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Dive into the research topics where Susanna MacMillar is active.

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Featured researches published by Susanna MacMillar.


Journal of the American Chemical Society | 2011

Nitrogen Kinetic Isotope Effects for the Monoamine Oxidase B-Catalyzed Oxidation of Benzylamine and (1,1-(2)H(2))Benzylamine : Nitrogen Rehybridization and CH Bond Cleavage Are Not Concerted

Susanna MacMillar; Dale E. Edmondson; Olle Matsson

Nitrogen kinetic isotope effects for the oxidation of benzylamine and (1,1-(2)H(2))benzylamine by recombinant human monoamine oxidase B show that cleavage of the CH bond is not concerted with rehybridization of the nitrogen atom.


Journal of Physical Chemistry A | 2008

Determining the Transition-State Structure for Different SN2 Reactions Using Experimental Nucleophile Carbon and Secondary α-Deuterium Kinetic Isotope Effects and Theory

Kenneth Charles Westaway; Yao-ren Fang; Susanna MacMillar; Olle Matsson; Raymond A. Poirier; Shahidul M. Islam

Nucleophile (11)C/ (14)C [ k (11)/ k (14)] and secondary alpha-deuterium [( k H/ k D) alpha] kinetic isotope effects (KIEs) were measured for the S N2 reactions between tetrabutylammonium cyanide and ethyl iodide, bromide, chloride, and tosylate in anhydrous DMSO at 20 degrees C to determine whether these isotope effects can be used to determine the structure of S N2 transition states. Interpreting the experimental KIEs in the usual fashion (i.e., that a smaller nucleophile KIE indicates the Nu-C alpha transition state bond is shorter and a smaller ( k H/ k D) alpha is found when the Nu-LG distance in the transition state is shorter) suggests that the transition state is tighter with a slightly shorter NC-C alpha bond and a much shorter C alpha-LG bond when the substrate has a poorer halogen leaving group. Theoretical calculations at the B3LYP/aug-cc-pVDZ level of theory support this conclusion. The results show that the experimental nucleophile (11)C/ (14)C KIEs can be used to determine transition-state structure in different reactions and that the usual method of interpreting these KIEs is correct. The magnitude of the experimental secondary alpha-deuterium KIE is related to the nucleophile-leaving group distance in the S N2 transition state ( R TS) for reactions with a halogen leaving group. Unfortunately, the calculated and experimental ( k H/ k D) alphas change oppositely with leaving group ability. However, the calculated ( k H/ k D) alphas duplicate both the trend in the KIE with leaving group ability and the magnitude of the ( k H/ k D) alphas for the ethyl halide reactions when different scale factors are used for the high and the low energy vibrations. This suggests it is critical that different scaling factors for the low and high energy vibrations be used if one wishes to duplicate experimental ( k H/ k D) alphas. Finally, neither the experimental nor the theoretical secondary alpha-deuterium KIEs for the ethyl tosylate reaction fit the trend found for the reactions with a halogen leaving group. This presumably is found because of the bulky (sterically hindered) leaving group in the tosylate reaction. From every prospective, the tosylate reaction is too different from the halogen reactions to be compared.


Journal of Organic Chemistry | 2006

The effect of solvent on the structure of the transition state for the SN2 reaction between cyanide ion and ethyl chloride in dmso and thf probed with six different kinetic isotope effects

Yao-ren Fang; Susanna MacMillar; Jonas Eriksson; Magdalena Kołodziejska‐Huben; Agnieszka Dybala-Defratyka; Piotr Paneth; Olle Matsson; Kenneth Charles Westaway


Journal of Physical Chemistry A | 2007

A new insight into using chlorine leaving group and nucleophile carbon kinetic isotope effects to determine substituent effects on the structure of SN2 transition states.

Kenneth Charles Westaway; Yao-ren Fang; Susanna MacMillar; Olle Matsson; Raymond A. Poirier; Shahidul M. Islam


Journal of Physical Organic Chemistry | 2008

Solvent effects on ion pairing of tetra‐n‐butylammonium cyanide. A conductometric study

Susanna MacMillar; Yao-ren Fang; Kenneth Charles Westaway; Olle Matsson; Per Beronius


Journal of Labelled Compounds and Radiopharmaceuticals | 2007

Isotope effects for fluorine‐18 and carbon‐11 in the study of reaction mechanisms

Olle Matsson; Susanna MacMillar


ChemInform | 2008

Isotope Effects for 18 F and 11 C in the Study of Reaction Mechanisms

Olle Matsson; Susanna MacMillar


ChemInform | 2008

Isotope Effects for 18F and 11C in the Study of Reaction Mechanisms

Olle Matsson; Susanna MacMillar


Archive | 2007

Nitrogen Kinetic Isotope Effects as Probes of the Mechanism of Monoamine Oxidase B

Susanna MacMillar; Dale E. Edmondson; Olle Matsson


Archive | 2007

The Nucleophile Carbon 11C/14C Kinetic Isotope Effect for the Reactions between Cyanide Ions and Ethyl Substrates in DMSO

Susanna MacMillar; Olle Matsson

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Raymond A. Poirier

Memorial University of Newfoundland

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Piotr Paneth

Lodz University of Technology

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