Frederick M MacDonnell
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Explore the profile of Frederick M MacDonnell including associated specialties, affiliations and a list of published articles.
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38
Citations
221
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Recent Articles
11.
Sun P, Krishnan A, Yadav A, MacDonnell F, Armstrong D
J Mol Struct
. 2015 Jan;
890(1-3):75-80.
PMID: 25635147
A high performance liquid chromatographic method using macrocyclic glycopeptide chiral stationary phases (CSPs) was used to separate enantiomers of seven ruthenium(II) polypyridyl complexes. Among the five different CSPs, the Chirobiotic...
12.
Le V, McGuire M, Ahuja P, MacDonnell F, Lewis E
J Phys Chem B
. 2014 Dec;
119(1):65-71.
PMID: 25437923
While the antitumor activity of P(4+) is relatively well understood, the binding mechanism and thermodynamics for formation of (P(4+)·DNA) complexes remain in question. The thermodynamic parameters (Ka, ΔG, ΔH, and...
13.
Shu Y, Breitbach Z, Dissanayake M, Perera S, Aslan J, Alatrash N, et al.
Chirality
. 2014 Oct;
27(1):64-70.
PMID: 25288031
The enantiomeric separation of 21 ruthenium (II) polypyridyl complexes was achieved with a novel class of cyclofructan-based chiral stationary phases (CSPs) in the polar organic mode. Aromatic derivatives on the...
14.
Boston D, Pachon Y, Lezna R, de Tacconi N, MacDonnell F
Inorg Chem
. 2014 Jun;
53(13):6544-53.
PMID: 24909055
The ruthenium complexes [Ru(phen)2(ptpbα)](2+) (Ruα) and [Ru(phen)2(ptpbβ)](2+) (Ruβ), where phen =1,10-phenanthroline ; ptpbα = pyrido[2',3':5,6]pyrazino[2,3-f][1,10]phenanthroline; ptpbβ = pyrido[3',4':5,6]pyrazino[2,3-f][1,10]phenanthroline, are shown as electrocatalysts and photocatalysts for CO2 reduction to formate, formaldehyde,...
15.
Boston D, Xu C, Armstrong D, MacDonnell F
J Am Chem Soc
. 2013 Oct;
135(44):16252-5.
PMID: 24107115
Photochemical catalytic CO2 reduction to formate and methanol has been demonstrated in an aqueous homogeneous system at pH 5.0 comprising ruthenium(II) trisphenanthroline as the chromophore, pyridine as the CO2 reduction...
16.
Poteet S, MacDonnell F
Dalton Trans
. 2013 Aug;
42(37):13305-7.
PMID: 23925310
Addition of water to the quinone functions in [Ru(phen)2(pdn)](2+) (1) and [Ru(pdn)3](2+) (2) (where phen = 1,10-phenanthroline and pdn = 1,10-phenanthroline-5,6-dione) turns on fluorescence at 605 nm, as formation of...
17.
Majewski M, de Tacconi N, MacDonnell F, Wolf M
Chemistry
. 2013 Apr;
19(25):8331-41.
PMID: 23613232
RuII complexes incorporating both amide-linked bithiophene donor ancillary ligands and laminate acceptor ligands; dipyrido[3,2-a:2',3'-c]phenazine (dppz), tetrapyrido[3,2-a:2',3'-c:3'',2''-h:2''',3'''-j]phenazine (tpphz), and 9,11,20,22-tetraazatetrapyrido[3,2-a:2',3'-c:3'',2''-l:2''',3''']-pentacene (tatpp) exhibit long-lived charge separated (CS) states, which have been analyzed...
18.
Yadav A, Janaratne T, Krishnan A, Singhal S, Yadav S, Dayoub A, et al.
Mol Cancer Ther
. 2013 Feb;
12(5):643-53.
PMID: 23443803
The ruthenium (II) polypyridyl complexes (RPC), Δ-[(phen)2Ru(tatpp)]Cl2 (Δ-[3]Cl2) and ΔΔ-[(phen)2Ru(tatpp)Ru(phen)2]Cl4 (ΔΔ-[4]Cl4, are a new generation of metal-based antitumor agents. These RPCs bind DNA via intercalation of the tatpp ligand, which...
19.
Poteet S, Majewski M, Breitbach Z, Griffith C, Singh S, Armstrong D, et al.
J Am Chem Soc
. 2013 Jan;
135(7):2419-22.
PMID: 23350926
Visible light irradiation of a ruthenium(II) quinone-containing complex, [(phen)(2)Ru(phendione)](2+) (1(2+)), where phendione = 1,10-phenanthroline-5,6-dione, leads to DNA cleavage in an oxygen independent manner. A combination of NMR analyses, transient absorption...
20.
Kositkanawuth K, Gangupomu R, Sattler M, Dennis B, MacDonnell F, Billo R, et al.
J Air Waste Manag Assoc
. 2012 Nov;
62(10):1182-95.
PMID: 23155864
Unlabelled: To increase U.S. petroleum energy independence, the University of Texas at Arlington (UT Arlington) has developed a direct coal liquefaction process which uses a hydrogenated solvent and a proprietary...