Borjanovic Vesna, Lawrence William G, Hens Suzanne, Jaksic Milko, Zamboni Ivana, Edson Clark, Vlasov Igor, Shenderova Olga, McGuire Gary E
International Technology Center, 8100-120 Brownleigh Drive, Raleigh, NC 27617, USA. Faculty of Electrical Engineering and Computing, Unska 3, 10 000 Zagreb, Croatia.
Nanotechnology. 2008 Nov 12;19(45):455701. doi: 10.1088/0957-4484/19/45/455701. Epub 2008 Oct 9.
Pure poly(dimethylsiloxane) (PDMS) films, PDMS-nanodiamond (ND) and pure nanodiamond powder were irradiated with 2 MeV protons under a variety of fluence and current conditions. Upon proton irradiation, these samples acquire a fluence-dependent photoluminescence (PL). The emission and excitation spectra, photostability and emission lifetime of the induced photoluminescence of PDMS and PDMS-ND samples are reported. Pure PDMS exhibits a noticeable stable blue PL, while the PDMS-ND composites exhibit a pronounced stable green PL under 425 nm excitation. The PL of PDMS-ND composites is much more prominent than that of pure PDMS or pure ND powder even when irradiated at higher doses. The origin of the significantly enhanced PL intensity for the proton-irradiated PDMS-ND composite is explained by the combination of enhanced intrinsic PL within ND particles due to ion-implantation-generated defects and by PL originating from structural transformations produced by protons at the nanodiamond/matrix interface.
纯聚二甲基硅氧烷(PDMS)薄膜、PDMS-纳米金刚石(ND)和纯纳米金刚石粉末在多种注量和电流条件下用2 MeV质子进行辐照。质子辐照后,这些样品获得了与注量相关的光致发光(PL)。报道了PDMS和PDMS-ND样品诱导光致发光的发射和激发光谱、光稳定性和发射寿命。纯PDMS呈现出明显稳定的蓝色PL,而PDMS-ND复合材料在425 nm激发下呈现出显著稳定的绿色PL。即使在更高剂量辐照下,PDMS-ND复合材料的PL也比纯PDMS或纯ND粉末的PL更为显著。质子辐照的PDMS-ND复合材料PL强度显著增强的原因是,由于离子注入产生的缺陷,ND颗粒内固有PL增强,以及纳米金刚石/基体界面处质子产生的结构转变所产生的PL共同作用的结果。