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3-(4-chlorophenyl)-2-phenyl-2H-indazole is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1201938-08-0

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1201938-08-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1201938-08-0 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,2,0,1,9,3 and 8 respectively; the second part has 2 digits, 0 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 1201938-08:
(9*1)+(8*2)+(7*0)+(6*1)+(5*9)+(4*3)+(3*8)+(2*0)+(1*8)=120
120 % 10 = 0
So 1201938-08-0 is a valid CAS Registry Number.

1201938-08-0Downstream Products

1201938-08-0Relevant academic research and scientific papers

Metal-free, regioselective, visible light activation of 4CzIPN for the arylation of 2H-indazole derivatives

Saritha, Rajendhiran,Annes, Sesuraj Babiola,Ramesh, Subburethinam

, p. 14079 - 14084 (2021/04/22)

Highly regioselective organo photocatalysis of 4CzIPN (1,2,3,5-tetrakis(carbazol-9-yl)-4,6-dicyanobenzene) for the arylation of 2H-indazole is demonstrated. The present synthetic route provides a highly safe and easily accessible aniline precursor as an arylation reagent. The photoactivated 4CzIPN organocatalyst is found to be more efficient for single electron transfer without any organic base for the radical reaction. The carbazole-based photocatalyst (4CzIPN) with wide redox potential is stable and recyclable for further reaction transformations. Many indazole and aniline derivatives were used in the reaction and provided the arylated indazole derivatives in good to excellent yield.

Bis/hetero aromatic compound and preparation method thereof

-

Paragraph 0043-0044, (2021/07/17)

The invention discloses a bi/hetero aromatic compound and a preparation method thereof. The structural formula of the bi/hetero aromatic compound is as shown in formula 3. The preparation method comprises the following steps: taking an aryl tetrafluorobor

Visible-light-mediated direct C3-arylation of 2: H -indazoles enabled by an electron-donor-acceptor complex

Aganda, Kim Christopher C.,Kim, Junyoung,Lee, Anna

supporting information, p. 9698 - 9702 (2019/12/02)

A mild visible-light-mediated, photocatalyst-free arylation of 2H-indazoles was developed. The formation of an electron donor-acceptor complex by 2H-indazoles and aryl diazonium salts in the presence of pyridine allows the direct arylation of 2H-indazoles under visible-light irradiation. This process provides an efficient route for the synthesis of C3-arylated-2H-indazoles, which are important scaffolds of various bioactive compounds.

Room-Temperature, Metal-Free, and One-Pot Preparation of 2H-Indazoles through a Mills Reaction and Cyclization Sequence

Kondo, Masaru,Takizawa, Shinobu,Jiang, Yuzhao,Sasai, Hiroaki

supporting information, p. 9866 - 9869 (2019/07/10)

The Mills reaction and cyclization of readily available 2-aminobenzyl alcohols and nitrosobenzenes using thionyl bromide provided 2H-indazoles in up to 88 % yields. In the metal-free process, acetic acid played a crucial role for the both Mills reaction and cyclization. A brominated 2H-indazole could also be obtained through the one-pot sequence.

Continuous-Flow Visible Light Organophotocatalysis for Direct Arylation of 2H-Indazoles: Fast Access to Drug Molecules

Vidyacharan, Shinde,Ramanjaneyulu, Bandaru T.,Jang, Seungwook,Kim, Dong-Pyo

, p. 2581 - 2586 (2019/06/17)

A continuous-flow homogeneous photocatalytic method has been devised for the direct arylation of 2H-indazoles. This visible-light-promoted approach directly accesses a wide range of structurally diverse C3-arylated scaffolds of biological interest in a fa

Tosyl Hydrazine-Promoted Tandem Condensation and Cyclization of Acyl Azobenzenes Enabling Access to 2H-Indazoles under Metal-Free Aerobic Conditions

Son, Jeong-Yu,Kim, Hyunseok,Baek, Yonghyeon,Um, Kyusik,Ko, Gi Hoon,Han, Gi Uk,Han, Sang Hoon,Lee, Kooyeon,Lee, Phil Ho

, p. 4354 - 4361 (2018/10/02)

Tosyl hydrazine-promoted tandem condensation and cyclization of 2-acyl azobenzenes under metal-free aerobic conditions was demonstrated to give 2-aryl-2H-indazoles having alkyl- or aryl groups at the 3-position in quantitative yields through the release o

Synthesis and biological evaluation of 2H-indazole derivatives: Towards antimicrobial and anti-inflammatory dual agents

Pérez-Villanueva, Jaime,Yépez-Mulia, Lilián,González-Sánchez, Ignacio,Palacios-Espinosa, Juan Francisco,Soria-Arteche, Olivia,Del Rosario Sainz-Espu?es, Teresita,Cerbón, Marco A.,Rodríguez-Villar, Karen,Rodríguez-Vicente, Ana Karina,Cortés-Gines, Miguel,Custodio-Galván, Zeltzin,Estrada-Castro, Dante B.

, (2017/11/20)

Indazole is considered a very important scaffold in medicinal chemistry. It is commonly found in compounds with diverse biological activities, e.g., antimicrobial and anti-inflammatory agents. Considering that infectious diseases are associated to an inflammatory response, we designed a set of 2H-indazole derivatives by hybridization of cyclic systems commonly found in antimicrobial and anti-inflammatory compounds. The derivatives were synthesized and tested against selected intestinal and vaginal pathogens, including the protozoa Giardia intestinalis, Entamoeba histolytica, and Trichomonas vaginalis; the bacteria Escherichia coli and Salmonella enterica serovar Typhi; and the yeasts Candida albicans and Candida glabrata. Biological evaluations revealed that synthesized compounds have antiprotozoal activity and, in most cases, are more potent than the reference drug metronidazole, e.g., compound 18 is 12.8 times more active than metronidazole against G. intestinalis. Furthermore, two 2, 3-diphenyl-2H-indazole derivatives (18 and 23) showed in vitro growth inhibition against Candida albicans and Candida glabrata. In addition to their antimicrobial activity, the anti-inflammatory potential for selected compounds was evaluated in silico and in vitro against human cyclooxygenase-2 (COX-2). The results showed that compounds 18, 21, 23, and 26 display in vitro inhibitory activity against COX-2, whereas docking calculations suggest a similar binding mode as compared to rofecoxib, the crystallographic reference.

Rhenium-Catalyzed [4 + 1] Annulation of Azobenzenes and Aldehydes via Isolable Cyclic Rhenium(I) Complexes

Geng, Xiaoyu,Wang, Congyang

supporting information, p. 2434 - 2437 (2015/05/27)

The first Re-catalyzed [4 + 1] annulation of azobenzenes with aldehydes was developed to furnish 2H-indazoles via isolable and characterized cyclic ReI-complexes. For the first time, the acetate-acceleration effect is showcased in Re-catalyzed C-H activation reactions. Remarkably, mechanistic studies revealed an irreversible aldehyde-insertion step, which is in sharp contrast to those of previous Rh- and Co-systems. (Chemical Presented).

Unprecedented ortho-acylation of azoxybenzenes with α-oxocarboxylic acids by Pd-catalyzed C-H activation and decarboxylation

Li, Hongji,Li, Pinhua,Zhao, Qiong,Wang, Lei

supporting information, p. 9170 - 9172 (2013/09/24)

A palladium-catalyzed ortho-acylation reaction of azoxybenzenes with α-oxocarboxylic acids was developed in the presence of K2S 2O8. The established methodology provides a direct approach to obtain acylated azoxybenzenes in good yields.

Direct access to acylated azobenzenes via Pd-catalyzed C-H functionalization and further transformation into an indazole backbone

Li, Hongji,Li, Pinhua,Wang, Lei

, p. 620 - 623 (2013/04/10)

Azobenzenes were readily acylated at the 2-position through a Pd-catalyzed C-H functionalization from simple aromatic azo compounds and aldehydes in good yields. The obtained acylated azobenzenes could be efficiently converted into the corresponding indaz

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