Halogen bonding and mechanochemistry combined: synthesis, characterization, and application of N-iodosaccharin pyridine complexes
Literature Information
Khai-Nghi Truong, Jas S. Ward, Rakesh Puttreddy, Anssi Rajala, Elias Lassila, Carsten Bolm, Kari Rissanen
Halogen-bonded complexes are utilized across a myriad of synthetic chemistry fields, with halogen(I) complexes such as Barluenga's reagent being ubiquitous in halogenation reactions. The preparation of Barluenga's reagent requires the use of heavy metal salts and vast amounts of chlorinated solvents. In line with a more modern, environmentally conscious ethos, halogen-bonded adducts and a halogen(I) complex similar to Barluenga's reagent based on N-iodosaccharin were prepared by mechanochemical processes for the first time. The general absence of solvents or the use of vanishingly small amounts of ethyl acetate in a liquid-assisted grinding approach during mechanochemical preparations enabled the homoleptic [(DMAP)āIā(DMAP)]+ iodine(I) complex to be synthesized. The as prepared mechanochemical materials were used in the iodination of antipyrine, demonstrating their potential use as surrogates for Barluenga's reagent in both solution and solid-state syntheses.
Related Literature
The origin of dips for the graphene-based DNA sequencing device
Yeonchoo Cho, Seung Kyu Min, Woo Youn Kim, Kwang S. Kim
DOI: 10.1039/C1CP20760A
Intramolecular charge transfer and dual fluorescence of 4-(dimethylamino)benzonitrile: ultrafast branching followed by a two-fold decay mechanism‡
Pedro B. Coto, Luis Serrano-Andrés, Thomas Gustavsson, Takashige Fujiwara, Edward C. Lim
DOI: 10.1039/C1CP21089K
A theoretical study of pure and mixed caesium clusters and cluster ions, CslHmO 0/+n, l ≤ 5: geometry, energetics and photofragmentation
Sebastian Krapf, Maria Schill, Sebastian Krötz, Thorsten Koslowski
DOI: 10.1039/C1CP21274E
Molecular dynamics studies of native and substituted cyclodextrins in different media: 1. Charge derivation and force field performances
Christine Cézard, Frédéric Aubry, Florence Djedaïni-Pilard, François-Yves Dupradeau
DOI: 10.1039/C1CP20854C
Effect of volatile organic chemicals on surface-enhanced Raman scattering of 4-aminobenzenethiol on Ag: comparison with the potential dependence
Kwan Kim, Kyung Lock Kim, Jeong-Young Choi, Dongha Shin, Kuan Soo Shin
DOI: 10.1039/C1CP21249D
Enhancement of hematoporphyrin IX potential for photodynamic therapy by entrapment in silica nanospheres
Paulo R. Silva, Lucas L. R. Vono, Breno P. Espósito, Maurício S. Baptista, Liane M. Rossi
DOI: 10.1039/C1CP21525F
Electron-beam evaporated silicon as a top contact for molecular electronic device fabrication
Rajesh Kumar, Haijun Yan, Adam Johan Bergren
DOI: 10.1039/C1CP20755E
Voltammetry and in situscanning tunnelling spectroscopy of osmium, iron, and ruthenium complexes of 2,2′:6′,2′′-terpyridine covalently linked to Au(111)-electrodes
Princia Salvatore, Allan Glargaard Hansen, Thomas Bjørnholm, Richard John Nichols, Jens Ulstrup
DOI: 10.1039/C1CP21197H
Temperature dependent structured absorption spectra of molecular chlorine
I. A. K. Young, C. Murray, C. M. Blaum, R. A. Cox, R. L. Jones, F. D. Pope
DOI: 10.1039/C1CP21337G
Understanding microsolvation of Li+: structural and energetical analyses
Jonathan Romero, Andres Reyes, Jorge David, Albeiro Restrepo
DOI: 10.1039/C1CP20903E
You might also like
How should 2-Methylbenzene-1,4-diamine dihydrochloride (CAS: 615-45-2) be stored?
2-Methylbenzene-1,4-diamine dihydrochloride (CAS: 615-45-2) should be stored in ...
Is (1S,4S)-2,5-Diazabicyclo[2.2.1]heptane dihydrobromide (CAS: 132747-20-7) safe?
(1S,4S)-2,5-Diazabicyclo[2.2.1]heptane dihydrobromide is generally considered sa...
What industries use (6-Chloropyridazin-3-YL)methanamine (CAS: 871826-15-2)?
(6-Chloropyridazin-3-YL)methanamine finds applications in the pharmaceutical ind...
What are the main uses of 2-Fluoro-3-methylphenol (CAS: 77772-72-6)?
2-Fluoro-3-methylphenol is primarily used in the synthesis of pharmaceuticals, p...
What precautions should be taken when handling 3-Methoxy-4-nitrobenzonitrile (CAS: 177476-75-4)?
When handling 3-Methoxy-4-nitrobenzonitrile, it is important to wear appropriate...
What precautions should be taken when handling 1,3-Oxazolo[4,5-b]pyridine-2(3H)-thione (CAS: 211949-57-4)?
When handling 1,3-Oxazolo[4,5-b]pyridine-2(3H)-thione (CAS: 211949-57-4), it is ...
What regulatory guidelines apply to 4-Ethynylbenzamide (CAS: 90347-86-7)?
4-Ethynylbenzamide (CAS: 90347-86-7) falls under various regulatory guidelines i...
What are the main uses of 3-(2-Ethylphenyl)-2-thioxo-4-imidazolidinone (CAS: 186822-57-1)?
3-(2-Ethylphenyl)-2-thioxo-4-imidazolidinone is primarily used as an intermediat...
What is (2-Fluoro-6-methoxyphenyl)acetic acid (CAS: 500912-19-6)?
(2-Fluoro-6-methoxyphenyl)acetic acid, also known as 4-fluoro-3-methoxybenzoic a...
What is the market or research trend for 2-[4-(Hydroxymethyl)phenoxy]ethanol (CAS: 102196-18-9)?
Market trends for 2-[4-(Hydroxymethyl)phenoxy]ethanol (CAS: 102196-18-9) indicat...
Source Journal
Organic Chemistry Frontiers

Organic Chemistry Frontiers publishes high-quality research from across organic chemistry. Emphases are placed on studies that make significant contributions to the field of organic chemistry by reporting either new or significantly improved protocols or methodologies. Topics include, but are not limited to the following: Organic synthesis Development of synthetic methodologies Catalysis Natural products Functional organic materials Supramolecular and macromolecular chemistry Physical and computational organic chemistry










![[(5-Methyl-1,3,4-thiadiazol-2-yl)sulfanyl]acetic acid structure [(5-Methyl-1,3,4-thiadiazol-2-yl)sulfanyl]acetic acid structure](https://static.chemtradehub.com/structs/509/50918-26-8-4ce8.webp)



