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2-Naphthylphenylhydrazone is an organic compound with the chemical formula C16H14N2. It is a derivative of 2-naphthol and phenylhydrazine, formed through a condensation reaction. This yellow crystalline solid is commonly used as a reagent in analytical chemistry, particularly for the detection and determination of aldehydes and ketones. The compound is known for its ability to form colored complexes with these carbonyl compounds, which can be used for qualitative and quantitative analysis. It is also used in the synthesis of various organic compounds and as an intermediate in the preparation of pharmaceuticals and dyes. Due to its sensitivity and selectivity, 2-naphtylphenylhydrazone is a valuable tool in the field of chemical analysis.

842-50-2

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842-50-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 842-50-2 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 8,4 and 2 respectively; the second part has 2 digits, 5 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 842-50:
(5*8)+(4*4)+(3*2)+(2*5)+(1*0)=72
72 % 10 = 2
So 842-50-2 is a valid CAS Registry Number.

842-50-2Upstream product

842-50-2Relevant academic research and scientific papers

Enantioselective Diarylcarbene Insertion into Si-H Bonds Induced by Electronic Properties of the Carbenes

Evans, Declan,Houk, K. N.,Li, Mao-Lin,Li, Wen-Tao,Xu, Bin,Yang, Liang-Liang,Zhou, Qi-Lin,Zhu, Shou-Fei

supporting information, p. 12394 - 12399 (2020/08/06)

Catalytic enantioselection usually depends on differences in steric interactions between prochiral substrates and a chiral catalyst. We have discovered a carbene Si-H insertion in which the enantioselectivity depends primarily on the electronic characteristics of the carbene substrate, and the log(er) values are linearly related to Hammett parameters. A new class of chiral tetraphosphate dirhodium catalysts was developed; it shows excellent activity and enantioselectivity for the insertion of diarylcarbenes into the Si-H bond of silanes. Computational and mechanistic studies show how the electronic differences between the two aryls of the carbene lead to differences in energies of the diastereomeric transition states. This study provides a new strategy for asymmetric catalysis exploiting the electronic properties of the substrates.

gem-Difluoroolefination of Diazo Compounds with TMSCF3 or TMSCF2Br: Transition-Metal-Free Cross-Coupling of Two Carbene Precursors

Hu, Mingyou,Ni, Chuanfa,Li, Lingchun,Han, Yongxin,Hu, Jinbo

supporting information, p. 14496 - 14501 (2015/11/27)

A new olefination protocol for transition-metal-free cross-coupling of two carbene fragments arising from two different sources, namely, a nonfluorinated carbene fragment resulting from a diazo compound and a difluorocarbene fragment derived from Ruppert-Prakash reagent (TMSCF3) or TMSCF2Br, has been developed. This gem-difluoroolefination proceeds through the direct nucleophilic addition of diazo compounds to difluorocarbene followed by elimination of N2. Compared to previously reported Cu-catalyzed gem-difluoroolefination of diazo compounds with TMSCF3, which possesses a narrow substrate scope due to a demanding requirement on the reactivity of diazo compounds and in-situ-generated CuCF3, this transition-metal-free protocol affords a general and efficient approach to various disubstituted 1,1-difluoroalkenes, including difluoroacrylates, diaryldifluoroolefins, as well as arylalkyldifluoroolefins. In view of the ready availability of diazo compounds and difluorocarbene reagents and versatile transformations of 1,1-difluoroalkenes, this new gem-difluoroolefination method is expected to find wide applications in organic synthesis.

Triplet-Triplet Fluorescence and Spin Polarization of 1- and 2-Naphthylphenylcarbenes

Despres, Alain,Migirdicyan, Eva,Haider, Karl,Maloney, Vincent M.,Platz, Matthew S.

, p. 6632 - 6637 (2007/10/02)

The fluorescence spectra of 1- and 2-naphthylphenylcarbenes (1-NPC and 2-NPC) dispersed in liquid and solid solutions have been studied as a function of temperature, concentration, host, and sample history by laser flash photolysis and conventional spectr

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