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1,1-Biphenyl,2-isocyano-(9CI) is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

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  • 3128-77-6 Structure
  • Basic information

    1. Product Name: 1,1-Biphenyl,2-isocyano-(9CI)
    2. Synonyms: 1,1-Biphenyl,2-isocyano-(9CI)
    3. CAS NO:3128-77-6
    4. Molecular Formula: C13H9N
    5. Molecular Weight: 179.221
    6. EINECS: N/A
    7. Product Categories: ISONITRITE
    8. Mol File: 3128-77-6.mol
  • Chemical Properties

    1. Melting Point: 116-118 °C
    2. Boiling Point: N/A
    3. Flash Point: N/A
    4. Appearance: /
    5. Density: N/A
    6. Refractive Index: N/A
    7. Storage Temp.: N/A
    8. Solubility: N/A
    9. CAS DataBase Reference: 1,1-Biphenyl,2-isocyano-(9CI)(CAS DataBase Reference)
    10. NIST Chemistry Reference: 1,1-Biphenyl,2-isocyano-(9CI)(3128-77-6)
    11. EPA Substance Registry System: 1,1-Biphenyl,2-isocyano-(9CI)(3128-77-6)
  • Safety Data

    1. Hazard Codes: N/A
    2. Statements: N/A
    3. Safety Statements: N/A
    4. WGK Germany:
    5. RTECS:
    6. HazardClass: N/A
    7. PackingGroup: N/A
    8. Hazardous Substances Data: 3128-77-6(Hazardous Substances Data)

3128-77-6 Usage

Classification

Isonitrile
Isonitriles are a functional group containing a carbon atom with a bond to a nitrogen atom and a side chain with a strong dipole.

Potential applications

Pharmaceutical and agrochemical industries, material science, and organic synthesis
These industries and fields may benefit from the unique properties of 1,1-Biphenyl,2-isocyano-(9CI) in various chemical reactions and processes.

Extensive study

Limited
1,1-Biphenyl,2-isocyano-(9CI) has not been extensively studied, which means its specific properties and uses are not well-documented.

Unique properties

Potential for interesting and valuable applications
Although not well-documented, the compound may possess unique properties that could make it valuable in certain applications.

Chemical structure

1,1-Biphenyl with an isocyano group at the 2nd position
The compound is derived from a biphenyl structure, with an isocyano group (-CN) attached to the 2nd carbon atom of the biphenyl.

Reactivity

Unknown
Due to limited study, the reactivity of 1,1-Biphenyl,2-isocyano-(9CI) with other chemicals is not well-known.

Stability

Unknown
The stability of the compound under various conditions is not well-documented, which may affect its potential applications.

Toxicity

Unknown
The toxicity of 1,1-Biphenyl,2-isocyano-(9CI) is not well-documented, which is an important factor to consider for its potential use in pharmaceutical and agrochemical industries.

Environmental impact

Unknown
The environmental impact of 1,1-Biphenyl,2-isocyano-(9CI) is not well-documented, which is another important factor to consider for its potential applications.

Check Digit Verification of cas no

The CAS Registry Mumber 3128-77-6 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 3,1,2 and 8 respectively; the second part has 2 digits, 7 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 3128-77:
(6*3)+(5*1)+(4*2)+(3*8)+(2*7)+(1*7)=76
76 % 10 = 6
So 3128-77-6 is a valid CAS Registry Number.

3128-77-6SDS

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 1-isocyano-2-phenylbenzene

1.2 Other means of identification

Product number -
Other names 2-phenylphenyl isocyanide

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:3128-77-6 SDS

3128-77-6Relevant articles and documents

Preparation of 6-Difluoromethylphosphonated Phenanthridines by Visible-Light-Driven Radical Cyclization of 2-Isocyanobiphenyls

Wang, Shuang,Jia, Wen-Liang,Wang, Lin,Liu, Qiang

, p. 6817 - 6821 (2015)

A protocol to obtain a variety of 6-difluoromethylenephosphonated phenanthridines through a radical cyclization process was explored. These reactions, performed with the use of diethyl bromodifluoromethylphosphonate as a radical resource and 2-isocyanobip

Enantioselective Synthesis of Azetidines through [3 + 1]-Cycloaddition of Donor-Acceptor Aziridines with Isocyanides

Zhang, Fengcai,Sang, Xinpeng,Zhou, Yuqiao,Cao, Weidi,Feng, Xiaoming

, p. 1513 - 1517 (2022/03/01)

The enantioselective [3 + 1]-cycloaddition of racemic donor-acceptor (D-A) aziridines with isocyanides was first realized under mild reaction conditions using a chiral N,N′-dioxide/MgIIcomplex as catalyst, providing a facile route to enantioenriched exo-imido azetidines with good to excellent yield (up to 99%) and enantioselectivity (up to 94% ee). An obvious chiral amplification effect was observed in this system, and an explanation was elucidated based on the experimental investigation and X-ray crystal structure of the enantiomerically pure catalyst.

4CzIPN-tBu-Catalyzed Proton-Coupled Electron Transfer for Photosynthesis of Phosphorylated N-Heteroaromatics

Liu, Yan,Chen, Xiao-Lan,Li, Xiao-Yun,Zhu, Shan-Shan,Li, Shi-Jun,Song, Yan,Qu, Ling-Bo,Yu, Bing

, p. 964 - 972 (2021/01/12)

2,4,5,6-Tetrakis(3,6-di-tert-butyl-9H-carbazol-9-yl)isophthalonitrile (4CzIPN-tBu) was developed as a photocatalyst for the phosphorus-radical-initiated cascade cyclization reaction of isocyanides. By using 4CzIPN-tBu as catalyst, we developed a visible-light-induced proton-coupled electron transfer strategy for the generation of phosphorus-centered radicals, via which a wide range of phosphorylated phenanthridines, quinolines, and benzothiazoles were successfully constructed.

Catalyst-free synthesis of phenanthridinesviaelectrochemical coupling of 2-isocyanobiphenyls and amines

Malviya, Bhanwar Kumar,Singh, Karandeep,Jaiswal, Pradeep K.,Karnatak, Manvika,Verma, Ved Prakash,Badsara, Satpal Singh,Sharma, Siddharth

, p. 6367 - 6378 (2021/04/16)

Catalyst free synthesis of 6-aryl phenanthridines and amides through an electrochemical reaction is reported in this study. The coupling reaction proceeds by the cathodic reduction ofin situformed diazonium ions, which are formed from anilines and an alkyl nitrite. The generated aryl radical diazonium ions coupled from isocyanides furnished the desired products in good yields. This cascade reaction was conducted in an undivided cell equipped with an RVC as the anode and Pt as the cathode usingnBu4NBF4as the electrolyte at room temperature. A series of detailed mechanistic studies have also been performed, including a radical clock experiment and cyclic voltammetry analysis.

Direct photoexcitation of benzothiazolines: Acyl radical generation and application to access heterocycles

He, Xiang-Kui,Li, Lei,Lu, Juan,Xuan, Jun,Ye, Hai-Bing

, (2021/11/27)

An acyl radical generation and functionalization strategy through direct photoexcitation of benzothiazolines has been developed. The formed acyl radical species can either be trapped by quinoxalin-2-ones to realize their C(3)-H functionalization or trigger a cascade radical cyclization with isonitriles to synthesise biologically important phenanthridines. The synthetic value of this protocol can be further illustrated by the modification of quinoxalin-2-ones, containing important natural products and drug-based complex molecules.

Deprotonated Salicylaldehyde as Visible Light Photocatalyst

Zhuang, Yan-Jun,Qu, Jian-Ping,Kang, Yan-Biao

, p. 4386 - 4397 (2020/03/05)

Salicylaldehyde is established as an efficient visible light photocatalyst for the first time. Compared to other simple aldehyde analogies, salicylaldehyde has a unique deprotonative red-shift from 324 to 417 nm and gives rise to the remarkable increase of fluorescence quantum from 0.0368 to 0.4632, thus enabling salicylaldehyde as a visible light (>400 nm) photocatalyst. The experimental investigations suggest that the reactive radical species are generated by sensitization of the substrates by the deprotonated salicylaldehyde through an energy-transfer pathway. Consequently, the C-C cleaving alkylation reactions of N-hydroxyphthalimide esters proceed smoothly in the presence of as low as 1 mol % of salicylaldehyde under the visible-light irradiation, affording desired alkylation products with up to 99% yields. Application in visible-light induced aerobic oxidation of N-alkylpyridinium salts is also reported.

Mild C?F Activation in Perfluorinated Arenes through Photosensitized Insertion of Isonitriles at 350 nm

Weidlich, Frauke,Esumi, Naoto,Chen, Dongyang,Mück-Lichtenfeld, Christian,Zysman-Colman, Eli,Studer, Armido

, p. 376 - 383 (2019/11/19)

Fluorinated compounds have become important in the fields of agrochemical industry, pharmaceutical chemistry and materials sciences. Accordingly, various methods for their preparation have been developed in the past. Fluorinated compounds can be accessed via conjugation with fluorinated building blocks, via C?H fluorination or via selective activation of perfluorinated compounds to give the partially fluorinated congeners. Especially the direct activation of C?F bonds, one of the strongest σ-bonds, still remains challenging and new strategies for C?F activation are desirable. Herein a method for the photochemical activation of aromatic C?F bonds is presented. It is shown that isonitriles selectively insert into aromatic C?F bonds while aliphatic C?F bonds remain unaffected. Mechanistic studies reveal the reaction to proceed via the indirect excitation of the isonitrile to its triplet state by photoexcited acetophenone at 350 nm. Due to the relatively mild light used, the process shows high functional group tolerance and various compounds of the class of benzimidoyl fluorides are accessible from aryl isonitriles and commercially available perfluorinated arenes. (Figure presented.).

Photocatalytic xanthate-based radical addition/cyclization reaction sequence toward 2-biphenyl isocyanides: Synthesis of 6-alkylated phenanthridines

López-Mendoza, Pedro,Miranda, Luis D.

, p. 3487 - 3491 (2020/05/25)

A photocatalytic xanthate-based radical addition/cyclization reaction cascade toward 2-biphenylisocyanides is described as a practical and modular approach to 6-alkylated phenanthridines. The use of xanthates as radical precursors allowed the synthesis of diversely 6-substituted phenanthridines. Electrophilic radicals derived from nitriles, aromatic and aliphatic ketones, malonates, and amide derivatives, as well as radicals derived from phthalimidomethyl and benzylic derivatives were successfully introduced. The reaction proceeds under mild conditions without a stoichiometric amount of oxidant. Thirty novel phenanthridine scaffolds were synthesized with yields ranging from 24 to 76%.

Visible-Light-Driven Difluoromethylation of Isocyanides with S-(Difluoromethyl)diarylsulfonium Salt: Access to a Wide Variety of Difluoromethylated Phenanthridines and Isoquinolines

Chen, Jia-Yi,Li, Xin,Lin, Li-Ting,Liu, Guo-Kai,Qin, Wen-Bing,Wong, Henry N. C.,Xiong, Wei

, p. 10479 - 10487 (2020/09/23)

A highly efficient approach of visible-light-driven radical difluoromethylation of isocyanides to access a wide variety of difluoromethylated phenanthridines and isoquinolines is herein described. Electrophilic S-(difluoromethyl)diarylsulfonium salt proved to be a good difluoromethyl radical precursor under photoredox catalysis. A broad range of isocyanides were tolerated to furnish the corresponding difluoromethylated phenanthridines, isoquinolines, furo[3,2-c]pyridine, and pyrido[3,4-b]indole in moderate to excellent yields under mild conditions. A plausible mechanism was also proposed.

Additive-free radical cascade reaction of oxime esters: Synthesis of pyrroline-functionalized phenanthridines

Shao, Liming,Xue, Yijie,Xue, Dengqi,He, Qian,Ge, Qianwei,Li, Wei

, p. 12284 - 12293 (2020/11/10)

A variety of dihydropyrrole-functionalized phenanthridines were efficiently synthesized by the metal-free, radical cascade cyclization reaction of 2-isocyanobiphenyls with γ,δ- unsaturated oxime esters. The C-N/C-C/C-C bonds were formed via the oil bath method in a one-pot procedure with broad substrate applicability. The radical process was supported by kinetic isotope effect studies and radical inhibition studies.

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