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William A Maza

Explore the profile of William A Maza including associated specialties, affiliations and a list of published articles. Areas
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Articles 11
Citations 69
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Recent Articles
1.
Alidokht L, Fitzpatrick K, Butler C, Hunsucker K, Braga C, Maza W, et al.
Biofilm . 2024 Mar; 7:100186. PMID: 38495771
Marine biofouling causes serious environmental problems and has adverse impacts on the maritime industry. Biofouling on windows and optical equipment reduces surface transparency, limiting their application for on-site monitoring or...
2.
Ridenour J, Maza W, Chaloux B, Epshteyn A
Inorg Chem . 2022 Jun; 61(23):8834-8842. PMID: 35653654
The origin of thermochromism displayed by the hybrid material [Ni()](BF) ( = ,-diethylethylenediamine) is explored by anion substitution of the tetrafluoroborate anions (BF) with varying percentages (0-25%) of bromide (Br)....
3.
Giles S, Kastl A, Purdy A, Leff A, Ratchford D, Maza W, et al.
ACS Appl Mater Interfaces . 2022 Feb; 14(7):9655-9666. PMID: 35134290
Robust materials capable of heterogeneous reactivity are valuable for addressing toxic chemical clean up. Synthetic manipulations for generating titanium oxide nanomaterials have been utilized to alter both photochemical (1000 nm...
4.
Maza W, Breslin V, Plymale N, DeSario P, Epshteyn A, Owrutsky J, et al.
Photochem Photobiol Sci . 2019 Apr; 18(6):1526-1532. PMID: 30984955
The large standard reduction potential of an aqueous solvated electron (eaq-, E° = -2.9 V) makes it an attractive candidate for reductive treatment of wastewater contaminants. Using transient absorption spectroscopy,...
5.
Celis-Salazar P, Epley C, Ahrenholtz S, Maza W, Usov P, Morris A
Inorg Chem . 2017 Nov; 56(22):13741-13747. PMID: 29094928
The ditopic ligands 2,6-dicarboxy-9,10-anthraquinone and 1,4-dicarboxy-9,10-anthraquinone were used to synthesize two new UiO-type metal-organic frameworks (MOFs; namely, 2,6-Zr-AQ-MOF and 1,4-Zr-AQ-MOF, respectively). The Pourbaix diagrams (E vs pH) of the MOFs...
6.
Usov P, Huffman B, Epley C, Kessinger M, Zhu J, Maza W, et al.
ACS Appl Mater Interfaces . 2017 Mar; 9(39):33539-33543. PMID: 28353341
A highly robust metal-organic framework (MOF) constructed from Zr oxo clusters and Fe(III) porphyrin linkers, PCN-223-Fe was investigated as a heterogeneous catalyst for oxygen reduction reaction (ORR). Films of the...
7.
Lin S, Pineda-Galvan Y, Maza W, Epley C, Zhu J, Kessinger M, et al.
ChemSusChem . 2016 Dec; 10(3):514-522. PMID: 27976525
Water oxidation, a key component in artificial photosynthesis, requires high overpotentials and exhibits slow reaction kinetics that necessitates the use of stable and efficient heterogeneous water-oxidation catalysts (WOCs). Here, we...
8.
Maza W, Padilla R, Morris A
J Am Chem Soc . 2015 Jun; 137(25):8161-8. PMID: 26043760
A method is described here by which to dope ruthenium(II) bis(2,2'-bipyridine) (2,2'-bipyridyl-5,5'-dicarboxylic acid), RuDCBPY, into a UiO-67 metal-organic framework (MOF) derivative in which 2,2'-bipyridyl-5,5'-dicarboxylic acid, UiO-67-DCBPY, is used in place...
9.
Maza W, Vetromile C, Kim C, Xu X, Zhang X, Larsen R
J Phys Chem A . 2013 Oct; 117(44):11308-15. PMID: 24093669
Organophosphonates pose a significant threat as chemical warfare agents, as well as environmental toxins in the form of pesticides. Thus, methodologies to sense and decontaminate these agents are of significant...
10.
Nacheva K, Maza W, Myers D, Fronczek F, Larsen R, Manetsch R
Org Biomol Chem . 2012 Aug; 10(38):7840-6. PMID: 22930038
A fluorescent compound 3,4-bis(2,4-difluorophenyl)-maleimide from the 3,4-diaryl-substituted maleimides was synthesized and determined to have a Stokes shift of 140 nm (λ(abs) 341 nm, λ(em) 481 nm), a high fluorescent quantum...