents) by using a new type of green ionic liquid. The bromination of methoxy arenes was chosen as a model reaction. The reaction methodology is based on only using natural sodium bromine, which is transformed into an electrophilic brominating reagent within an ionic liquid, easily prepared from the melted salt FeCl3 hexahydrate. Bromination reactions with this in-situ-generated reagent gave good yields and excellent regioselectivity under simple and environmentally friendly conditions. To understand the unusual bromine polarity reversal of sodium bromine without any strong oxidant, the molecular structure of the reaction medium was characterised by Raman and direct infusion electrospray ionisation mass spectroscopy (ESI-MS). An extensive computational investigation using density functional theory methods was performed to describe a mechanism that suggests indirect oxidation of Br? through new iron adducts. The versatility of the methodology was successively applied to nitration and thiocyanation of methoxy arenes using KNO3 and KSCN in melted hexahydrated FeCl3.

Electrochemical ipso-Thiocyanation of Arylboron Compounds

Dyga, Marco,Hayrapetyan, Davit,Rit, Raja K.,Goo?en, Lukas J.

supporting information, p. 3548 - 3553 (2019/04/26)

An operationally simple electrochemical method for the transition-metal-free ipso-thiocyanation of arylboronic acids and aryl trifluoroborates has been developed. The SCN electrophile is generated in situ by anodic oxidation of thiocyanate anions, which avoids formation of salt waste and prevents unwanted side reactions arising from chemical oxidants. The reaction proceeds regiospecifically, and the scope extends to non-activated aromatic systems. (Figure presented.).

N -Thiocyanato-dibenzenesulfonimide: A new electrophilic thiocyanating reagent with enhanced reactivity

Li, Chengqiu,Long, Pingliang,Wu, Haopeng,Yin, Hongquan,Chen, Fu-Xue

supporting information, p. 7131 - 7134 (2019/08/07)

A novel electrophilic thiocyanating reagent, N-thiocyanato-dibenzenesulfonimide, was prepared and exhibited enhanced electrophilicity with a wide scope of substrates. Thus, it reacted with activated aromatics such as phenols, indoles, anilines and anisoles without a catalyst giving the corresponding thicyanate derivatives in high yields, while TfOH for unactivated arenes and hetero aromatics and Zn(OTf)2 for ketones was used as the catalyst, respectively. It is noteworthy that internal alkenes and styrenes were bifunctionalized giving 1,2-amino thiocyanates in high yields.

N-Thiocyanatosaccharin: A "sweet" Electrophilic Thiocyanation Reagent and the Synthetic Applications

Wu, Di,Qiu, Jiashen,Karmaker, Pran Gopal,Yin, Hongquan,Chen, Fu-Xue

, p. 1576 - 1583 (2018/02/09)

N-Thiocyanatosaccharin (R1) was readily prepared from the sweet additive Saccharin in two steps with a 71% overall yield. By applying this new reagent to diverse nucleophiles such as benzothiophenes, indoles, oxindoles, aromatic amines, phenols, β-keto carbonyl compounds, and aromatic ketones, a novel electrophilic thiocyanation reaction was achieved with high yields (up to 99%). The potential recycling of Saccharin, the wide scope of substrates, and the mild reaction conditions made this protocol much more practical.

An efficient method for thiocyanation of aromatic and heteroaromatic compounds using cyanuric chloride and ammonium thiocyanate under conventional and nonconventional conditions

Venkanna,Rajanna,Kumar, M. Satish,Venkateswarlu,Ali, M. Moazzam

, p. 237 - 240 (2016/01/20)

Highly efficient thiocyanation of aromatic and heteroaromatic compounds has been accomplished by using cyanuric chloride (NCCl)3/NH4SCN in dichloromethane under conventional and ultrasonic-assisted conditions. Sonicated reactions rea

Graphene oxide: A promising carbocatalyst for the regioselective thiocyanation of aromatic amines, phenols, anisols and enolizable ketones by hydrogen peroxide/KSCN in water

Khalili, Dariush

, p. 2547 - 2553 (2016/03/19)

Graphene oxide (GO), as a heterogeneous carbocatalyst, catalyzes the direct thiocyanation of a variety of arenes including aromatic amines, phenols, anisols and carbonyl compounds that possessing α-hydrogen in the presence of hydrogen peroxide and KSCN in water as a green media. This procedure is chemoselective, avoids the use of precious metals and toxic solvents and has a broad substrate scope. Easy removal from the reaction mixture and recyclability with no loss of activity are the key features of graphene oxide in this catalytic system.

Synthesis of Aryl Tri- and Difluoromethyl Thioethers via a C H-Thiocyanation/Fluoroalkylation Cascade

Jouvin, Kévin,Matheis, Christian,Goossen, Lukas J.

supporting information, p. 14324 - 14327 (2015/10/05)

An AlCl3-catalyzed C H thiocyanation was discovered and combined with a Langlois-type trifluoromethylation to afford aryl trifluoromethyl thioethers directly from arenes, N-thiocyanatosuccinimide (NTS) and Ruppert-Prakash reagent. An analogous combination with a copper-mediated difluoromethylation gives access to aryl difluoromethyl thioethers. Both processes proceed with exceptional regioselectivity for the most electron-rich, sterically least hindered position of the arene. The sulfur and fluoroalkyl groups originate from different sources, so that the use of expensive, preformed fluoroalkylthiolation reagents is avoided. Perfectly formed: An AlCl3-catalyzed C H thiocyanation was combined with a Langlois-type trifluoromethylation to afford aryl trifluoromethyl thioethers directly from arenes, N-thiocyanatosuccinimide, and TMS-CF3 (see scheme). An analogous combination of the thiocyanation with a copper-mediated difluoromethylation gives access to aryl difluoromethyl thioethers. The sulfur and fluoroalkyl groups originate from different sources, so that preformed fluoroalkylthiolation reagents are avoided.

Efficient and novel method for thiocyanation of aromatic compounds using trichloroisocyanuric acid/ammonium thiocyanate/wet SiO2

Akhlaghinia, Batool,Pourali, Ali-Reza,Rahmani, Marzieh

experimental part, p. 1184 - 1191 (2012/04/04)

An efficient and novel method for thiocyanation of aromatic and heteroaromatic compounds using trichloroisocyanuric acid/ammonium thiocyanate/wet SiO2 is described. Copyright Taylor & Francis Group, LLC.

Poly[4-diacetoxyiodo] styrene-promoted thiocyanation of aromatic ethers, anilines, and indoles

Wu, Liqiang,Chao, Shujun,Wang, Xiao,Yan, Fulin

experimental part, p. 304 - 310 (2011/04/22)

Chemical Equation Presented Thiocyanation of aromatic ethers, anilines, and indoles have been achieved using ammonium thiocyanate in the presence of poly[4-diacetoxyiodo] styrene (PDAIS) in CH3CN at room temperature. Copyright Taylor & Francis Group, LLC.

Anodic thiocyanation of mono-and disubstituted aromatic compounds

Gitkis, Anna,Becker, James Y.

experimental part, p. 5854 - 5859 (2011/01/07)

The in situ and environmentally friendly thiocyanation (no use of toxic oxidizing agents) electrochemical thiocyanation of aromatic compounds involving various derivatives of anisole and aniline to afford aromatic thiocyanates have been studied in organic

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