↑Hicks, Jesse (Summer 2013). "Bad Chemistry". Chemical Heritage Magazine. 31 (2): 40. Archived from the original on 21 February 2018. نه اخيستل شوی 5 December 2016.
↑Donna J. Nelson, Shagufta, and Ravi Kumar. “Characterization of a tamoxifen-tethered single-walled carbon nanotube conjugate by using NMR spectroscopy”. Anal. BioanalChem. 2012, 404, 771–776.
↑Donna J. Nelson and Christopher N. Brammer. "Fluorine-Related Nanoscience with Energy Applications". ACS Symposium Series 1064, American Chemical Society. Washington, DC, 2011.
↑Nelson, Donna J.; Brammer, Christopher N.; Nagarajan, Panneer S.; Perumal Paramasivan T. "Association of Representative Amides and Aminoalcohols with SWCNT as Revealed by NMR. Fluorine-related Nanoscience with Energy Applications". ACS Symposium Series 1064, American Chemical Society. Washington, DC, 2011, p. 31.
↑Nelson, Donna J.; Murugesan, M.; Brammer, Christopher N.; Nagarajan, P. "Effects of NaHCO3 Washing and Change in Reagent Order upon the Reaction of Single-Walled Carbon Nanotubes with Thionyl Chloride and PMMA". Polymer Preprints., Am. Chem. Soc. 2010, 51 (1), 191.
↑Nelson, Donna J.; Murugesan, M.; Brammer, Christopher N. "Effects of Sodium Bicarbonate Treatment on the Structure of Single-walled Carbon Nanotube Brands, Studied by Raman and Ultraviolet-Visible Spectroscopy". Polymer Preprints., Am. Chem. Soc. 2010, 51 (1), 577
↑Nelson, Donna J.; Brammer, Christopher N.; Nagarajan, Panneer S.; Perumal, Paramasivan T. "Effect of Single-Walled Carbon Nanotube Association upon 1H NMR Spectra of Representative Organonitrogen Compounds". J. Phys. Chem". C 2010, 114, 10140-10147.
↑Nelson, Donna J.; Brammer, Christopher N. "Pristine Single-Walled Carbon Nanotube Purity Evaluation by using 1H NMR Spectroscopy". Anal. Bioanal. Chem. 2009, 394, 1079-1086.
↑Nelson, Donna J.; Perumal, Paramasivan T.; Brammer, Christopher N.; Nagarajan, Panneer S. "Effect of Single-Walled Carbon Nanotube Association upon Representative Amides". J. Phys. Chem. C 2009, 113, 17378–17386.
↑Nelson, Donna J.; Strano, Michael. "Saving the world with nanotechnology". Nature Nanotechnology. 2006, 1, 96.
↑Soloshonok, Vadim; Nelson, Donna J. "Alkene Selenenylation: A Comprehensive Analysis of Relative Reactivities, Stereochemistry and Asymmetric Induction, and Their Comparisons with Sulfenylation".Beilstein J. Org. Chem. 2011, 7, 744-758.
↑Nelson, Donna J.; Li, Ruibo; Brammer Christopher N. "Substituent Effects in Acid-Catalyzed Hydration of Alkenes, Measured Under Consistent Reaction Conditions". Tetrahedron Lett. 2009, 50, 6454-6456.
↑Brammer, Christopher N.; Nelson, Donna J.; Li, Ruibo. "Substituent effects in additions of iodine thiocyanate to alkenes". Tetrahedron Lett. 2007, 48, 3237.
↑Nelson, Donna J.; Li, Ruibo; Brammer, C. N. "Correlation of Relative Rates of Chromyl Chloride Oxidation and Chromic Acid Oxidation of Acyclic Alkenes Versus Alkene IPs and HOMOs". J. Phys. Org. Chem. 2004, 17, 1033 - 1038.
↑Nelson, Donna J.; Li, Ruibo; Brammer, Christopher. "Correlation of Ionization Potentials or HOMO Energies Versus Relative Reactivities of Cl2, of Br2, and of I2 with Representative Acyclic Alkenes. Comparison with Other Additions to Alkenes". J. Org. Chem. 2001, 66, 2422.
↑Nelson, Donna J.; Li, R.; Brammer, C. "The Correlation of Relative Rates of PdCl2 Oxidation of Functionalized Acyclic Alkenes Versus Alkene Ionization Potentials, HOMOs, and LUMOs". J. Am. Chem. Soc.. 2001, 123, 1564.
↑Nelson, Donna J. "Selected Electrophilic Addition Reactions of Representative Acyclic Alkenes". Tetrahedron Lett. 1999, 5823.
↑Nelson, Donna J.; Henley, Robert L. "Relative Rates of Permanganate Oxidation of Functionalized Alkenes and the Correlation with the Ionization Potentials of Those Alkenes". Tetrahedron Lett. 1995, 6375.
↑Nelson, D. J.; Yao, Z.; Henley, R., Smith; T. "Diimide Reduction of Some Representative Alkenes and the Correlation of Their Relative Rates of Reduction with Their Corresponding IPs". Tetrahedron Lett. 1993, 5835-8.
↑Nelson, Donna J.; Cooper, Penny J.; Soundararajan, R. J. "A Simplified Method of Ascertaining Steric Effects in Electrophilic Addition Reactions. A Comparison of Bromination, Oxymercuration, and Hydroboration". J. Am. Chem. Soc. 1989, 111, 1414-1418.
↑Nelson, Donna J.; Soundararajan, R. "Using the Comparison of Steric Versus Electronic Effects to Infer Mechanistic Information in Stepwise Electrophilic Addition Reactions Involving Three-Membered Cyclic Intermediates". Tetrahedron Lett. 1988, 6207-6210.
↑Nelson, Donna J.; Cooper, Penny, J.; Coerver, Judy A. "Comparison of the Relative Reaction Rates of Alkenes Toward Hydroboration and Toward Oxymercuration". Tetrahedron Lett. 1987, 943-944.
↑Nelson, Donna J.; Brammer, Christopher N. (2011). "Toward Consistent Terminology for Cyclohexane Conformers in Introductory Organic Chemistry". Journal of Chemical Education. 88 (3): 292–294. Bibcode:2011JChEd..88..292N. doi:10.1021/ed100172k.
↑Nelson, Donna J.; Kumar, R.; Ramasamy, S.; "Comparing Carbonyl Chemistry Across Undergraduate Organic Chemistry Textbooks". J. Chem. Educ. 2015, 92, 1171-1177.
↑Fox, Marye Anne; Whitesell, James K.; Nelson, Donna J.; Study Guide and Solutions Manual to Accompany Organic Chemistry, Second Edition; Jones and Bartlett Publishers, Inc., Sudbury, MA, 1997.
↑Fox, Marye Anne; Whitesell, James K.; Nelson, Donna J.; Study Guide and Solutions Manual to Accompany Core Organic Chemistry; Jones and Bartlett Publishers, Inc. Sudbury, MA, 1997.
↑Nelson, Donna J.; EAS-at-a-Glance. W.H. Freeman & Co. New York, NY, 2000.
↑Nelson, Donna J.; "The Effect of the Nucleophile/ Electrophile Reaction Guide on the Performance of Undergraduate Organic Chemistry Students"; Chemical Education Journal. 2000, 4, 17.
↑Frates, Rodman A.; Nelson, Donna J.; Friedrich, Craig; Rubowitz, Mark; Collins, Clay; EXHIBIT: Formation of Inorganic Precipitates in Microgravity on the Getaway Special STS-40. Oklahoma Air and Space Museum 2001, permanent exhibit.