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(3R,5R,7R)-N-phenethyladamantane-1-carboxamide is a complex organic compound with a unique molecular structure. It is a chiral molecule, meaning it has a non-superimposable mirror image, and it is characterized by its adamantane core, which is a highly stable and rigid carbon framework. The compound features a carboxyamide group attached to the adamantane structure, which is further connected to a phenethyl group. This specific arrangement of atoms and functional groups gives the compound its distinct properties and potential applications in various fields, such as pharmaceuticals or materials science. The chirality of the molecule, with the R configuration at the 3rd, 5th, and 7th positions, is crucial for its stereochemistry and potential biological activity.

42600-80-6

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42600-80-6 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 42600-80-6 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 4,2,6,0 and 0 respectively; the second part has 2 digits, 8 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 42600-80:
(7*4)+(6*2)+(5*6)+(4*0)+(3*0)+(2*8)+(1*0)=86
86 % 10 = 6
So 42600-80-6 is a valid CAS Registry Number.

42600-80-6Downstream Products

42600-80-6Relevant academic research and scientific papers

PPh3/Selectfluor-Mediated Transformation of Carboxylic Acids into Acid Anhydrides and Acyl Fluorides and Its Application in Amide and Ester Synthesis

Yang, Zhen,Chen, Siwei,Yang, Fang,Zhang, Chenxi,Dou, You,Zhou, Qiuju,Yan, Yizhe,Tang, Lin

, p. 5998 - 6002 (2019)

By taking the advantage of PPh3/Selectfluor system, carboxylic acids are efficiently converted into the pivotal intermediates acyloxyphosphonium ions that can selectively react with a second carboxylic acid or fluoride to in situ yield the corresponding acid anhydrides or acyl fluorides. The developed protocol features commercially availabile reagents, no involvement of base, room temperature conditions, and simple experimental procedure. Additionally, various amides or esters are readily achieved, respectively, with the addition of amines or alcohols.

N-acyltriazinedione; a novel acylating reagent synthesized from a triazinone-type condensing reagent

Yamada, Kohei,Lee, Jeongsu,Kota, Mika,Karuo, Yukiko,Kitamura, Masanori,Kunishima, Munetaka

, p. 498 - 502 (2021/05/27)

In this paper, we report the synthesis of N-acyltriazinedione via the unexpected O–N acyl rearrangement of acyloxytriazinone and its utility as an acylating reagent. N-Acyltriazinedione can be isolated by silica gel column chromatography and reacts with amines in the absence of any base to give the corresponding amides in good yields.

Efficiency Enhancement of a Photocatalytic Decarbonylation of an Aminocyclopropenone by Benzothiophene Substitution

Mishiro, Kenji,Nomura, Mitsuki,Furuyama, Taniyuki,Kunishima, Munetaka

, p. 3625 - 3636 (2021/03/03)

To improve the efficiency of the photocatalytic decarbonylation of cyclopropenones, the effects of substituents on cyclopropenone were explored. A benzothiophene-substituted aminocyclopropenone exhibited significantly improved decarbonylation efficiency t

Phototriggered Active Alkyne Generation from Cyclopropenones with Visible Light-Responsive Photocatalysts

Mishiro, Kenji,Kimura, Takeshi,Furuyama, Taniyuki,Kunishima, Munetaka

supporting information, p. 4101 - 4105 (2019/06/17)

A photocatalytic active alkyne generation reaction was developed using cyclopropenone as a starting reagent. Visible light-responsive photocatalysts induced cyclopropenone decarbonylation. The resulting highly reactive alkyne could be used directly, witho

Phototriggered Dehydration Condensation Using an Aminocyclopropenone

Mishiro, Kenji,Yushima, Yuki,Kunishima, Munetaka

supporting information, p. 4912 - 4915 (2017/09/23)

A phototriggered dehydration condensation using an aminocyclopropenone has been developed. The UV irradiation of an aminocyclopropenone generated a highly reactive ynamine in situ and the dehydration condensation of a carboxylic acid and an amine coexisting in the reaction solution smoothly proceeded to afford an amide. This reaction is completely controllable by the ON/OFF states of a UV lamp.

Mild Amide-Cleavage Reaction Mediated by Electrophilic Benzylation

Yamada, Kohei,Karuo, Yukiko,Tsukada, Yuichi,Kunishima, Munetaka

supporting information, p. 14042 - 14047 (2016/09/21)

An extremely mild method for amide-cleavage by using the triazine-based benzylating reagent 4-(4,6-diphenoxy-1,3,5-triazin-2-yl)-4-benzylmorpholinium trifluoromethanesulfonate (DPT-BM), which spontaneously releases benzyl cation species when being dissolved at room temperature, has been developed. O-Benzylation of the amide with DPT-BM and the subsequent hydrolysis of the resulting intermediate benzyl imidate salt afford the corresponding amine and benzyl ester, which can be converted by hydrogenolysis into a carboxylic acid under neutral conditions. O-Benzylation proceeds depending on both steric and electronic factors around the amide group. Thus, some amides have been selectively cleaved over other amides. Furthermore, intramolecular chemoselective cleavage of an amide group in the presence of an ester group was achieved. Such selective hydrolytic reactions cannot be performed with Meerwein reagents as well as under acidic or basic hydrolytic conditions.

Oxidative activation of dihydropyridine amides to reactive acyl donors

Funder, Erik Daa,Trads, Julie B.,Gothelf, Kurt V.

, p. 185 - 198 (2015/01/16)

Amides of 1,4-dihydropyridine (DHP) are activated by oxidation for acyl transfer to amines, alcohols and thiols. In the reduced form the DHP amide is stable towards reaction with amines at room temperature. However, upon oxidation with DDQ the acyl donor is activated via a proposed pyridinium intermediate. The activated intermediate reacts with various nucleophiles to give amides, esters, and thio-esters in moderate to high yields. This journal is

Structure-activity relationships of cycloalkylamide derivatives as inhibitors of the soluble epoxide hydrolase

Kim, In-Hae,Park, Yong-Kyu,Hammock, Bruce D.,Nishi, Kosuke

experimental part, p. 1752 - 1761 (2011/05/05)

Structure-activity relationships of cycloalkylamide compounds as inhibitors of human sEH were investigated. When the left side of amide function was modified by a variety of cycloalkanes, at least a C6 like cyclohexane was necessary to yield reasonable inhibition potency on the target enzyme. In compounds with a smaller cycloalkane or with a polar group on the left side of amide function, no inhibition was observed. On the other hand, increased hydrophobicity dramatically improved inhibition potency. Especially, a tetrahydronaphthalene (20) effectively increased the potency. When a series of alkyl or aryl derivatives of cycloalkylamide were investigated to continuously optimize the right side of the amide pharmacophore, a benzyl moiety functionalized with a polar group produced highly potent inhibition. A nonsubstituted benzyl, alkyl, aryl, or biaryl structure present on the right side of the cycloalkylamide function induced a big decrease in inhibition potency. Also, the resulting potent cycloalkylamide (32) showed reasonable physical properties.

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