1 |
Biologically relevant phosphoranes: Synthesis and structural characterization of glucofuranose-derived phosphoranes with penta- and hexacoordination at phosphorus Timosheva NV, Chandrasekaran A, Holmes RR Inorganic Chemistry, 45(26), 10836, 2006 |
2 |
Phosphorus-nitrogen donor interaction leading to atrane formation in phosphate and oxyphosphorane compositions. Implications for phosphoryl transfer enzymes Timosheva NV, Chandrasekaran A, Holmes RR Inorganic Chemistry, 43(23), 7403, 2004 |
3 |
Influence of hydrogen bonding in competition with lattice interactions on carbonyl coordination at phosphorus. Implications for phosphoryl transfer activated states Chandrasekaran A, Timosheva NV, Day RO, Holmes RR Inorganic Chemistry, 42(10), 3285, 2003 |
4 |
Pseudoheptacoordination and pseudohexacoordination in tris(2-N,N-dimethylbenzylamino)phosphane Chandrasekaran A, Timosheva NV, Day RO, Holmes RR Inorganic Chemistry, 41(20), 5235, 2002 |
5 |
Conversion of tricoordinate to hexacoordinate phosphorus. Formation of a phosphorane-phosphatrane system Timosheva NV, Chandrasekaran A, Day RO, Holmes RR Journal of the American Chemical Society, 124(24), 7035, 2002 |
6 |
Crystal structures of tris(8-dimethylaminonaphthyl)phosphane and its hydrochloride salt. The first seven-coordinate phosphorus compound Chandrasekaran A, Timosheva NV, Day RO, Holmes RR Inorganic Chemistry, 39(7), 1338, 2000 |
7 |
Pentacoordinated molecules. 122. Molecular structures of three-, four-, and five-coordinate phosphorus compounds containing salicylate ligands Timosheva NV, Chandrasekaran A, Day RO, Holmes RR Inorganic Chemistry, 37(15), 3862, 1998 |
8 |
Cyclic three-, four-, five-, and six-coordinate nitrogen-containing phosphorus compounds varying in ring size from five-to ten-membered. P-N donor action Timosheva NV, Chandrasekaran A, Day RO, Holmes RR Inorganic Chemistry, 37(19), 4945, 1998 |
9 |
Pentacoordinated Molecules .106. Sulfur-Induced Pentacoordination in Cyclic Silanes Timosheva NV, Prakasha TK, Chandrasekaran A, Day RO, Holmes RR Inorganic Chemistry, 35(12), 3614, 1996 |
10 |
Axial Site Occupancy by the Least Electronegative Ligands in Trigonal Bipyramidal Tetraoxyphosphoranes Timosheva NV, Chandrasekaran A, Prakasha TK, Day RO, Holmes RR Inorganic Chemistry, 35(22), 6552, 1996 |