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Stannane, tributyl(3-nitrophenyl)- is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

79048-31-0

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79048-31-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 79048-31-0 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 7,9,0,4 and 8 respectively; the second part has 2 digits, 3 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 79048-31:
(7*7)+(6*9)+(5*0)+(4*4)+(3*8)+(2*3)+(1*1)=150
150 % 10 = 0
So 79048-31-0 is a valid CAS Registry Number.

79048-31-0SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 15, 2017

Revision Date: Aug 15, 2017

1.Identification

1.1 GHS Product identifier

Product name tributyl-(3-nitrophenyl)stannane

1.2 Other means of identification

Product number -
Other names Stannane,tributyl(3-nitrophenyl)

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:79048-31-0 SDS

79048-31-0Relevant academic research and scientific papers

Method for converting substituted sodium aryl sulfonate to aryl tri-n-butyltin

-

Paragraph 0104-0108, (2018/12/14)

The invention discloses a method for converting substituted sodium acryl sulfonate to aryl tri-n-butyltin. The synthetic method of the aryl tri-n-butyltin compound comprises the following steps: uniformly mixing sodium aryl sulfonate, silver carbonate, bis(tri-tert-butylphosphine)palladium, and hexabutyldistannane in a solvent, reacting for 1 to 8 hours at 80 to 140 DEG C, and after the reaction is ended, concentrating; and performing the column chromatography, and obtaining a pure aryl tri-n-butyltin product. The adopted raw material is sodium aryl sulfonate which is significant in supplementation, wide in source, cheap and easy to obtain compared with the existing method adopting aromatic halides as a raw material. The reaction in the invention has good tolerance and universality for a functional group, and the substituent group can be hydrogen, methyl, tertiary butyl, fluorine, chlorine, bromine, cyanogroup, trifluoromethyl, nitro, acetyl or carbethoxy.

Synthesis of arylstannanes by palladium-catalyzed desulfitative coupling reaction of sodium arylsulfinates with distannanes

Lian, Chang,Yue, Guanglu,Zhang, Haonan,Wei, Liyan,Liu, Danyang,Liu, Sichen,Fang, Huayi,Qiu, Di

supporting information, p. 4019 - 4023 (2018/10/04)

A novel Pd-catalyzed desulfitative cross-coupling reaction of sodium arylsulfinates with hexaalkyl distannanes is realized, allowing the facile synthesis of functionalized arylstannanes with moderate to excellent yields. The successful implement of gram-scale synthesis and tandem Stille coupling reaction demonstrates the potential applications of this method in organic synthesis.

Stannylation of Aryl Halides, Stille Cross-Coupling, and One-Pot, Two-Step Stannylation/Stille Cross-Coupling Reactions under Solvent-Free Conditions

Gribanov, Pavel S.,Golenko, Yulia D.,Topchiy, Maxim A.,Minaeva, Lidiya I.,Asachenko, Andrey F.,Nechaev, Mikhail S.

supporting information, p. 120 - 125 (2018/01/17)

Solvent-free protocols for palladium-catalyzed stannylation of aryl halides, Stille cross-coupling, and one-pot, two-step stannylation/Stille cross-coupling (SSC) are reported for the first time. (Het)aryl halides bearing acceptor, donor, as well as sterically demanding substituents are stannylated and/or coupled in high yields. The reactions are catalyzed by conventional palladium(II) acetate/PCy3 [Pd(OAc)2/PCy3] under air, using available base CsF, and without the use of high purity reagents. The developed synthetic procedures are versatile, robust, and easily scalable. The absence of solvent, and the elimination of isolation procedures of aryl stannanes makes the SSC protocol simple, step economical, and highly efficient for the synthesis of biaryls in a one-pot two-step procedure.

Simple preparation of aryltributylstannanes and its application to one-pot synthesis of diaryl ketones

Oikawa, Asuka,Kindaichi, Gan,Shimotori, Yasutaka,Okimoto, Mitsuhiro,Hoshi, Masayuki

supporting information, p. 1705 - 1711 (2015/03/30)

Transfer of aryl group from boron to tin can be achieved by simple treatment of arylboronic acids with tributyltin methoxide at 100 °C for 1 h under neat conditions. The resulting aryltributylstannanes are applicable to one-pot synthesis of diaryl ketones. Thus, Pd-catalyzed cross-coupling reaction with aroyl chlorides is allowed to proceed without isolation step to produce the corresponding diaryl ketones in good to high yields.

Preparation of Arylbutyltin Having Electron-withdrawing Group by Palladium Catalyzed Reaction of Hexabutylditin with Aryl Iodide

Kosugi, Masanori,Ohya, Takao,Migita, Toshihiko

, p. 3855 - 3856 (2007/10/02)

Nitro-, acyl-, and cyanophenyltributyltin can be prepared by the reaction of hexabutylditin with the corresponding aryl iodide in the presence of a catalytic amount of tetrakis(triphenylphosphine)palladium.

SYNTHESIS OF ORGANOTRIALKYLSTANNANES. THE REACTION BETWEEN ORGANIC HALIDES AND HEXAALKYLDISTANNANES IN THE PRESENCE OF PALLADIUM COMPLEXES

Azizian, Hormoz,Eaborn, Colin,Pidcock, Alan

, p. 49 - 58 (2007/10/02)

The aryl halides YC6H4X (X=Br or I) have been shown to react with the distannanes (R3Sn)2 (R=n-Bu or Me) in toluene in the presence of or to give the compounds YC6H4SnR3 for (a) R=n-Bu, Y=H, p-OMe, o-Me, p-Me, m-Cl, p-Cl, m-CN, p-COCH3 and m-NO2, and (b) R=Me, Y=H, p-OMe, p-Me, p-CN, p-COCH3, m-NO2 and p-NO2.Benzyl halides YC6H4CH2X (X=Cl or Br) similarly give YC6H4CH2SnR3 for (a) R=n-Bu, Y=H, m-OMe, p-OMe, m-Cl, m-CN, and m-NO2, and (b) R=Me, Y=m-Cl, m-CN, p-CN and m-NO2.These reactions are of special value as preparative procedures in cases in which Grignard or organolithium reagents cannot be used.Allyl chloride and bromide were likewise shown to react with (n-Bu3Sn)2 to give CH2=CHCH2SnBu3, but n-BuCl and n-BuBr gave only a trace of n-Bu4Sn.The mixed dimetallo species n-Bu3SnSiMe3 was shown to react with aryl bromides YC6H4Br (X=H, p-OMe, p-Me, or p-Cl) to give the arylsilicon compounds YC6H4SiMe3, with no aryltin products.

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