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(Z)-2,3-bis(4-methoxyphenyl)but-2-enedinitrile, also known as bis(4-methoxyphenyl)but-2-enedinitrile, is an organic compound characterized by its molecular formula C18H16N2O4. (Z)-2,3-bis(4-methoxyphenyl)but-2-enedinitrle features a conjugated diene system with two nitrile groups and two methoxyphenyl rings. It is a colorless solid and is often used in the synthesis of various pharmaceuticals and organic compounds due to its unique structure and reactivity. The presence of the nitrile groups and the electron-donating methoxy groups on the phenyl rings make (Z)-2,3-bis(4-methoxyphenyl)but-2-enedinitrle an interesting building block for further chemical transformations.

4680-92-6

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4680-92-6 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 4680-92-6 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 4,6,8 and 0 respectively; the second part has 2 digits, 9 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 4680-92:
(6*4)+(5*6)+(4*8)+(3*0)+(2*9)+(1*2)=106
106 % 10 = 6
So 4680-92-6 is a valid CAS Registry Number.

4680-92-6Downstream Products

4680-92-6Relevant academic research and scientific papers

A METHACRYLATE-BOUND PHOTOISOMERIZABLE CHROMOPHORE, METHODS FOR ITS SYNTHESIS AND OF ITS INTERMEDIATES

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Page/Page column 16; figure 7, (2008/06/13)

The invention discloses novel dicyanostilbene derivatives bound to a methacrylic moiety that can serve as an active chromophore in a 3-dimensional optical memory, processes for its synthesis and its intermediates.

Estrogen receptor-β potency-selective ligands: Structure-activity relationship studies of diarylpropionitriles and their acetylene and polar analogues

Meyers,Sun,Carlson,Marriner,Katzenellenbogen,Katzenellenbogen

, p. 4230 - 4251 (2007/10/03)

Through an effort to develop novel ligands that have subtype selectivity for the estrogen receptors alpha (ERα) and beta (ERβ), we have found that 2,3-bis(hydroxyphenyl)propionitrile (DPN) acts as an agonist on both ER subtypes, but has a 70-fold higher relative binding affinity and 170-fold higher relative potency in transcription assays with ERβ than with ERα. To investigate the ERβ affinity- and potency-selective character of this DPN further, we prepared a series of DPN analogues in which both the ligand core and the aromatic rings were modified by the repositioning of phenolic hydroxy groups and by the addition of alkyl substituents and nitrile groups. We also prepared other series of DPN analogues in which the nitrile functionality was replaced with acetylene groups or polar functions, to mimic the linear geometry or polarity of the nitrile, respectively. To varying degrees, all of the analogues show preferential binding affinity for ERβ (i.e., they are ERβ affinity-selective), and many, but not all of them, are also more potent in activating transcription through ERβ than through ERα (i.e., they are ERβ potency-selective). meso-2,3-Bis(4-hydroxyphenyl)succinonitrile and dl-2,3-bis(4-hydroxyphenyl)succinonitrile are among the highest ERβ affinity-selective ligands, and they have an ERβ potency selectivity that is equivalent to that of DPN. The acetylene analogues have higher binding affinities but somewhat lower selectivities than their nitrile counterparts. The polar analogues have lower affinities, and only the fluorinated polar analogues have substantial affinity selectivities. This study suggests that, in this series of ligands, the nitrile functionality is critical to ERβ selectivity because it provides the optimal combination of linear geometry and polarity. Furthermore, the addition of a second nitrile group β to the nitrile in DPN or the addition of a methyl substitutent at an ortho position on the β-aromatic ring increases the affinity and selectivity of these compounds for ERβ. These ERβ-selective compounds may prove to be valuable tools in understanding the differences in structure and biological function of ERα and ERβ.

Reaction of the Silver Salts of Arylnitroacetonitriles with 9-Bromofluorene. Synthesis of 9-(α-Cyanoarylidene)fluorenes

Lianis, Pygmalion S.,Rodios, Nestor A.,Alexandrou, Nicholas E.

, p. 537 - 540 (2007/10/02)

The silver salts 1a-d react with 9-bromofluorene to give both C- and O-alkylated products 2 and 3.The latter decompose to yield 9-fluorenone and the α-cyanooximes 5.The products 2 upon treatment with NaOH/EtOH eliminate HNO2 to afford 9-(α-cyanoarylidene)fluorenes 4 in 80percent yield. 9-Chloro-9-phenylfluorene reacts with salt 1a to give only C-alkylated product 6 in 70percent yield.

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