Mark D Symes
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Explore the profile of Mark D Symes including associated specialties, affiliations and a list of published articles.
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57
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605
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Recent Articles
1.
Sale H, Ertekin Z, Lalaguna P, Kadodwala M, Symes M
Chem Commun (Camb)
. 2024 May;
60(47):6003-6006.
PMID: 38787718
Herein, we show that unmodified titanium electrodes bearing the naturally-forming native TiO coating display superior activity for the electroreduction of oxalic acid to glyoxylic acid and glycolic acid compared to...
2.
Yusuf L, Ertekin Z, Fletcher S, Symes M
Ultrason Sonochem
. 2024 Feb;
103:106792.
PMID: 38364481
Methylene blue is one of the most common pollutants found in wastewater, primarily due to its widespread use in the dye industry. Consequently, it is imperative to explore environmentally friendly...
3.
Stephen Ojo O, Sale H, Symes M, Wilson C
Dalton Trans
. 2024 Feb;
53(9):4343.
PMID: 38349620
Retraction of 'Synthesis of a chiral dinuclear Cu(II)-benzothiazolamine complex: evidence of cuprophilic interaction in its structure and exploration of its electrochemical properties and catalytic performance' by O. Stephen Ojo ,...
4.
Kumar Samuel A, Faqeeh A, Li W, Ertekin Z, Wang Y, Zhang J, et al.
ACS Sustain Chem Eng
. 2024 Jan;
12(3):1276-1285.
PMID: 38273988
Proton exchange membrane (PEM) water electrolyzers are critical enablers for sustainable green hydrogen production due to their high efficiency. However, nonplatinum catalysts are rarely evaluated under actual electrolyzer operating conditions,...
5.
Stephen Ojo O, Sale H, Symes M, Wilson C
Dalton Trans
. 2023 Oct;
PMID: 37902024
The synthesis of a chiral dinuclear [Cu(OAc)(L1)] complex (A) and its analogues Cu(OAc)(L1) (B), Cu(OAc)(L1)PPh (C), CuBr(L1)PPh (D), and Cu(OAc)(L2) (E) is described. The X-ray structure of A reveals a...
6.
Ying J, Xiao Y, Chen J, Hu Z, Tian G, Van Tendeloo G, et al.
Nano Lett
. 2023 Aug;
23(16):7371-7378.
PMID: 37534973
Hierarchical assembly of arc-like fractal nanostructures not only has its unique self-similarity feature for stability enhancement but also possesses the structural advantages of highly exposed surface-active sites for activity enhancement,...
7.
Stergiou A, Broadhurst D, Symes M
ACS Org Inorg Au
. 2023 Feb;
3(1):51-58.
PMID: 36748077
Anilines and substituted anilines are used on the multi-ton scale for producing polymers, pharmaceuticals, dyes, and other important compounds. Typically, these anilines are produced from their corresponding nitrobenzene precursors by...
8.
Akay O, Bashkatov A, Coy E, Eckert K, Einarsrud K, Friedrich A, et al.
NPJ Microgravity
. 2022 Dec;
8(1):56.
PMID: 36470890
Electrochemical energy conversion technologies play a crucial role in space missions, for example, in the Environmental Control and Life Support System (ECLSS) on the International Space Station (ISS). They are...
9.
Stergiou A, Broadhurst D, Symes M
STAR Protoc
. 2022 Nov;
3(4):101817.
PMID: 36386882
Anilines are important feedstocks for pharmaceuticals, dyes, and other materials, but traditional approaches to their syntheses usually lack selectivity and environmental sustainability. Here, we describe the selective reduction of nitrobenzene...
10.
Fang F, Wang Y, Shen L, Tian G, Cahen D, Xiao Y, et al.
Small
. 2022 Sep;
18(42):e2203778.
PMID: 36103609
An electrocatalyst composed of RuO surrounded by interfacial carbon, is synthesized through controllable oxidization-calcination. This electrocatalyst provides efficient charge transfer, numerous active sites, and promising activity for pH-universal electrocatalytic overall...