FP7Индивидуална стипендия2011–2013

TASTE · New Transformations of Secondary Alkylboronic Esters

7РП — „Хора“ (Действия „Мария Кюри“)

Период
2011-03-01 → 2013-02-28
Финансиране от ЕС
209 093 €
Участници
1
Схема
MC-IEF

Линиите свързват координатора с партньорите.

Накратко на български

Хирални боронови естери се използват за създаване на специфични молекули, като например дихидрохинолини и дихидропиридини. Тези структури служат като важни компоненти при производството на лекарства в фармацевтичната индустрия.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

New transformations of secondary alkylboronic esters

Our proposal for the fellowship concerned the expansion of the synthetic utility of chiral boronic esters, for which our research group has recently developed efficient synthetic methods. In specific, the main tasks described in the proposal were: a) the stereoselective replacement of boron to halides and other heteroatoms, b) the reaction of boronic esters with carbon electrophiles and c) their oxidative arylation as a conceptually novel approach to (metal-free) cross coupling of secondary organometallics. We have progressed significantly with regard to (a) and (b) during the course of the fellowship. Concerning objectives (a) and (b), we have published last year our results on the stereo-defined reaction of boronate complexes with a variety of electrophiles including carbon, nitrogen, oxygen and halide-based ones. We discovered that boron-ate complexes of chiral boronic esters can react in this context always with inversion of configuration. In an effort to expand the range of carbon electrophiles, we turned our attention to N-containing heterocycles, such as quinoline and pyridine. Transformations of this type would be certainly of high importance, leading to the formation of chiral dihydroquinolines and dihydropyridines, building blocks that are of high importance for the pharmaceutical industry, and so the socio-economic impact of such research could be clearly visible. We reasoned that this would greatly expand the potential of our chemistry and it was the focus of the fellow's work during the fellowship period. After extensive experimentation we identified optimum conditions and a chiral auxiliary that would render the reaction of boron-ate complexes with quinoline diastereoselective, namely (-)-8-phenyl menthol. Moreover, we found that addition of the same ate complex to chiral pyridinium ions affords excellent diastereoselectivities as well. In addition, we looked at the development of an improved protocol that would avoid the use of chiral auxiliaries and we found that properly substituted pyridines and quinolines can react with our boron reagents to afford highly selective transformations with the inherent chirality of the boronic esters as the stereo-defining element. In conclusion, we have extended that the utility of the carbon-boron bond so that to address stereoselective reactions with carbon electrophiles, of unprecedented efficiency. This greatly expands the synthetic chemist's toolbox with useful transformations that enable the synthesis of valuable compounds.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

The properties of organic molecules are defined by their shape andfunctionality. However, the creation of such molecules with controlover both of these features is highly challenging. This proposaldescribes novel methodology for simultaneous C-C bond formation with controlover shape (stereochemistry). In particular it focuseson the stereoselective replacement of boron (which is easy tointroduce) to halides and other heteroatoms, and new ways forcross-coupling to aromatics without the need for transition metals.In order to promote the electrophilic halogenation of a boronicester, we envisaged the reaction of boronate complex with a halogen electrophile. In preliminary experiments such processes have alreadybeen found to be viable and occur with complete stereoinversion.Through tuning the nature of the aryl lithium one could envisageselective halogenation of a broad range of substrates, giving accessto a myriad of stereodefined secondary alkyl halides, includingfluorides. Moreover, alcohols, amines derivatives, thioethers andselenoethers could all be accessible by the reaction of these newactivated boronic ester ate complexes with suitable electrophiles.The final part will focus on the (transition metal-free) crosscoupling of secondary alkylboronic esters. We present a conceptually newapproach to this challenging problem by considering the reaction of asecondary boronic ester with an aryl lithium reagent. Following atecomplex formation, one-electron oxidation would result indearomatization leading to a radical cation which would trigger a1,2-migration/rearomatization sequence. High stereointegrity can beexpected for such a process from the stereospecificity of the1,2-sigmatropic rearrangement. Preliminary results have shown thatthe concept is again viable but needs substantial optimization. This methodology will be applied tochallenges in synthesis.""

Оригинален текст от CORDIS (на английски).

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Данни: CORDIS, © Европейски съюз