Department of Physics, College of Science, AL-Muthanna University, Samawah, 66001, Iraq; Department of Physics, Faculty of Science, University of Malaya, 50603, Kuala Lumpur, Malaysia.
Department of Physics, College of Science, AL-Muthanna University, Samawah, 66001, Iraq.
Appl Radiat Isot. 2021 Dec;178:109933. doi: 10.1016/j.apradiso.2021.109933. Epub 2021 Sep 2.
Samples of cellulose nitrate polymer (CN-85) were annealed at 100 °C, 120 °C, and 140 °C for 15 min before and after irradiation with alpha particles emitted from aAm source. Irradiation was performed at room temperature for 5 min. The changes in the optical and structural properties of CN-85 NTD, due to annealing and irradiation, were studied by using ultraviolet-visible spectroscopy (UV-VIS), and Fourier transform infrared spectroscopy (FTIR). Direct and indirect energy gap values, the number of carbon atoms, carbon clusters, and Urbach's energy values were determined. The UV-VIS analysis showed a shift in the absorption edge of the CN-85 polymer toward long wavelengths. The FTIR results revealed the changes in some bonds and the structural decomposition of CN-85 due to irradiation. The direct band gap energy was slightly decreased from 4.13 eV to 4.09 eV when the pristine samples were heated to 140 °C and irradiated. The indirect band gap energy was decreased from 3.9 eV to 3.8 eV under the same conditions. The Urbach's energy values showed a fluctuating rise with increasing annealing temperature for the irradiated and heated samples. When the pristine samples irradiated and heated, the band gap energy is reduced from 4.13 eV to 4.06 eV and from 3.90 eV to 3.84 eV for the direct and indirect transition, respectively. In conclusion, this technique showed promising benefits for a wide range of applications such as optoelectronics and microelectronic devices.
样品的硝酸纤维素聚合物 (CN-85) 被退火在 100 ° C, 120 ° C 和 140 ° C 15 分钟之前和之后的 α 粒子辐照从 Am 源发射。辐照在室温下进行了 5 分钟。CN-85 的光学和结构性能的变化 NTD, 由于退火和辐照, 用紫外可见分光光度计 (UV-VIS) 和傅里叶变换红外光谱 (FTIR) 进行了研究。直接和间接能隙值、碳原子数、碳簇和 Urbach 能值都被确定了。UV-VIS 分析表明吸收边的 CN-85 聚合物向长波长移动。FTIR 结果表明一些键的变化和由于辐照引起的 CN-85 的结构分解。当原始样品加热到 140 ° C 并辐照时, 直接带隙能从 4.13 eV 略微降低到 4.09 eV。在相同条件下, 间接带隙能从 3.9 eV 降低到 3.8 eV。在辐照和加热的样品中, 随着退火温度的升高, Urbach 能值呈波动上升趋势。当原始样品辐照和加热时, 带隙能从 4.13 eV 降低到 4.06 eV, 从 3.90 eV 降低到 3.84 eV, 分别为直接和间接跃迁。总之, 该技术在光电和微电子器件等广泛的应用中显示出了很好的应用前景。