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Intermediate temperature solid oxide fuel cells.
Brett DJ, Atkinson A, Brandon NP, Skinner SJ. Brett DJ, et al. Chem Soc Rev. 2008 Aug;37(8):1568-78. doi: 10.1039/b612060c. Epub 2008 May 28. Chem Soc Rev. 2008. PMID: 18648682
A novel high-temperature furnace for combined in situ synchrotron X-ray diffraction and infrared thermal imaging to investigate the effects of thermal gradients upon the structure of ceramic materials.
Robinson JB, Brown LD, Jervis R, Taiwo OO, Millichamp J, Mason TJ, Neville TP, Eastwood DS, Reinhard C, Lee PD, Brett DJ, Shearing PR. Robinson JB, et al. Among authors: brett dj. J Synchrotron Radiat. 2014 Sep;21(Pt 5):1134-9. doi: 10.1107/S1600577514014209. Epub 2014 Aug 15. J Synchrotron Radiat. 2014. PMID: 25178003 Free PMC article.
A novel fuel cell design foroperandoenergy-dispersive x-ray absorption measurements.
Leach AS, Hack J, Amboage M, Diaz-Moreno S, Huang H, Cullen PL, Wilding M, Magliocca E, Miller TS, Howard CA, Brett DJL, Shearing PR, McMillan PF, Russell AE, Jervis R. Leach AS, et al. J Phys Condens Matter. 2021 Jun 16;33(31). doi: 10.1088/1361-648X/ac0476. J Phys Condens Matter. 2021. PMID: 34030140
A novel molten-salt electrochemical cell for investigating the reduction of uranium dioxide to uranium metal by lithium using in situ synchrotron radiation.
Brown LD, Abdulaziz R, Jervis R, Bharath V, Mason TJ, Atwood RC, Reinhard C, Connor LD, Inman D, Brett DJ, Shearing PR. Brown LD, et al. Among authors: brett dj. J Synchrotron Radiat. 2017 Mar 1;24(Pt 2):439-444. doi: 10.1107/S1600577517000625. Epub 2017 Feb 16. J Synchrotron Radiat. 2017. PMID: 28244437 Free PMC article.
109 results