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N'-(4-chlorobenzylidene)-2-nitrobenzenesulfonohydrazide is a complex organic compound with the chemical formula C13H9ClN4O4S. It is characterized by a benzene ring with a nitro group (NO2) at the 2-position and a sulfonhydrazide group attached to the 4-position. The molecule also features a 4-chlorobenzylidene group, which is a benzylidene moiety (a phenylmethyl group) with a chlorine atom at the 4-position. N'-(4-chlorobenzylidene)-2-nitrobenzenesulfonohydrazide is known for its potential applications in chemical research and as an intermediate in the synthesis of various pharmaceuticals and agrochemicals. Its structure and properties make it a versatile building block in organic synthesis, particularly in the development of compounds with specific biological activities.

6655-32-9

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6655-32-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 6655-32-9 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 6,6,5 and 5 respectively; the second part has 2 digits, 3 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 6655-32:
(6*6)+(5*6)+(4*5)+(3*5)+(2*3)+(1*2)=109
109 % 10 = 9
So 6655-32-9 is a valid CAS Registry Number.

6655-32-9Relevant academic research and scientific papers

Silver-Catalyzed [2+1] Cyclopropenation of Alkynes with Unstable Diazoalkanes: N-Nosylhydrazones as Room-Temperature Decomposable Diazo Surrogates

Liu, Zhaohong,Li, Qiangqiang,Liao, Peiqiu,Bi, Xihe

, p. 4756 - 4760 (2017)

The [2+1] cycloaddition of alkynes with diazo compounds represents one of the most powerful and reliable methods for the construction of cyclopropenes. However, it remains a formidable challenge to accomplish the cyclopropenation of alkynes with non-stabilized diazoalkanes, owing to the fact that such compounds are unstable and prone to detonation. Herein, we report a general silver-catalyzed cyclopropenation reaction of alkynes with unstable diazoalkanes, by for the first time the discovery and application of N-nosylhydrazones as room-temperature decomposiable diazo surrogates. This method allows for the efficient assembly a wide variety of cyclopropene derivatives that are otherwise difficult to access by conventional methods.

Coupling of N -Nosylhydrazones with Nitrosoarenes: Transition-Metal-Free Approach to (Z)- N -Arylnitrones

Liu, Tingting,Liu, Zhaohong,Liu, Zhenhua,Hu, Donghua,Wang, Yeming

supporting information, p. 1728 - 1736 (2018/02/14)

An efficient and transition-metal-free protocol for the synthesis of (Z)- N -arylnitrones from the direct coupling of N -nosylhydrazones with nitrosoarenes under mild conditions is described. The protocol is compatible with a wide range of functional groups placed on both the reagents and provided the corresponding nitrones in good to excellent yields by simple recrystallization process. The use of these 1,3-dipoles for the synthesis of substituted indoles is elaborated for 2,3-diphenyl-1 H -indole.

Silver(i)-promoted insertion into X-H (X = Si, Sn, and Ge) bonds with N-nosylhydrazones

Liu, Zhaohong,Li, Qiangqiang,Yang, Yang,Bi, Xihe

supporting information, p. 2503 - 2506 (2017/03/08)

Silver(i)-promoted carbene insertion into X-H (X = Si, Sn, and Ge) bonds has been realized by using unstable diazo compounds, which are generated in situ from N-nosylhydrazones as carbene precursors. The reaction tolerates a wide range of functional groups and delivers a number of valuable silicon-containing compounds in very high yields (up to 96%). Moreover, organostannanes and organogermanes were as well effectively obtained in very good yields under optimal conditions.

Silver-Catalyzed Cross-Olefination of Donor and Acceptor Diazo Compounds: Use of N-Nosylhydrazones as Diazo Surrogate

Liu, Zhaohong,Liu, Binbin,Zhao, Xue-Feng,Wu, Yan-Bo,Bi, Xihe

supporting information, p. 928 - 932 (2017/02/15)

The cross-olefination reaction of donor and acceptor diazo compounds was explored. The use of N-nosylhydrazones as diazo surrogates and the dependence on silver catalysis were crucial for the reaction development. A variety of (hetero)aryl N-nosylhydrazones and α-diazo esters, amides, and phosphonates were compatible, and the functionalized alkene products were afforded in good to high yields with moderate (Z)/(E) selectivities. The experimental and DFT calculation results suggest that the cross-selectivity is due to selective activation of the silver catalyst for donor diazo compounds.

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