Phillip Christopher
Overview
Explore the profile of Phillip Christopher including associated specialties, affiliations and a list of published articles.
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Articles
47
Citations
1377
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Recent Articles
1.
Genc A, Marlowe J, Jalil A, Belzberg D, Kovarik L, Christopher P
Ultramicroscopy
. 2025 Feb;
271:114116.
PMID: 40014985
Accurate and efficient characterization of nanoparticles (NPs), particularly regarding particle size distribution, is essential for advancing our understanding of their structure-property relationship and facilitating their design for various applications. In...
2.
Jalil A, Happel E, Cramer L, Hunt A, Hoffman A, Waluyo I, et al.
Science
. 2025 Feb;
387(6736):869-873.
PMID: 39977491
Over the last 80 years, chlorine (Cl) has been the primary promoter of the ethylene epoxidation reaction valued at ~40 billion USD per year, providing a ~25% selectivity increase over...
3.
Allan M, Yang R, Marino S, Gordon M, Christopher P, Nikolla E
J Am Chem Soc
. 2024 Dec;
147(1):898-909.
PMID: 39729622
Designing catalysts with well-defined active sites with chemical functionality responsive to visible light has significant potential for overcoming scaling relations limiting chemical reactions over heterogeneous catalyst surfaces. Visible light can...
4.
Stefancu A, Aizpurua J, Alessandri I, Bald I, Baumberg J, Besteiro L, et al.
ACS Nano
. 2024 Oct;
18(43):29337-29379.
PMID: 39401392
Catalysis stands as an indispensable cornerstone of modern society, underpinning the production of over 80% of manufactured goods and driving over 90% of industrial chemical processes. As the demand for...
5.
Does H Temperature-Programmed Reduction Always Probe Solid-State Redox Chemistry? The Case of Pt/CeO
Lee J, Christopher P
Angew Chem Int Ed Engl
. 2024 Oct;
64(2):e202414388.
PMID: 39380162
Redox reactions on the surface of transition metal oxides are of broad interest in thermo, photo, and electrocatalysis. H temperature-programmed reduction (H-TPR) is commonly used to probe oxide reducibility by...
6.
Westman Z, Liu B, Richardson K, Davis M, Lim D, Stottlemyer A, et al.
JACS Au
. 2024 Aug;
4(8):3194-3204.
PMID: 39211586
Closed-loop recycling of plastics is needed to bridge the gap between the material demands imposed by a growing global population and the depletion of nonrenewable petroleum feedstocks. Here, we examine...
7.
Kim M, Biswas S, Barraza Alvarez I, Christopher P, Wong B, Mangolini L
JACS Au
. 2024 Aug;
4(8):2979-2988.
PMID: 39211584
Nonthermal plasmas provide a unique approach to electrically driven heterogeneous catalytic processes. Despite much interest from the community, fundamental activation pathways in these processes remain poorly understood. Here, we investigate...
8.
Lee J, Tieu P, Finzel J, Zang W, Yan X, Gadre C, et al.
JACS Au
. 2024 Jul;
4(7):2712.
PMID: 39055147
[This corrects the article DOI: 10.1021/jacsau.3c00330.].
9.
Marlowe J, Deshpande S, Vlachos D, Abu-Omar M, Christopher P
J Am Chem Soc
. 2024 May;
146(20):13862-13874.
PMID: 38738663
Catalysts containing Pt nanoparticles and reducible transition-metal oxides (WO, NbO, TiO) exhibit remarkable selectivity to aromatic products in hydrodeoxygenation (HDO) reactions for biomass valorization, contrasting the undesired aromatic hydrogenation typically...
10.
Barraza Alvarez I, Le T, Hosseini H, Samira S, Beck A, Marlowe J, et al.
J Am Chem Soc
. 2024 Apr;
146(18):12431-12443.
PMID: 38661654
The use of visible photon fluxes to influence catalytic reactions on metal nanoparticle surfaces has attracted attention based on observations of reaction mechanisms and selectivity not observed under equilibrium heating....