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Howard H Patterson

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Recent Articles
1.
Nicholas A, Barnes F, Adams D, Webber M, Sturner M, Kessler M, et al.
Phys Chem Chem Phys . 2020 May; 22(20):11296-11306. PMID: 32395725
We report on the vapochromic behavior of a series of homo- and heterometallic copper(i) iodide/silver(i) iodide nanoparticles when exposed to dimethyl sulfide (DMS) vapor. These systems show remarkable colorimetric sensing...
2.
Wheaton A, Streep M, Ohlhaver C, Nicholas A, Barnes F, Patterson H, et al.
ACS Omega . 2019 Aug; 3(11):15281-15292. PMID: 31458189
The reaction of copper(I) iodide (CuI) and N-alkyl pyridinium (RPy, R = H, Me, Et, -propyl = Pr, -butyl = Bu, -pentyl = Pn, and -hexyl = Hx) or N-butyl-3-substituted...
3.
Patel E, Arthur R, Nicholas A, Reinheimer E, Omary M, Brichacek M, et al.
Dalton Trans . 2019 Jun; 48(27):10288-10297. PMID: 31206113
A recently synthesized photoluminescent organic acceptor, 5,10-dimethyl-5,10-diaza[5]helicene is shown to react with dicyanoaurate anions to form a 2D network N,N-dimethylaza[5]helicene dicyanoaurate. The structure of the synthesized complex was investigated via...
4.
Nicholas A, Bullard R, Wheaton A, Streep M, Nicholas V, Pike R, et al.
Materials (Basel) . 2019 Apr; 12(8). PMID: 31013868
The structures of three tetramethylammonium cyanocuprate(I) 3D networks [NMe][Cu(CN)]•0.25HO (), [NMe][Cu(CN)] (), and [NMe][Cu(CN)] (), (MeN = tetramethylammonium), and the photophysics of and are reported. These complexes are prepared by...
5.
Arthur R, Bonin J, Ardill L, Rourk E, Patterson H, Stemmler E
J Hazard Mater . 2018 Jun; 358:1-9. PMID: 29945020
Photocatalysis directed at the removal of persistent organic pollutants, including pharmaceuticals, has been the subject of intense recent research. Bismuth oxychloride (BiOCl) has emerged as a potential alternative to traditional...
6.
Gibbons S, Hughes R, Glueck D, Royappa A, Rheingold A, Arthur R, et al.
Inorg Chem . 2017 Oct; 56(21):12809-12820. PMID: 29064687
For investigation of structure-property relationships in copper phosphine halide complexes, treatment of copper(I) halides with chiral bis(phosphines) gave dinuclear [Cu((R,R)-i-Pr-DuPhos)(μ-X)] [X = I (1), Br (2), Cl (3)], [Cu(μ-((R,R)-Me-FerroLANE)(μ-I)] (5),...
7.
Li X, Patterson H
Materials (Basel) . 2017 Aug; 6(7):2595-2611. PMID: 28811397
Dicyanoaurate, dicyanoargentate, and dicyanocuprate ions in solution and doped in different alkali halide hosts exhibit interesting photophysical and photochemical behavior, such as multiple emission bands, exciplex tuning, optical memory, and...
8.
Pan Z, Stemmler E, Cho H, Fan W, LeBlanc L, Patterson H, et al.
J Hazard Mater . 2014 Jul; 279:17-25. PMID: 25036996
Current design limitations and ineffective remediation techniques in wastewater treatment plants have led to concerns about the prevalence of pharmaceutical and personal care products (PPCPs) in receiving waters. A novel...
9.
Ahern J, Shilabin A, Henline K, Pike R, Patterson H
Dalton Trans . 2014 Jul; 43(31):12044-9. PMID: 24983662
The organic acceptor 1,1'-bis-(2,4-dinitrophenyl)-4,4'-bipyridinium (DNP(2+)) reacts with dicyanoargentate to form a supramolecular complex with the general formula: {[Ag(CN)2]2DNP}·2H2O. The photophysical properties of this complex were determined using solid-state luminescence experiments...
10.
Ahern J, Roberts R, Follansbee P, McLaughlin J, Leznoff D, Patterson H
Inorg Chem . 2014 Jun; 53(14):7571-9. PMID: 24968022
This investigation is focused on comparing photophysical properties between two series of lanthanide-dicyanoaurate coordination polymers that contain and lack aurophilic interactions, respectively. Luminescence and crystallographic studies have been carried out...