81 results on '"Chip Nataro"'
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2. Engaging chemistry educators through virtual roundtables: how the COVID-19 pandemic led to a community-wide initiative
3. Cleavage of [Pd2(PP)2(μ-Cl)2][BArF24]2 (PP = Bis(phosphino)ferrocene, BArF24 = Tetrakis(3,5-bis(trifluoromethyl)phenyl)borate) with Monodentate Phosphines
4. The Postsecondary Inorganic Chemistry Instructional Laboratory Curriculum: Results from a National Survey
5. Advances in Teaching Inorganic Chemistry Volume 1: Classroom Innovations and Faculty Development
6. Exploring opportunities for tuning phenyltris(pyrazol-1-yl)borate donation by varying the extent of phenyl substituent fluorination
7. Synthesis of disubstituted furans catalysed by [(AuCl)2(μ-bis(phosphino)metallocene)] and Na[BArF24]
8. Catalytic ring-closing reactions of gold compounds containing bis(phosphino)ferrocene ligands
9. Cleavage of the dimeric heterometallic complexes [Pd(dppf)(μ-Cl)]2[BArF24]2 (dppf = 1,1′-bis(diphenylphosphino)ferrocene, BArF24 = tetrakis(bis-3,5-trifluoromethylphenyl)borate) via addition of monodentate phosphine ligands
10. Ferrocene: To Infinity and Back Again
11. IONiC: The professional network for inorganic chemists
12. IONiC: The professional network for inorganic chemists
13. A Community Springs to Action to Enable Virtual Laboratory Instruction
14. Hip to be square (planar): VIPEr content building workshop on molecular orbital theory and bonding
15. IONiC: Advancing inorganic chemistry education through collaborative curriculum and material development
16. Catalytic applications of gold compounds containing bis(phosphino)ferrocene ligands
17. Hydroamination reactions catalyzed by gold compounds with bis(phosphino)ferrocene ligands
18. Interactive inorganic: 'I’s' of the VIPEr
19. Hydroamination and carboxylative cyclization reactions catalyzed by of gold(I) compounds with 1,1ʹ-bis(phosphino)metallocene ligands
20. Undergraduate Research: Contributions to Organometallic Chemistry
21. Historical Analysis of the Inorganic Chemistry Curriculum Using ACS Examinations as Artifacts
22. Advances in Teaching Inorganic Chemistry Volume 1: Classroom Innovations and Faculty Development
23. Teaching from the primary inorganic literature: lessons from Richard Andersen
24. Synthesis and electronic properties of transition metal complexes containing sulfonamidoquinoline ligands
25. Teaching Molecular Orbital Theory Better
26. Synthesis, characterization and electrochemistry of [Pd(PP)MeCl] compounds with 1,1′-bis(phosphino)ferrocene ligands
27. Monodentate phosphine substitution in [Pd(κ3-dppf)(PR3)][BF4]2 (dppf = 1,1′-bis(diphenylphosphino)ferrocene) compounds
28. Late Transition Metal Compounds with 1,1′‐Bis(phosphino)ferrocene Ligands
29. Compounds containing weak, non-covalent interactions to the metal in the backbone of 1,1′-bis(phosphino)metallocene ligands
30. Literature-Based Teaching Strategies for Organometallic Courses
31. Ligand effects on the heats of protonation of metal-metal bonds in organometallic complexes
32. Structural, Computational, and Spectroscopic Investigation of [Pd(κ3-1,1′-bis(di-tert-butylphosphino)ferrocenediyl)X]+ (X = Cl, Br, I) Compounds
33. Catalytic Ring Closing Reactions of Gold Compounds Containing Bis(phosphino)ferrocene Ligands
34. Hydroamination reactions catalyzed by [Au2(μ-Cl)(μ-bis(phosphino)ferrocene)][BArF24]
35. X-ray structures and oxidative electrochemistry of phosphine sulfides and phosphine selenides
36. Electrochemical parameterization of 1,1′-disubstituted cobaltocenium compounds
37. Palladium(II) and Platinum(II) Compounds of 1,1′-Bis(phosphino)metallocene (M = Fe, Ru) Ligands with Metal–Metal Interactions
38. Spectroscopic, structural and computational analysis of [Re(CO)3(dippM)Br]n+ (dippM = 1,1′-bis(diiso-propylphosphino)metallocene, M = Fe, n = 0 or 1; M = Co, n = 1)
39. Synthesis and spectroelectrochemistry of transition metal carbonyls with 1,1′-bis(phosphino)metallocene ligands
40. Synthesis and electrochemistry of 1,1′-bis(phosphino)cobaltocenium compounds
41. Electrochemistry of P(CH2Fc)3 and derivatives
42. Bis(dialkylaminophosphino)ferrocenes: Reactivity and electrochemistry
43. Electrochemistry of 1,1′-Bis(2,4-dialkylphosphetanyl)ferrocene and 1,1′-Bis(2,5-dialkylphospholanyl)ferrocene Ligands: Free Phosphines, Metal Complexes, and Chalcogenides
44. 1-Methyl-1-Vinyl-3,3,5,5-Tetraphenylcyclotrisiloxane: An Organofunctional Cyclotrisiloxane
45. Synthesis, Electrochemistry, and Reactivity of Half-Sandwich Ruthenium Complexes Bearing Metallocene-Based Bisphosphines
46. Synthesis, Characterization, and Electrochemistry of Compounds Containing 1-Diphenylphosphino-1′-(di-tert-butylphosphino)ferrocene (dppdtbpf)
47. Taniaphos and Walphos ligands: Oxidative electrochemistry and complexation. Synthesis, characterization, oxidative electrochemistry and X-ray structures of [(Taniaphos/Walphos)MCl2] (M=Pd or Pt)
48. Synthesis and characterization of 1-methyl-1-silaindane and 1-methyl-1-germaindane
49. Electrochemistry and complexation of Josiphos ligands
50. Synthesis and electrochemistry of late transition metal complexes containing 1,1′-bis(dicyclohexylphosphino)ferrocene (dcpf). The X-ray structure of [PdCl2(dcpf)] and Buchwald–Hartwig catalysis using [PdCl2(bisphosphinometallocene)] precursors
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