Bashir Shazia, Ahmad Shahbaz, Ali Nisar, Kalsoom Umm-I, Rafique Muhammad Shahid, Alshehri Ali Mohammad, Husinsky Wolfgang
Department of Physics, Govt. College University, Lahore, 54000, Pakistan.
Centre for Advanced Studies in Physics, Govt. College University, Lahore, 54000, Pakistan.
Heliyon. 2024 Jul 14;10(14):e34553. doi: 10.1016/j.heliyon.2024.e34553. eCollection 2024 Jul 30.
Ion implantation of laser induced graphite plasma has been performed for modifications in surface, optical, electrical and structural properties of CR-39. KrF Excimer laser (248 nm, 18 ns, 120 mJ), at an irradiance of 2.5 × 10 W cm is utilized for the production of graphite plasma. The energy and fluence of graphite ions are estimated by Thomson parabola technique. The targets are implanted with energy of 710 KeV graphite ions for four fluences ranging from 26 × 10 to 92 × 10 ions/cm, in presence of magnetic field of strength 90 mT. The digital optical analysis reveals well-arranged dendritic and island like structure formation on irradiated polymer surface. Confocal microscopic investigation illustrates the growth of nano/micro sized craters and hillocks for various ion fluences. Dissociation of bonds along with formation of new bonds is confirmed from Raman analysis. UV-Vis spectral analysis reveals that the optical transmittance values for visible regions of CR-39 are drastically reduced from 90 % to 68 % for maximum laser fluence of 92 × 10 ions.cm. Significant improvement in electrical conductivity is achieved from 10 to 10 Scm for lowest fluence value of graphite ions. SRIM software is utilized for the measurement of stopping power or Linear Energy Transfer (LTE) of 710 Kev graphite ions, is about, 55.53 eV/Ǻ, in the CR-39 targets.
已对CR-39进行了激光诱导石墨等离子体的离子注入,以改变其表面、光学、电学和结构性能。利用KrF准分子激光(248nm,18ns,120mJ),在2.5×10⁸W/cm²的辐照度下产生石墨等离子体。通过汤姆逊抛物线技术估算石墨离子的能量和注量。在强度为90mT的磁场存在下,用能量为710keV的石墨离子对靶材进行注入,注量范围为26×10¹³至92×10¹³离子/cm²,共四种注量。数字光学分析显示,在辐照后的聚合物表面形成了排列良好的树枝状和岛状结构。共聚焦显微镜研究表明,对于不同的离子注量,纳米/微米尺寸的坑和小丘会生长。拉曼分析证实了键的断裂以及新键的形成。紫外-可见光谱分析表明,对于最大激光注量为92×10¹³离子/cm²的情况,CR-可见光区域的光学透过率值从90%急剧降至68%。对于最低的石墨离子注量值,电导率从10⁻¹²S/cm显著提高到10⁻¹⁰S/cm。利用SRIM软件测量了710keV石墨离子在CR-39靶材中的阻止本领或线能量转移(LET),约为55.53eV/Å。