Craig J Medforth
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Explore the profile of Craig J Medforth including associated specialties, affiliations and a list of published articles.
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29
Citations
268
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Recent Articles
1.
Ballester M, Ravotto L, E Quirke J, Lopez de la Vega R, Shelnutt J, Cheprakov A, et al.
J Phys Chem A
. 2020 Oct;
124(43):8994-9003.
PMID: 33073980
Herein, we report the first calorimetric study of the protonation of planar and nonplanar free-base porphyrins: HOETPP (strongly saddled by its substituents), HT(tBu)P (strongly ruffled by its substituents), and the...
2.
Rebelo S, Silva A, Medforth C, Freire C
Molecules
. 2016 Apr;
21(4):481.
PMID: 27077840
Iron(III) fluorinated porphyrins play a central role in the biomimetics of heme enzymes and enable cleaner routes to the oxidation of organic compounds. The present work reports significant improvements in...
3.
Sousa C, Ferreira M, Abreu B, Medforth C, Gameiro P
Int J Pharm
. 2015 Sep;
495(2):761-70.
PMID: 26392242
Fluoroquinolones are antibiotics which act by penetrating into bacterial cells and inhibiting enzymes related to DNA replication, and metal complexes of these drugs have recently been investigated as one approach...
4.
Fang Y, Senge M, Van Caemelbecke E, Smith K, Medforth C, Zhang M, et al.
Inorg Chem
. 2014 Sep;
53(19):10772-8.
PMID: 25253031
Electrochemical studies of the oxidation of dodecasubstituted and highly nonplanar nickel porphyrins in a noncoordinating solvent have previously revealed the first nickel(III) porphyrin dication. Herein, we investigate if these nonplanar...
5.
Tian Y, Busani T, Uyeda G, Martin K, van Swol F, Medforth C, et al.
Chem Commun (Camb)
. 2012 Apr;
48(40):4863-5.
PMID: 22497007
Cooperative binary ionic (CBI) solids comprise a versatile new class of opto-electronic and catalytic materials consisting of ionically self-assembled pairs of organic anions and cations. Herein, we report CBI nanocomposites...
6.
Tian Y, Beavers C, Busani T, Martin K, Jacobsen J, Mercado B, et al.
Nanoscale
. 2012 Feb;
4(5):1695-700.
PMID: 22310932
Crystalline solids self-assembled from anionic and cationic porphyrins provide a new class of multifunctional optoelectronic micro- and nanomaterials. A 1 : 1 combination of zinc(II) tetra(4-sulfonatophenyl)porphyrin (ZnTPPS) and tin(IV) tetra(N-methyl-4-pyridiniumyl)porphyrin...
7.
Wang Z, Lybarger L, Wang W, Medforth C, Miller J, Shelnutt J
Nanotechnology
. 2011 Aug;
19(39):395604.
PMID: 21832600
Monodisperse nanospheres are formed by coordination polymerization tetrakis(4-pyridyl)porphyrin-metal complexes with chloroplatinic acid in aqueous solution. The porphyrin nanospheres and their platinized nanocomposites have potential applications in catalysis and solar energy...
8.
Tian Y, Martin K, Shelnutt J, Evans L, Busani T, Miller J, et al.
Chem Commun (Camb)
. 2011 Apr;
47(21):6069-71.
PMID: 21523310
Varying the solution growth conditions of cooperative binary ionic solids composed of anionic and cationic metalloporphyrins produces a series of families of self-assembled structures that efficiently and durably photosensitize the...
9.
Garcia R, Song Y, Dorin R, Wang H, Moreno A, Jiang Y, et al.
Phys Chem Chem Phys
. 2010 Dec;
13(11):4846-52.
PMID: 21180751
Novel platinum nanowheels were synthesized by the reduction of aqueous platinum complex with ascorbic acid in the presence of disk-like bicelles. The platinum nanowheels possess thickened centers and flared edges...
10.
Martin K, Wang Z, Busani T, Garcia R, Chen Z, Jiang Y, et al.
J Am Chem Soc
. 2010 May;
132(23):8194-201.
PMID: 20469866
Microscale four-leaf clover-shaped structures are formed by self-assembly of anionic and cationic porphyrins. Depending on the metal complexed in the porphyrin macrocycle (Zn or Sn), the porphyrin cores are either...