160 results on '"Ghosh, Sundargopal"'
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2. Beyond S and Se: Electrocatalytic Hydrogen Production by Tellurolate-Bridged Co(III)–Mn(I) Heterodinuclear Complexes.
3. Reactivity of [(Cp*CoPh)(Cp*Co)(μ-TePh)(μ‑k2‑Te,H-TeBH3)] Toward [M(CO)5·THF] (M = Mo and W), CS2, and [Fe2(CO)9].
4. Polyhedral and Macropolyhedral Metal-Rich Cobaltaboranes: A 25-Vertex Hourglass-Shaped Cluster.
5. Synthesis, Structure, and Bonding of Group 8 Transition Metal Germyl Complexes, [Cp*M{κ2-Ge,S‑GeCl2C7H4NS2}(PPh3)] (M = Ru or Os).
6. Bridging Bis(boryl) and Borylene Species Stabilized in the Coordination Sphere of Ruthenium Metals.
7. Doubly Base-Stabilized Diborane(4) and Borato-Boronium Species and Their Chemistry with Chalcogens.
8. Degradation Chemistry of Dimetallaboranes, [(Cp*M)2B5H9+x] with [Ph2Se2] (x = 2 or 0, M = V or Cr).
9. Diborane and Triborane Species in the Coordination Sphere of Group‑8 Transition Metals.
10. Macropolyhedral syn-B18H22, the "Forgotten" Isomer.
11. Structures and Bonding of Early Transition Metallaborane Clusters.
12. Combined B–H and Si–H Bond Activations at Ruthenium.
13. Thiolate-Bridged Heterodinuclear Manganese–Cobalt Complexes with Bridging Hydride Ligands.
14. Synthesis and Chemistry of Dihydridoborate Group 7 Metal Complexes with Varied N,E-Chelated Ligands (E = O, NH, or S).
15. Cluster Growth Reactions: Structures and Bonding of Metal-Rich Metallaheteroboranes Containing Heavier Chalcogen Elements.
16. Vertex-Fused Clusters Featuring a Flattened Butterfly.
17. Synthesis and characterization of hypoelectronic rhenaboranes. Analysis of the geometric and electronic structures of species following neither borane nor metal cluster electron-counting paradigms
18. Role of the transition metal in metallaborane chemistry. Reactivity of (Cp(super *)ReH2)2B4H4 with BH3.thf, CO and Co2(CO)8
19. Light-Activated Intercluster Conversion of an Atomically Precise Silver Nanocluster.
20. Triple-Decker Sandwich Complexes of Tungsten with Planar and Puckered Middle Decks.
21. Recent Advances in the Synthesis and Reactivity of Transition Metal σ‑Borane/Borate Complexes.
22. Cooperative B–H and Si–H Bond Activations by κ2‑N,S‑Chelated Ruthenium Borate Complexes.
23. Synthesis, Structure, and Bonding of Bimetallic Bridging Borylene and Boryl Complexes.
24. "Triple-Decker Sandwich" Containing Planar {B2E2Pd} Ring (E = S or Se).
25. Role of Metals and Thiolate Ligands in the Structures and Electronic Properties of Group 5 Bimetallic–Thiolate Complexes.
26. Metal Centered commo-Bis(metallaselenaborane): Heterotrimetallic Systems Bearing a Zn(II) Center.
27. Homocubane Chemistry: Synthesis and Structures of Mono- and Dicobaltaheteroborane Analogues of Tris- and Tetrahomocubanes.
28. Chemistry of molybdaboranes: synthesis, structures, and characterization of a new class of open-cage dimolybdaheteroborane clusters
29. Unusual organic chemistry of a metallaborane substrate: formation of a tantalaborane complex with a bridging acyl group ([mu]-[nu]2)
30. Chemistry of vanadaboranes: synthesis, structures, and characterization of organovanadium sulfide clusters with disulfido linkage
31. Vertex-fused metallaborane clusters: synthesis, characterization and electronic structure of [[([[eta].sup.5]-[C.sub.5][Me.sub.5]Mo).sub.3]Mo[B.sub.9][H.sub.18]]
32. Chlorinated hypoelectronic dimetallaborane clusters: synthesis, characterization, and electronic structures of {([?.sup.5]-[C.sub.5][Me.sub.5]W).sub.2}[B.sub.5][H.sub.n][Cl.sub.m] (n = 7, m = 2 and n = 8, m = 1)
33. Borylene-based direct functionalization of organic substrates: synthesis, characterization, and photophysical properties of novel [pi]-conjugated borirenes
34. Hydroboration of Alkynes: η4‑Alkene–Borane versus η4‑E‑Boratabutadiene.
35. Use of Single-Metal Fragments for Cluster Building: Synthesis, Structure, and Bonding of Heterometallaboranes.
36. Trithia-diborinane and Bis(bridging-boryl) Complexes of Ruthenium Derived from a [BH3(SCHS)]− Ion.
37. Cluster Fusion: Face-Fused Macropolyhedral Tetracobaltaboranes.
38. Metal-Rich Oxametallaboranes of Group 5 Metals: Synthesis and Structure of a Face-Fused μ7‑Boride Cluster.
39. Trimetallic Cubane-Type Clusters: Transition-Metal Variation as a Probe of the Roots of Hypoelectronic Metallaheteroboranes.
40. Combined Experimental and Theoretical Investigations of Group 6 Dimetallaboranes [(Cp*M)2B4H10] (M = Mo and W).
41. Electron Precise Group 5 Dimetallaheteroboranes [{CpV(μ-EPh)}2{μ-η²:η²-BH3E}] and [{CpNb(μ-EPh)}2{μ-η²:η²-B2H4E}] (E = S or Se).
42. Synthesis, Chemistry, and Electronic Structures of Group 9 Metallaboranes.
43. Synthesis and characterization of bicapped hexagonal bipyramidal 2,3-C1-1,8-(CpRE)2B6H4((CpRe)2(mu-eta6-eta6-1,2-B6H4C12), Cp = eta5-C5Me5): The missing link connecting (p-2) skeletal electron pair hypoelectronic rhenoboranes and 24-valence electron triple-decker complexes
44. A novel coordinated inorganic benzene: synthesis and characterization of (eta-5-C5Me5Re)2(mu-eta-6:eta-6-B4H4Co2(CO)5)
45. Hypoelectronic 8-11-Vertex Irida- and Rhodaboranes.
46. Homometallic Cubane Clusters: Participation of Three-Coordinated Hydrogen in 60-Valence Electron Cubane Core.
47. Novel Neutral Zirconaborane [(Cp2Zr)2B5H11]: An arachno-B3H9 Analogue (Cp = η5-C5H5).
48. Chemistry of Diruthenium Analogue of Pentaborane(9) With Heterocumulenes: Toward Novel Trimetallic Cubane-Type Clusters.
49. Triazolyl Alkoxy Fischer Carbene Complexes in Conjugationwith Ferrocene/Pyrene as Sensory Units: Multifunctional Chemosensorsfor Lead(II), Copper(II), and Zinc(II) Ions.
50. An EarlyâLate Transition Metal Hybrid Analogueof Hexaborane(12).
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