Jensen, Morten’s team published research in Chemistry – A European Journal in 2020 | CAS: 623-24-5

1,4-Bis(bromomethyl)benzene(cas: 623-24-5) belongs to organobromine compounds. A variety of minor organobromine compounds are found in nature, but none are biosynthesized or required by mammals. Organobromine compounds have fallen under increased scrutiny for their environmental impact. Recommanded Product: 623-24-5

Recommanded Product: 623-24-5In 2020 ,《Probing the Electrostatic Barrier of Tetrathiafulvalene Dications using a Tetra-stable Donor-Acceptor [2]Rotaxane》 was published in Chemistry – A European Journal. The article was written by Jensen, Morten; Kristensen, Rikke; Andersen, Sissel S.; Bendixen, Dan; Jeppesen, Jan O.. The article contains the following contents:

A tetra-stable donor-acceptor [2]rotaxane 1·PF6 has been synthesized. The dumbbell component is comprised of an oxyphenylene (OP), a tetrathiafulvalene (TTF), a monopyrrolo-TTF (MPTTF), and a hydroquinone (HQ) unit, which can act as recognition sites (stations) for the tetra-cationic cyclophane cyclobis(paraquat-p-phenylene) (CBPQT4+). The TTF and the MPTTF stations are located in the middle of the dumbbell component and are connected by a triethylene glycol (TEG) chain in such a way that the pyrrole moiety of the MPTTF station points toward the TTF station, while the TTF and MPTTF stations are flanked by the OP and HQ stations on their left hand side and right hand side, resp. The [2]rotaxane was characterized in solution by 1H NMR spectroscopy and cyclic voltammetry. The spectroscopic data revealed that the majority (77%) of the tetra-stable [2]rotaxane 14+ exist as the translational isomer 1·MPTTF4+ in which the CBPQT4+ ring encircles the MPTTF station. The electrochem. studies showed that CBPQT in 1·MPTTF4+ undergoes ring translation as result of electrostatic repulsion from the oxidized MPTTF unit. Following tetra-oxidation of 1·MPTTF4+, a high-energy state of 18+ was obtained (i.e., 1·TEG8+) in which the CBPQT4+ ring was located on the TEG linker connecting the di-oxidized TTF2+ and MPTTF2+ units. 1H NMR spectroscopy carried out in CD3CN at 298 K on a chem. oxidized sample of 1·MPTTF4+ revealed that the metastable state 1·TEG8+ is only short-lived with a lifetime of a few minutes and it was found that 70% of the pos. charged CBPQT4+ ring moved from 1·TEG8+ to the HQ station, while 30% moved to the much weaker OP station. These results clearly demonstrate that the CBPQT4+ ring can cross both an MPTTF2+ and a TTF2+ electrostatic barrier and that the free energy of activation required to cross MPTTF2+ is ca. 0.5 kcal mol-1 smaller as compared to TTF2+. The experimental part of the paper was very detailed, including the reaction process of 1,4-Bis(bromomethyl)benzene(cas: 623-24-5Recommanded Product: 623-24-5)

1,4-Bis(bromomethyl)benzene(cas: 623-24-5) belongs to organobromine compounds. A variety of minor organobromine compounds are found in nature, but none are biosynthesized or required by mammals. Organobromine compounds have fallen under increased scrutiny for their environmental impact. Recommanded Product: 623-24-5

Referemce:
Bromide – Wikipedia,
bromide – Wiktionary