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- Application of the direct peptide reactivity assay (DPRA) to inorganic compounds: a case study of platinum species. Jocelyn D. C. Hemming, Mark Hosford, Martin M. Shafer
, Toxicol. Res.
, 2019
, 8
, 802
- CCLXXVII.—Colloidal platinum. Part IV. The existence of hexahydroxyplatinic acid in colloidal platinum solutions. Stuart W. Pennycuick
, J. Chem. Soc.
, 1928
, 2108
- Displacement reduction routed Au–Pt bimetallic nanoparticles: a highly durable electrocatalyst for methanol oxidation and oxygen reduction. N. S. K. Gowthaman, Bharathi Sinduja, Sekar Shankar, S. Abraham John
, Sustainable Energy Fuels
, 2018
, 2
, 1588
- Part I.—Einstein's law of photochemical equivalence. Introductory address to Part I. A. J. Allmand
, Trans. Faraday Soc.
, 1926
, 21
, 438
- Platinum-containing polymeric catalysts in direct l-sorbose oxidation. E. Sulman, V. Matveeva, L. Bronstein, A. Sidorov, N. Lakina, S. Sidorov, P. Valetsky
, Green Chem.
, 2003
, 5
, 205
- Impact of alloying and lattice strain on ORR activity of Pt and Pd based ternary alloys with Fe and Co for proton exchange membrane fuel cell applications. Karuppannan Mohanraju, Louis Cindrella
, RSC Adv.
, 2014
, 4
, 11939
- Nuclear magnetic resonance spectra of some inorganic hydrates. J. A. S. Smith, R. E. Richards
, Trans. Faraday Soc.
, 1952
, 48
, 307
- LXXII.—Interaction of mercuric and cupric chlorides respectively and the mercaptans and potential mercaptans. Prafulla Chandra Rây
, J. Chem. Soc., Trans.
, 1919
, 115
, 871
- Anomalously increased oxygen reduction reaction activity with accelerated durability test cycles for platinum on thiolated carbon nanotubes. Tae-Jun Kim, Gihan Kwon, Yong-Tae Kim
, Chem. Commun.
, 2014
, 50
, 596
- Ex-situ dispersion of core–shell nanoparticles of Cu–Pt on an in situ modified carbon surface and their enhanced electrocatalytic activities. Vishal M. Dhavale, Sreekuttan M. Unni, Husain N. Kagalwala, Vijayamohanan K. Pillai, Sreekumar Kurungot
, Chem. Commun.
, 2011
, 47
, 3951