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Issue DateTitleAuthor(s)
2001A new application microgels: Novel method for the synthesis of spherical particles of the Y2O3:Eu phosphor using a copolymer microgel of NIPAM and acrylic acidMartinez-Rubio, MI; Ireland, TG; Fern, GR; Silver, J; Snowden, MJ
1999Effects of temperature and pressure on the Mössbauer spectra of models for the [4Fe-4S]2+ clusters of iron-sulfur proteins and the structure of [PPh4]2[Fe4S4(SCH2CO2C2H5)4]Silver, J; Fern, GR; Miller, JR; McCammon, CA; Evans, D; Jeffery Leigh, G
2006P.122: High density packing of submicron spherical particles of the Y2O3:Eu3+ phosphor for low voltage FPDsSilver, J; Withnall, R; Marsh, PJ; Lipman, AL; Ireland, TG; Fern, GR
2005A new oxide/oxysulfide based phosphor triad and high-efficiency green-emitting (Y,Gd)2O2S:Tb phosphor for FED applicationsSilver, J; Withnall, R; Marsh, PJ; Lipman, AL; Ireland, TG; Fern, GR
2003Physicochemical properties of poly(N-isopropylacrylamide-co-4-vinylpyridine) cationic polyelectrolyte colloidal microgelsPinkrah, VT; Snowden, MJ; Mitchell, JC; Seidel, J; Chowdhry, BZ; Fern, GR
2005Wavelength tunable emission from II-VI phosphors excited by electron or UV light for display applicationsWithnall, R; Silver, J; Barrett, E; Fern, GR; Ray, B
2012A novel method for the preparation of non-agglomerated nanometre sized particles of lanthanum phosphate phosphors utilising a high surface area support in the firing processSalimian, A; Fern, GR; Withnall, R; Silver, J
2003Yttrium oxide upconverting phosphors. Part 4: Upconversion luminescent emission from thulium-doped yttrium oxide under 632.8-nm light excitationSilver, J; Martinez-Rubio, MI; Ireland, TG; Fern, GR; Withnall, R
2004A Synthetic route to ZnGa2O4:Mn2+ phosphor utilizing oxalic acid for both facile synthesis and to aid in ensuring that Mn2+ is not oxidised during the firing processSilver, J; Lipman, AL; Fern, GR; Withnall, R
2002P51: A novel synthetic method for the controlled production of particle desired size for Y2O3:Eu phosphor using copolymer microgels of NIPAMSilver, J; Martinez-Rubio, MI; Gebretansae, S; Fern, GR; Snowden, MJ