scholarly journals Synthesis, NMR characterization and reactivity of 1-silacyclohex-2-ene derivatives

2012 ◽  
Vol 10 (5) ◽  
pp. 1633-1639 ◽  
Author(s):  
Ezzat Khan ◽  
Bernd Wrackmeyer

AbstractThe chloro functionality of allyldichlorosilane (HSiCl2(C3H5)) and allyldichloromethylsilane (MeSiCl2(C3H5)) were replaced by alkynyl groups and new compounds, allyldialkynylsilane 1 and allyldialkynylmethylsilane 2, were obtained. These silanes, which served as starting materials for the onward reactions, were purified by fractional distillation. They were further subjected to hydroboration with 9-BBN (9-borabicyclo[3.3.1]nonane) and were converted into 1-silacyclohex-2-ene derivatives 5 and 6. The competition between C≡C and C=C in the reaction was studied. The hydroborating reagent 9-BBN was expected to prefer terminal C=C bonds and to leave C≡C bond untouched. This hypothesis of preferable hydroboration was experimentally proved, and hence, 1-silacyclohex-2-ene derivatives were obtained in reasonably pure form. The reaction of allyldialkynylsilane 2 with one equivalent of 9-BBN affords 1-silacyclohex-2-ene bearing Si-C≡C-function, ready to be hydroborated further with one equivalent of 9-BBN. The obtained compound bears two C-B bonds, which are attractive synthones for further transformations. This study aims to highlight the chemistry of C-B and Si-H functional groups. All new compounds obtained were colorless air and moisture sensitive oils, and they were studied by multinuclear magnetic resonance spectroscopy (1H, 13C, 11B, 29Si NMR) in solution.

2019 ◽  
Vol 11 (11) ◽  
pp. 1134-1141
Author(s):  
Yan-Yan Wang ◽  
Tuan-Jie Wang ◽  
Juan Chen ◽  
Chao-Yang Wang ◽  
Jing Zhu

Novel belt shapes of a diazabicyclo[n,n,5.5]alkane center combined with double iodomethane salts were prepared in two steps by a reaction of phenylethylamine or 3,4-dimethoxyphenylethylamine with ortho-bis(chloromethyl)benzenes. The syntheses and characteristics of these polycationic systems containing aza-belt rings are described. Judicious choice of the reaction conditions allowed these polycationic heterocycles to be generated in good yields, and 1H and 13C nuclear magnetic resonance spectroscopy revealed a change in chemical shifts caused by interactions between the functional groups.


1969 ◽  
Vol 47 (5) ◽  
pp. 813-819 ◽  
Author(s):  
R. Raap ◽  
J. Howard

The syntheses of several 1-,2- and 5-tetrazolylacetic acids are described. Isomeric tetrazolylacetic esters can be separated by fractional distillation or crystallization. 5-Hydroxytetrazole reacts with ethyl bromoacetate in the presence of triethylamine to give 1,4-dicarbethoxymethyl-5-tetrazolone. The use of nuclear magnetic resonance spectroscopy for the assignment of structural isomers is discussed.


2011 ◽  
Vol 9 (1) ◽  
pp. 126-132 ◽  
Author(s):  
Ezzat Khan ◽  
Bernd Wrackmeyer

AbstractHydroboration of trialkyn-1-yl(organo)silanes with one equivalent and two equivalents of 9-borabicyclo[3.3.1]nonane, 9-BBN afford dialkyn-1-ylsilanes and alkyn-1-ylsilanes, respectively. The alkyn-1-ylsilane derivatives are stable at room temperature and can be store under dry argon for prolong period of time. These compounds are attractive materials for further rearrangements to afford novel 1-silacyclobutene derivatives bearing Si-alkenyl or Si-alkynyl functionalities. The hydroboration reaction is well controlled by the Si-R1 function, i.e., the starting silanes with R1 = Ph selectively afford hydroboration of one Si-C≡C bond with one equivalent of 9-BBN, leaving the other two functionalities untouched. Under mild reaction conditions (25°C), the starting silanes with R1 = Me lead to mixture containing dialkyn-1-ylsilane, alkyn-1-ylsilane and their respective 1-silacyclobutene derivatives. All new compounds are sensitive towards air and moisture and were studied by multinuclear magnetic resonance spectroscopy (1H, 13C, 11B, 29Si NMR) in solution.


2009 ◽  
Vol 64 (9) ◽  
pp. 995-1002 ◽  
Author(s):  
Ezzat Khan ◽  
Stefan Bayer ◽  
Bernd Wrackmeyer

1,1-Organoboration of dialkyn-1-ylsilanes using triethylborane, BEt3, and 9-ethyl-9-borabicyclo [3.3.1]nonane, Et-9-BBN, was carried out at elevated temperatures, 100 - 120 °C. These reactions afforded selectively silole derivatives bearing the dialkylboryl group in 3-position. The siloles are formed via intermolecular 1,1-alkylboration, followed by intramolecular 1,1-vinylboration. Two examples of boryl-substituted siloles were treated with an excess of acetic acid at ambient temperature to afford the respective protodeborylated compounds. All new compounds were characterized in solution by multinuclear magnetic resonance spectroscopy (1H, 13C, 11B and 29Si NMR).


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