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Facelli, J.C. |
1-97-J02 - Solid State N-15 and C-13 NMR Study of Several Metal 5-, 10-, 15-, 20-Tetraphenylporphyrin Complexes
1-96-J01 - Effects of Hydrogen Bonding in the Calculation of N-15 Chemical Shift Tensors: Benzamide
1-96-J02 - Carbon-13 Chemical Shift Tensors and Molecular Conformation of Anisole
1-94-J04 - The N-15 Chemical Shift Tensors of Uracil Determined from N-15 Powder Pattern and N-15/C-13 Dipolar NMR Spectroscopy
1-94-J07 - Solid State C-13 NMR, X-Ray and Quantum Mechanical Studies of the Carbon Chemical Shift Tensors of P-Tolyl Ether
1-93-J18 - Determination of Molecular Symmetry in Crystalline Naphthalene Using Solid State NMR
1-92-J06 - Carbon-13 Chemical Shift Tensors in Aromatic Compounds. 3. Phenanthrene and Triphenylene
1-92-J10 - Carbon-13 Chemical Shift Tensors in Aromatic Carbons. 4. Substituted Naphthalenes
1-91-J03 - Carbon-13 Chemical Shift Tensors in Aromatic Carbons. 4. Substituted Naphthalenes
1-91-J12 - Carbon-13 Chemical Shift Tensors in Polycyclic Aromatic Compounds. 2. Single-Crystal Study of Naphthalene
1-91-P08 - Comparison of C-13 Chemical Shielding Anisotropy in Model Compounds and Coals with Theoretical Values
1-90-J11 - A Comparison of the IGLO and LORG Methods for the Calculation of Nuclear Magnetic Shieldings
1-90-J16 - Carbon-13 Chemical Shift Tensors in Polycyclic Aromatic Compounds. 2. Single-Crystal Study of Naphthalene
1-89-B03 - Molecular Structure and Carbon-13 Shielding Tensors Obtained From Nuclear Magnetic Resonance
1-88-J10 - Quantitative Determination of Different Carbon Types in Fusinite and Anthracite Coals From Carbon-13 Nuclear Magnetic Resonance Chemical Shielding Line-Shape Analysis
1-88-J12 - Low-Temperature 13C Magnetic Resonance 8. Chemical Shielding Anisotropy of Olefinic Carbons
1-88-J13 - Carbon-13 Chemical Shift Tensors in Single-Crystal Methoxybenzenes
1-88-J15 - The Effect of Transverse Cross Relaxation of NMR Dipolar Spectra
1-88-J17 - 13C Dipolar Spectroscopy of Nitromethane
1-88-P09 - The Use of Variable Angle Sampling Spinning 13C NMR Spectroscopy to Assess Aromatic Cluster Size in Coals, Coal Chars, and Carbonaceous Materials
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