Ordyszewska Anna, Szynkiewicz Natalia, Perzanowski Emil, Chojnacki Jarosław, Wiśniewska Aleksandra, Grubba Rafał
Department of Inorganic Chemistry, Faculty of Chemistry, Gdańsk University of Technology, G. Narutowicza St. 11/12, PL-80-233, Gdansk, Poland.
Dalton Trans. 2019 Sep 7;48(33):12482-12495. doi: 10.1039/c9dt02195g. Epub 2019 Jul 30.
We present a series of amino- and aryl(diphosphino)boranes RPB(R'')PR', where RP, R'P = tBuP, tBuPhP, PhP, CyP, and R'' = iPrN, Ph, which were obtained via the metathesis reaction of iPrNBBr or PhBBr with selected lithium phosphides. The structures of isolated diphosphinoboranes were characterized in the solid state and in solution by means of X-ray diffraction and NMR spectroscopy, respectively. The utility of these P-B-P species as ligands for transition metal complexes was tested in the reaction with [(COD)PtMe]. Moreover, we carried out DFT calculations to elucidate bonding interactions and philicity of the reactive centers as well as to analyze conformations of the studied species. Electronic and steric properties of substituents on P and B atoms were found to have a strong influence on the structures of the obtained compounds. Three main types of diphosphinoboranes were distinguished, based on the strength of P-B π-interaction within the molecule: (i) application of strong electron-donating substituents on P-atoms and electron-accepting phenyl groups on B atoms led to the structure with one double P[double bond, length as m-dash]B and one single P-B bond and diverse planar and pyramidal geometry of phosphanyl groups; (ii) reduction of the donor ability of phosphanyl groups gave diphosphanylboranes with delocalized P-B-P π-interactions; (iii) introduction of amino groups with strong donor abilities on B atoms canceled P-B π-interactions and allowed compounds with two very long P-B bonds and two pyramidal phosphanyl groups to be obtained.
我们报道了一系列氨基和芳基(二膦基)硼烷RPB(R'')PR',其中RP、R'P = tBuP、tBuPhP、PhP、CyP,且R'' = iPrN、Ph,这些化合物是通过异丙基氨基溴化硼或苯基溴化硼与选定的磷化锂发生复分解反应制得的。分别通过X射线衍射和核磁共振光谱对分离得到的二膦基硼烷在固态和溶液中的结构进行了表征。在与[(COD)PtMe]的反应中测试了这些P-B-P物种作为过渡金属配合物配体的效用。此外,我们进行了密度泛函理论计算,以阐明反应中心的键合相互作用和亲核性,并分析所研究物种的构象。发现P和B原子上取代基的电子和空间性质对所得化合物的结构有很大影响。根据分子内P-B π相互作用的强度,区分出三种主要类型的二膦基硼烷:(i) 在P原子上应用强给电子取代基且在B原子上应用吸电子苯基,导致形成具有一个P[双键,长度如m破折号]B双键和一个P-B单键以及膦基具有不同平面和金字塔形几何结构的结构;(ii) 膦基给电子能力的降低产生了具有离域P-B-P π相互作用的二膦基硼烷;(iii) 在B原子上引入具有强给电子能力的氨基消除了P-B π相互作用,并得到了具有两个非常长的P-B键和两个金字塔形膦基的化合物。