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1-Iodo-2-[(E)-2-phenylethenyl]benzene is an organic compound with the molecular formula C14H11I. It is a halogenated derivative of styrene, featuring a benzene ring with an iodine atom at the 1-position and a phenyl group attached to the 2-position through an ethylenic double bond. 1-iodo-2-[(E)-2-phenylethenyl]benzene is characterized by its yellowish color and is used in various chemical reactions, such as cross-coupling processes, to synthesize more complex organic molecules. Due to its reactivity and the presence of a heavy halogen atom, it can be employed as a precursor in the formation of new carbon-carbon bonds.

5025-41-2

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5025-41-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 5025-41-2 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 5,0,2 and 5 respectively; the second part has 2 digits, 4 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 5025-41:
(6*5)+(5*0)+(4*2)+(3*5)+(2*4)+(1*1)=62
62 % 10 = 2
So 5025-41-2 is a valid CAS Registry Number.

5025-41-2Relevant academic research and scientific papers

1,2,3-Triazoles as inhibitors of indoleamine 2,3-dioxygenase 2 (IDO2)

R?hrig, Ute F.,Majjigapu, Somi Reddy,Caldelari, Daniela,Dilek, Nahzli,Reichenbach, Patrick,Ascencao, Kelly,Irving, Melita,Coukos, George,Vogel, Pierre,Zoete, Vincent,Michielin, Olivier

supporting information, p. 4330 - 4333 (2016/08/18)

Indoleamine 2,3-dioxygenase 2 (IDO2) is a potential therapeutic target for the treatment of diseases that involve immune escape such as cancer. In contrast to IDO1, only a very limited number of inhibitors have been described for IDO2 due to inherent diff

Synthesis of stilbene derivatives via visible-light-induced cross-coupling of aryl diazonium salts with nitroalkenes using-NO2 as a leaving group

Zhang, Na,Quan, Zheng-Jun,Zhang, Zhang,Da, Yu-Xia,Wang, Xi-Cun

supporting information, p. 14234 - 14237 (2016/12/14)

The straightforward visible-light-induced synthesis of stilbene compounds via the cross-coupling of nitroalkenes and diazonium tetrafluoroborates under transition-metal-free conditions is described. The protocol uses green LEDs as light sources and eosin Y as an organophotoredox catalyst. Broad substrate scope and exclusive selectivity for the (E)-configuration of stilbenes are observed. This protocol proceeds via a radical pathway, with nitroalkenes serving as the radical acceptor, and the nitro group is cleaved during the process.

Diisobutylaluminum hydride promoted cyclization of o -(trimethylsilylethynyl)styrenes to indenes

Kinoshita, Hidenori,Hirai, Nobuyoshi,Miura, Katsukiyo

, p. 8171 - 8181 (2015/03/18)

The reaction of o-(trimethylsilylethynyl)styrenes with diisobutylaluminum hydride (DIBAL-H) provides 2-trimethylsilyl-1H-indenes efficiently. The cyclization mechanism involves regioselective hydroalumination of the alkynyl moiety, geometrical isomerizati

Unequivocal experimental evidence for a unified lithium salt-free wittig reaction mechanism for all phosphonium ylide types: Reactions with β-heteroatom-substituted aldehydes are consistently selective for cis-oxaphosphetane-derived products

Byrne, Peter A.,Gilheany, Declan G.

supporting information; experimental part, p. 9225 - 9239 (2012/07/14)

The true course of the lithium salt-free Wittig reaction has long been a contentious issue in organic chemistry. Herein we report an experimental effect that is common to the Wittig reactions of all of the three major phosphonium ylide classes (non-stabilized, semi-stabilized, and stabilized): there is consistently increased selectivity for cis-oxaphosphetane and its derived products (Z-alkene and erythro-β-hydroxyphosphonium salt) in reactions involving aldehydes bearing heteroatom substituents in the β-position. The effect operates with both benzaldehydes and aliphatic aldehydes and is shown not to operate in the absence of the heteroatom substituent on the aldehyde. The discovery of an effect that is common to reactions of all ylide types strongly argues for the operation of a common mechanism in all Li salt-free Wittig reactions. In addition, the results are shown to be most easily explained by the [2+2] cycloaddition mechanism proposed by Vedejs and co-workers as supplemented by Aggarwal, Harvey, and co-workers, thus providing strong confirmatory evidence in support of that mechanism. Notably, a cooperative effect of ortho-substituents in the case of semi-stabilized ylides is confirmed and is accommodated by the cycloaddition mechanism. The effect is also shown to operate in reactions of triphenylphosphine-derived ylides and has previously been observed for reactions under aqueous conditions, thus for the first time providing evidence that kinetic control is in operation in both of these cases.

Potassium tert-butoxide promoted intramolecular arylation via a radical pathway

Roman, Daniela Sustac,Takahashi, Yoko,Charette, Andre B.

supporting information; experimental part, p. 3242 - 3245 (2011/08/02)

Potassium tert-butoxide mediated intramolecular cyclization of aryl ethers, amines, and amides was efficiently performed under microwave irradiation to provide the corresponding products in high regioisomeric ratios. The reaction proceeds via single-electron transfer to initiate the formation of an aryl radical, followed by a kinetically favored 5-exo-trig and subsequent ring expansion.

Flash vacuum pyrolysis over magnesium. Part 1 - Pyrolysis of benzylic, other aryl/alkyl and aliphatic halides

Aitken, R. Alan,Hodgson, Philip K.G.,Morrison, John J.,Oyewale, Adebayo O.

, p. 402 - 415 (2007/10/03)

Flash vacuum pyrolysis over a bed of freshly sublimed magnesium on glass wool results in efficient coupling of benzyl halides to give the corresponding bibenzyls. Where an ortho halogen substituent is present further dehalogenation gives some dihydroanthracene and anthracene. Efficient coupling is also observed for halomethylnaphthalenes and halodiphenylmethanes while chlorotriphenylmethane gives 4,4′-bis(diphenylmethyl)biphenyl. By using α,α′-dihalo-o-xylenes, benzocyclobutenes are obtained in good yield, while the isomeric α,α′-dihalo-p-xylenes give a range of high thermal stability polymers by polymerisation of the initially formed p-xylylenes. Other haloalkylbenzenes undergo largely dehydrohalogenation where this is possible, in some cases resulting in cyclisation. Deoxygenation is also observed with haloalkyl phenyl ketones to give phenylalkynes as well as other products. With simple alkyl halides there is efficient elimination of HCl or HBr to give alkenes. For aliphatic dihalides this also occurs to give dienes but there is also cyclisation to give cycloalkanes and dehalogenation with hydrogen atom transfer to give alkenes in some cases. For 5-bromopent-1-ene the products are those expected from a radical pathway but for 6-bromohex-1-ene they are clearly not. For 2,2-dichloropropane and 1,1-dichloropropane elimination of HCl occurs but for 1,1-dichlorobutane, -pentane and -hexane partial hydrolysis followed by elimination of HCl gives E, E-, E,Z- and Z,Z- isomers of the dialk-1-enyl ethers and fully assigned 13C NMR data are presented for these. With 6-chlorohex-1-yne and 7-chlorohept-1-yne there is cyclisation to give methylenecycloalkanes and -cycloalkynes. The behaviour of 1,2-dibromocyclohexane and 1,2-dichlorocyclooctane under these conditions is also examined. Various pieces of evidence are presented that suggest that these processes do not involve generation of free gas-phase radicals but rather surface-adsorbed organometallic species.

Eine Cycloadditions-Cyclodehydrierungs-Route von stilbenoiden zu ausgedehnten aromatischen Kohlenwasserstoffen

Mueller, Markus,Mauermann-Duell, Heike,Wagner, Manfred,Enkelmann, Volker,Muellen, Klaus

, p. 1751 - 1754 (2007/10/02)

Stichworte: Cycloadditionen, Cyclodehydrierungen, Diels-Alder Reaktionen, Graphitausschnitte, Polycyclen

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