» Authors » Frederick M MacDonnell

Frederick M MacDonnell

Explore the profile of Frederick M MacDonnell including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 38
Citations 221
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
21.
Gangupomu R, Kositkanawuth K, Sattler M, Ramirez D, Dennis B, MacDonnell F, et al.
J Air Waste Manag Assoc . 2012 Jun; 62(5):489-99. PMID: 22696799
Unlabelled: To increase U.S. petroleum energy-independence, the University of Texas at Arlington (UT Arlington) has developed a coal liquefaction process that uses a hydrogenated solvent and a proprietary catalyst to...
22.
Majewski M, de Tacconi N, MacDonnell F, Wolf M
Inorg Chem . 2011 Sep; 50(20):9939-41. PMID: 21936493
Ruthenium(II) polypyridyl complexes with pendant bithienyl ligands exhibiting unusually long-lived (τ ~ 3-7 μs) charge-separated excited states and a large amount of stored energy (ΔG° ~ 2.0 eV) are reported....
23.
Singh S, de Tacconi N, Diaz N, Lezna R, Munoz Zuniga J, Abayan K, et al.
Inorg Chem . 2011 Aug; 50(19):9318-28. PMID: 21870815
The synthesis and characterization of a ditopic bridging ligand, 9,12,21,22-tetraazatetrapyrido[3,2-a:2',3'-c:3″2″-m:2''',3'''-o]pentaphene (tatppα) and its dinuclear ruthenium complex, [(phen)(2)Ru(tatppα)Ru(phen)(2)][PF(6)](4) (1(4+)), are described. The tatppα ligand is structurally very similar to 9,10,20,33-tetraazatetrapyrido[3,2-a:2',3'-c:3″,2″-l:2''',3'''-n]pentacene (tatppβ),...
24.
Singh S, de Tacconi N, Boston D, MacDonnell F
Dalton Trans . 2010 Oct; 39(46):11180-7. PMID: 20963252
The dinuclear ruthenium(II) complex [(phen)(2)Ru(tatpOMe)Ru(phen)(2)](4+) (2(4+); phen is 1,10-phenanthroline and tatpOMe is 10,21-dimethoxy-9,10,20,33-tetraazatetrapyrido[3,2-a:2'3'-c:3'',2''-l:2''',3'''-n]pentacene) has been synthesized and characterized by (1)H NMR, ESI mass spectroscopy and elemental analysis. Loss of methoxy...
25.
Sun P, MacDonnell F, Armstrong D
Inorganica Chim Acta . 2010 Feb; 362(9):3073-3078. PMID: 20161587
Enantioselective host-guest complexation between five racemic Ru(II) trisdiimine complexes and eight derivatized cyclodextrins (CDs) has been examined by NMR techniques. The appearance of non-equivalent complexation-induced shifts of between the Δ...
26.
Tong M, Payagala T, Perera S, MacDonnell F, Armstrong D
J Chromatogr A . 2009 Sep; 1217(7):1139-48. PMID: 19775696
Sodium arsenyl-(l)-(+) tartrate (Na(2)[As(2)(+)-tart(2)].3H(2)O) was examined and evaluated as a chiral selector using capillary electrophoresis. This chiral selector showed enantioselective associations with many cationic analytes, including primary, secondary, and tertiary...
27.
de Tacconi N, Lezna R, Chitakunye R, MacDonnell F
Inorg Chem . 2008 Sep; 47(19):8847-58. PMID: 18785734
The mononuclear ruthenium complex [(bpy) 2Ru(tatpp)] (2+) ( 1 (2+); bpy is 2,2'-bipyridine and tatpp is 9,11,20,22-tetra-aza-tetrapyrido[3,2-a:2'3'-c:3'',2''-l:2''',3''']-pentacene) undergoes up to four reversible tatpp ligand-based reductions as determined by electrochemistry in...
28.
Jiang C, Tong M, Armstrong D, Perera S, Bao Y, MacDonnell F
Chirality . 2008 Aug; 21(1):208-17. PMID: 18698644
Capillary zone electrophoresis (CZE) and micellar capillary electrophoresis (MCE) were applied for the enantiomeric separation of nine mononuclear tris(diimine)ruthenium(II) complexes as well as the separation of all stereoisomers of a...
29.
de Tacconi N, Chitakunye R, MacDonnell F, Lezna R
J Phys Chem A . 2008 Jan; 112(3):497-507. PMID: 18171035
A combination of electrochemistry, spectroelectrochemistry, and 1H NMR has been used to study the reduction and solution speciation in acetonitrile of two mononuclear Ru complexes containing the redox-active 9,11,20,22-tetraazatetrapyrido [3,2-a:2',3'-c:3'...
30.
Sun P, Krishnan A, Yadav A, Singh S, MacDonnell F, Armstrong D
Inorg Chem . 2007 Nov; 46(24):10312-20. PMID: 17973368
Rapid, highly efficient, analytical resolution of the enantiomers of eight different monomeric ruthenium(II) polypyridyl complexes has been achieved using HPLC with cyclodextrin chiral stationary phases. This technique also proved capable...