Rao, A. Sambashiva et al. published their research in Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry in 2016 | CAS: 207115-22-8

4-Bromo-2-iodophenol (cas: 207115-22-8) belongs to iodide derivatives. Organic iodides are widely used in organic synthesis. Halogenation of aromatic hydrocarbons is a very important reaction via an electrophilic aromatic substitution. Organoiodine lubricants can be used with titanium, stainless steels, and other metals which tend to seize up with conventional lubricants: organoiodine lubricants can be used in turbines and spacecraft, and as a cutting oil in machining.Reference of 207115-22-8

Isoquinolinium Dichromate and Chlorochromate as Efficient Catalysts for Oxidative Halogenation of Aromatic Compounds Under Acid-Free Conditions was written by Rao, A. Sambashiva;Rajanna, K. C.;Reddy, K. Rajendar;Kulkarni, Subhash. And the article was included in Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry in 2016.Reference of 207115-22-8 This article mentions the following:

Isoquinolinium dichromate and isoquinolinium chlorochromate were found as efficient catalysts to trigger oxidative bromination and iodination of aromatic hydrocarbons with KBr/KI and KHSO4 under acid-free conditions. Reaction times reduced highly significantly under sonication, followed by corresponding mono bromo derivatives in very good yield with high regioselectivity. In the experiment, the researchers used many compounds, for example, 4-Bromo-2-iodophenol (cas: 207115-22-8Reference of 207115-22-8).

4-Bromo-2-iodophenol (cas: 207115-22-8) belongs to iodide derivatives. Organic iodides are widely used in organic synthesis. Halogenation of aromatic hydrocarbons is a very important reaction via an electrophilic aromatic substitution. Organoiodine lubricants can be used with titanium, stainless steels, and other metals which tend to seize up with conventional lubricants: organoiodine lubricants can be used in turbines and spacecraft, and as a cutting oil in machining.Reference of 207115-22-8

Referemce:
Iodide – Wikipedia,
Iodide – an overview | ScienceDirect Topics – ScienceDirect.com

Fan, Xuetao et al. published their research in Colloids and Surfaces, A: Physicochemical and Engineering Aspects in 2022 | CAS: 207115-22-8

4-Bromo-2-iodophenol (cas: 207115-22-8) belongs to iodide derivatives. Iodide-containing intermediates are common in organic synthesis, because of the easy formation and cleavage of the C–I bond. Organoiodine lubricants can be used with titanium, stainless steels, and other metals which tend to seize up with conventional lubricants: organoiodine lubricants can be used in turbines and spacecraft, and as a cutting oil in machining.Application of 207115-22-8

Pd/Cu bimetallic catalyst immobilized on PEI capped cellulose-polyamidoamine dendrimer was written by Fan, Xuetao;Lin, Dongtao;Xu, Zhian;Li, Yiqun. And the article was included in Colloids and Surfaces, A: Physicochemical and Engineering Aspects in 2022.Application of 207115-22-8 This article mentions the following:

Polyamidoamine dendrimer (PAMAM) is an efficient material for immobilization of Pd(II) complex due to its unique tree-like structure and properties. To the purpose of enhancing of the loading of Cu(II) ions, a polyethyleneimine end-capped microcrystn. cellulose-polyamidoamine dendrimer (G2.5) (MCC-PAMAMG2.5-PEI) was designed and synthesized. The resultant MCC-PAMAMG2.5-PEI was furtherly treated by PdCl2 and CuSO4 solution to afford the corresponding dendrimer-supported Pd/Cu bimetallic catalyst (Pd/[email protected]). As a result, both Pd(II) and Cu(II) ions were well selectively immobilized within the interior architectures and exterior PEI layers of dendrimers, resp. The as-prepared catalyst was fully characterized by elemental anal. (EA), inductively coupled plasma at. emission spectrometry (ICP-AES), Fourier transform IR spectrometer (FTIR), XPS, X-ray diffraction (XRD), field emission SEM (FESEM), elemental mappings, energy-dispersive X-ray spectra (EDX), field emission transmission electron microscopy (FETEM), and thermogravimetry anal. (TGA) techniques. The presence of required Pd and Cu elements were confirmed from ICP-AES, XPS, EDX, and elemental mappings anal., resp. The synergetic effect between Pd and Cu can be observed by comparing it to the dendrimer supported monometallic Pd and Cu as well as the mixture of dendrimer supported Pd and Cu. The catalyst showed excellent performance in the synthesis of alkynes and benzofurans via Sonogashira reactions and could be reused for seven successive runs without any noteworthy loss of activity. Moreover, its efficiency was compared with other reported catalysts in the same transformations. In the experiment, the researchers used many compounds, for example, 4-Bromo-2-iodophenol (cas: 207115-22-8Application of 207115-22-8).

4-Bromo-2-iodophenol (cas: 207115-22-8) belongs to iodide derivatives. Iodide-containing intermediates are common in organic synthesis, because of the easy formation and cleavage of the C–I bond. Organoiodine lubricants can be used with titanium, stainless steels, and other metals which tend to seize up with conventional lubricants: organoiodine lubricants can be used in turbines and spacecraft, and as a cutting oil in machining.Application of 207115-22-8

Referemce:
Iodide – Wikipedia,
Iodide – an overview | ScienceDirect Topics – ScienceDirect.com

Li, Hongbo et al. published their research in Chemical Science in 2018 | CAS: 77350-52-8

N,N-Diethyl-4-iodobenzamide (cas: 77350-52-8) belongs to iodide derivatives. Organic iodides are widely used in organic synthesis. Halogenation of aromatic hydrocarbons is a very important reaction via an electrophilic aromatic substitution. In the chemical industry, alkyl iodides serve as excellent alkylating agents and, specifically, methyl iodide is used as a methylating agent in the synthesis of various pharmaceutical drugs.Quality Control of N,N-Diethyl-4-iodobenzamide

Silylation reactions on nanoporous gold via homolytic Si-H activation of silanes was written by Li, Hongbo;Guo, Huifang;Li, Zhiwen;Wu, Cai;Li, Jing;Zhao, Chunliang;Guo, Shuangxi;Ding, Yi;He, Wei;Li, Yadong. And the article was included in Chemical Science in 2018.Quality Control of N,N-Diethyl-4-iodobenzamide This article mentions the following:

Si-H bond activation is an important process implicated in many useful synthetic applications including silylation and transfer hydrogenation reactions. Herein, homolytic activation of Si-H bonds on the surface of nanoporous gold (NPG), forming hydrogen radicals and [Au]-[Si] intermediates is discovered. By virtue of this new reactivity, highly selective mono and sequential alcoholysis of dihydrosilane is achieved. In addition, the amphiphilic nature of the [Au]-[Si] intermediate allows for a new bis-silylation reaction of cyclic ethers. The present work showcased that the surface reactivity of nanocatalysts may provide exciting opportunity for new reaction discovery. In the experiment, the researchers used many compounds, for example, N,N-Diethyl-4-iodobenzamide (cas: 77350-52-8Quality Control of N,N-Diethyl-4-iodobenzamide).

N,N-Diethyl-4-iodobenzamide (cas: 77350-52-8) belongs to iodide derivatives. Organic iodides are widely used in organic synthesis. Halogenation of aromatic hydrocarbons is a very important reaction via an electrophilic aromatic substitution. In the chemical industry, alkyl iodides serve as excellent alkylating agents and, specifically, methyl iodide is used as a methylating agent in the synthesis of various pharmaceutical drugs.Quality Control of N,N-Diethyl-4-iodobenzamide

Referemce:
Iodide – Wikipedia,
Iodide – an overview | ScienceDirect Topics – ScienceDirect.com

Sura, Tushar P. et al. published their research in Journal of Organic Chemistry in 1993 | CAS: 36748-88-6

3-Iodobenzo[b]thiophene (cas: 36748-88-6) belongs to iodide derivatives. Organoiodine compounds occur widely in organic chemistry, but are relatively rare in nature. The C–I bond is the weakest of the carbon–halogen bonds. These bond strengths correlate with the electronegativity of the halogen, decreasing in the order F > Cl > Br > I.Synthetic Route of C8H5IS

Cope rearrangements in the benzo[b]thiophene series was written by Sura, Tushar P.;MacDowell, Denis W. H.. And the article was included in Journal of Organic Chemistry in 1993.Synthetic Route of C8H5IS This article mentions the following:

The inability to observe Cope rearrangement products at elevated temperatures for di-Et α-allyl-2-naphthalenemalonate and di-Et α-allyl-9-phenanthrenemalonate does not extend to analogous systems resulting from replacement of the aromatic units by 2- and 3-benzo[b]thiophene nuclei. Thermal rearrangement of di-Et α-allyl-3-benzo[b]thiophenemalonate at 215-255°C for 11 h gave the expected Cope rearrangement product di-Et 2-allyl-3-benzo[b]thiophenemalonate (8%) accompanied by trans- and cis-Et 2,3-dihydro-1-(ethoxycarbonyl)-1H-benzo[b]cyclopenta[d]thiopehen-2-acetate in 10% yield 5% yield, resp. The attempted structure verification of 2-allyl-3-benzo[b]thiophenemalonate by an independent route gave di-Et 2-(1-propenyl)-3-benzo[b]thiophenemalonate which when heated at 230-240°C for 18 h gave 1-carbethoxy-2-hydroxy-3-methyldibenzothiophene as a major product. Similar results were observed with 2-substituted analogs of di-Et α-allyl-3-benzo[b]thiophenemalonate, both di-Et 3-allyl-2-benzo[b]thiophenemalonate and Et 1,2-dihydro-3-(ethoxycarbonyl)-3H-benzo[b]cyclopenta[d]thiophene-2-acetate were formed. In the experiment, the researchers used many compounds, for example, 3-Iodobenzo[b]thiophene (cas: 36748-88-6Synthetic Route of C8H5IS).

3-Iodobenzo[b]thiophene (cas: 36748-88-6) belongs to iodide derivatives. Organoiodine compounds occur widely in organic chemistry, but are relatively rare in nature. The C–I bond is the weakest of the carbon–halogen bonds. These bond strengths correlate with the electronegativity of the halogen, decreasing in the order F > Cl > Br > I.Synthetic Route of C8H5IS

Referemce:
Iodide – Wikipedia,
Iodide – an overview | ScienceDirect Topics – ScienceDirect.com

Gulia, Nurbey et al. published their research in Angewandte Chemie, International Edition in 2017 | CAS: 5460-32-2

4-Iodo-1,2-dimethoxybenzene (cas: 5460-32-2) belongs to iodide derivatives. Organoiodine compounds occur widely in organic chemistry, but are relatively rare in nature. Polyiodoorganic compounds are sometimes employed as X-ray contrast agents, in fluoroscopy, a type of medical imaging. This application exploits the X-ray absorbing ability of the heavy iodine nucleus.Product Details of 5460-32-2

Palladium-Catalyzed Pyrazole-Directed sp3 C-H Bond Arylation for the Synthesis of β-Phenethylamines was written by Gulia, Nurbey;Daugulis, Olafs. And the article was included in Angewandte Chemie, International Edition in 2017.Product Details of 5460-32-2 This article mentions the following:

We have developed a method for palladium-catalyzed, pyrazole-directed sp3 C-H bond arylation by aryl iodides. The reaction employs a Pd(OAc)2 catalyst at 5-10 mol % loading and silver(I) oxide as a halide-removal agent, and it proceeds in acetic acid or acetic acid/hexafluoroisopropanol solvent. Ozonolysis of the pyrazole moiety affords pharmaceutically important β-phenethylamines. In the experiment, the researchers used many compounds, for example, 4-Iodo-1,2-dimethoxybenzene (cas: 5460-32-2Product Details of 5460-32-2).

4-Iodo-1,2-dimethoxybenzene (cas: 5460-32-2) belongs to iodide derivatives. Organoiodine compounds occur widely in organic chemistry, but are relatively rare in nature. Polyiodoorganic compounds are sometimes employed as X-ray contrast agents, in fluoroscopy, a type of medical imaging. This application exploits the X-ray absorbing ability of the heavy iodine nucleus.Product Details of 5460-32-2

Referemce:
Iodide – Wikipedia,
Iodide – an overview | ScienceDirect Topics – ScienceDirect.com

Pizzuti, Maria Gabriella et al. published their research in Organic & Biomolecular Chemistry in 2008 | CAS: 10297-05-9

1-Chloro-4-iodobutane (cas: 10297-05-9) belongs to iodide derivatives. In general, organic iodides are light-sensitive and turn yellow during storage, owing to the formation of iodine. Polyiodoorganic compounds are sometimes employed as X-ray contrast agents, in fluoroscopy, a type of medical imaging. This application exploits the X-ray absorbing ability of the heavy iodine nucleus.Computed Properties of C4H8ClI

Catalytic asymmetric synthesis of the alkaloid (+)-myrtine was written by Pizzuti, Maria Gabriella;Minnaard, Adriaan J.;Feringa, Ben L.. And the article was included in Organic & Biomolecular Chemistry in 2008.Computed Properties of C4H8ClI This article mentions the following:

A new protocol for the asym. synthesis of trans-2,6-disubstituted-4-piperidones has been developed using a catalytic enantioselective conjugate addition reaction in combination with a diastereoselective lithiation-substitution sequence; an efficient synthesis of (+)-myrtine (I) has been achieved via this route. In the experiment, the researchers used many compounds, for example, 1-Chloro-4-iodobutane (cas: 10297-05-9Computed Properties of C4H8ClI).

1-Chloro-4-iodobutane (cas: 10297-05-9) belongs to iodide derivatives. In general, organic iodides are light-sensitive and turn yellow during storage, owing to the formation of iodine. Polyiodoorganic compounds are sometimes employed as X-ray contrast agents, in fluoroscopy, a type of medical imaging. This application exploits the X-ray absorbing ability of the heavy iodine nucleus.Computed Properties of C4H8ClI

Referemce:
Iodide – Wikipedia,
Iodide – an overview | ScienceDirect Topics – ScienceDirect.com

Zhu, Mengbing et al. published their research in New Journal of Chemistry in 2021 | CAS: 474416-61-0

Bis(2-iodothiophen-3-yl)methanone (cas: 474416-61-0) belongs to iodide derivatives. Organic iodides are organic compounds containing a carbon-iodine (C-I) bond. The carbon-iodine bond is weaker than other carbon-halogen bonds due to the poor electronegative nature of the iodine atom. In the chemical industry, alkyl iodides serve as excellent alkylating agents and, specifically, methyl iodide is used as a methylating agent in the synthesis of various pharmaceutical drugs.COA of Formula: C9H4I2OS2

Simple-structure small molecular acceptors based on a benzodithiophenedione core: synthesis, optoelectronic and photovoltaic properties was written by Zhu, Mengbing;Yu, Xiankang;Huang, Jingwei;Xia, Hao;Zhu, Jianing;Peng, Wenhong;Tan, Hua;Zhu, Weiguo. And the article was included in New Journal of Chemistry in 2021.COA of Formula: C9H4I2OS2 This article mentions the following:

It is crucial to develop high-efficiency simple-structure small mol. acceptors (SMAs) having a shortened synthetic route and lower cost. Herein, two simple SMAs, BDDTTIC and BDDTTIC-4F, with the A-D-A-D-A architecture were primarily synthesized via a simple three-step route in high yields, based on the central acceptor (A′) unit of benzodithiophenedione (BDD), the spacing donor (D) unit of thienothiophene (TT) and the terminal acceptor (A) unit of dicyanomethylene indanone (IC) or its fluorinated analog (IC-4F). The influence of the mol. structure on the photophys., electrochem. and photovoltaic properties was primarily studied. The results show that the fluorine-free BDDTTIC exhibits better solubility and higher LUMO energy levels (-3.81 eV) than the fluorinated BDDTTIC-4F. Moreover, the PM6:BDDTTIC based OSCs show better photovoltaic properties than the PM6:BDDTTIC-4F based OSCs by optimizing the polymer donor material, donor/acceptor ratio and 1-chloronaphthalene additive ratio. An increasing power conversion efficiency of 5.62% with a high open-circuit voltage of 0.95 V was obtained in the optimal PM6:BDDTTIC-based device, which is almost two times higher than that of the optimal PM6:BDDTTIC-4F-based device. This work provides a potential direction to further construct high-efficiency BDD-based SMAs. In the experiment, the researchers used many compounds, for example, Bis(2-iodothiophen-3-yl)methanone (cas: 474416-61-0COA of Formula: C9H4I2OS2).

Bis(2-iodothiophen-3-yl)methanone (cas: 474416-61-0) belongs to iodide derivatives. Organic iodides are organic compounds containing a carbon-iodine (C-I) bond. The carbon-iodine bond is weaker than other carbon-halogen bonds due to the poor electronegative nature of the iodine atom. In the chemical industry, alkyl iodides serve as excellent alkylating agents and, specifically, methyl iodide is used as a methylating agent in the synthesis of various pharmaceutical drugs.COA of Formula: C9H4I2OS2

Referemce:
Iodide – Wikipedia,
Iodide – an overview | ScienceDirect Topics – ScienceDirect.com

Benson, Timothy J. et al. published their research in Journal of the Chemical Society in 1992 | CAS: 15813-09-9

4,5-Diiodo-1H-imidazole (cas: 15813-09-9) belongs to iodide derivatives. Generally organic iodides can be divided into two classes of alkyl iodides and aryl iodides. Typical reactions of alkyl iodides include nucleophilic substitution, elimination, reduction, and the formation of organometallics. Alkyl iodides react at a faster rate than alkyl fluorides due to the weak C-I bond.COA of Formula: C3H2I2N2

A new and unequivocal method for establishing the position of N-glycosylation of unsymmetrically C-substituted imidazoles was written by Benson, Timothy J.;Robinson, Brian. And the article was included in Journal of the Chemical Society, Perkin Transactions 1: Organic and Bio-Organic Chemistry (1972-1999) in 1992.COA of Formula: C3H2I2N2 This article mentions the following:

N-Substitution of an unsym. C-substituted imidazole can give rise to a pair of structurally isomeric derivatives and to differentiate between such related compounds can be difficult. Two methods, one spectroscopic and one chem., for ascertaining the orientation of such N-substitutions are described, with particular application to the establishment of the direction of N-ribosidation of a series of halogeno nitroimidazoles. In the experiment, the researchers used many compounds, for example, 4,5-Diiodo-1H-imidazole (cas: 15813-09-9COA of Formula: C3H2I2N2).

4,5-Diiodo-1H-imidazole (cas: 15813-09-9) belongs to iodide derivatives. Generally organic iodides can be divided into two classes of alkyl iodides and aryl iodides. Typical reactions of alkyl iodides include nucleophilic substitution, elimination, reduction, and the formation of organometallics. Alkyl iodides react at a faster rate than alkyl fluorides due to the weak C-I bond.COA of Formula: C3H2I2N2

Referemce:
Iodide – Wikipedia,
Iodide – an overview | ScienceDirect Topics – ScienceDirect.com

Soni, Vineeta et al. published their research in ACS Catalysis in 2016 | CAS: 10297-05-9

1-Chloro-4-iodobutane (cas: 10297-05-9) belongs to iodide derivatives. Organic iodides are widely used in organic synthesis. Halogenation of aromatic hydrocarbons is a very important reaction via an electrophilic aromatic substitution. Alkyl iodides react at a faster rate than alkyl fluorides due to the weak C-I bond.Category: iodides-buliding-blocks

Unified Strategy for Nickel-Catalyzed C-2 Alkylation of Indoles through Chelation Assistance was written by Soni, Vineeta;Jagtap, Rahul A.;Gonnade, Rajesh G.;Punji, Benudhar. And the article was included in ACS Catalysis in 2016.Category: iodides-buliding-blocks This article mentions the following:

A nickel-catalyzed direct C-2 alkylation of indoles through monodentate-chelation assistance has been described. This reaction proceeds via an unusual strategy by the use of a well-designed and defined (quinolinyl)amido-nickel catalyst, [{κNNN-Et2NCH2C(O)(μ-N)C9H6N}Ni(OAc)], providing a solution to the limitations associated with bidentate-chelate auxiliaries. The method allows coupling of indoles with various unactivated primary and secondary alkyl halides with ample substrate scope. This uniquely strategized alkylation proceeded through crucial C-H activation and via an alkyl radical intermediate. The reaction by this approach represents a rare example of Ni-catalyzed monodentate-chelate-assisted C-H functionalization. In the experiment, the researchers used many compounds, for example, 1-Chloro-4-iodobutane (cas: 10297-05-9Category: iodides-buliding-blocks).

1-Chloro-4-iodobutane (cas: 10297-05-9) belongs to iodide derivatives. Organic iodides are widely used in organic synthesis. Halogenation of aromatic hydrocarbons is a very important reaction via an electrophilic aromatic substitution. Alkyl iodides react at a faster rate than alkyl fluorides due to the weak C-I bond.Category: iodides-buliding-blocks

Referemce:
Iodide – Wikipedia,
Iodide – an overview | ScienceDirect Topics – ScienceDirect.com

He, Chunlin et al. published their research in Inorganic Chemistry in 2016 | CAS: 15813-09-9

4,5-Diiodo-1H-imidazole (cas: 15813-09-9) belongs to iodide derivatives. Generally organic iodides can be divided into two classes of alkyl iodides and aryl iodides. Typical reactions of alkyl iodides include nucleophilic substitution, elimination, reduction, and the formation of organometallics. Organoiodine lubricants can be used with titanium, stainless steels, and other metals which tend to seize up with conventional lubricants: organoiodine lubricants can be used in turbines and spacecraft, and as a cutting oil in machining.Category: iodides-buliding-blocks

Iodine-Rich Imidazolium Iodate and Periodate Salts: En Route to Single-Based Biocidal Agents was written by He, Chunlin;Hooper, Joseph P.;Shreeve, Jean’ne M.. And the article was included in Inorganic Chemistry in 2016.Category: iodides-buliding-blocks This article mentions the following:

Two classes of iodine-rich salts that consist of iodine-rich cations and iodate (IO3) or periodate (IO4) anions were synthesized. The synthesis of analogous I3O8 salts was more difficult because of poor solubility and hydrolytic instability. All iodine-rich salts were fully characterized by IR, 1H NMR, and 13C NMR spectroscopy as well as elemental analyses. The mol. structures of compounds 15 and 24 were elucidated by X-ray single-crystal diffraction. Addnl., the heats of formation were calculated with Gaussian 03. The detonation properties and biocidal efficiency were calculated and evaluated using CHEETAH 7. In the experiment, the researchers used many compounds, for example, 4,5-Diiodo-1H-imidazole (cas: 15813-09-9Category: iodides-buliding-blocks).

4,5-Diiodo-1H-imidazole (cas: 15813-09-9) belongs to iodide derivatives. Generally organic iodides can be divided into two classes of alkyl iodides and aryl iodides. Typical reactions of alkyl iodides include nucleophilic substitution, elimination, reduction, and the formation of organometallics. Organoiodine lubricants can be used with titanium, stainless steels, and other metals which tend to seize up with conventional lubricants: organoiodine lubricants can be used in turbines and spacecraft, and as a cutting oil in machining.Category: iodides-buliding-blocks

Referemce:
Iodide – Wikipedia,
Iodide – an overview | ScienceDirect Topics – ScienceDirect.com