Lan Siang-Wen, Weng Min-Hang, Yang Ru-Yuan, Chang Shoou-Jinn, Chung Yaoh-Sien, Yu Tsung-Chih, Wu Chun-Sen
Department of Electrical Engineering and Advanced Optoelectronic Technology Center, Institute of Microelectronics, National Cheng Kung University, Tainan 701, Taiwan.
Medical Devices and Opto-Electronics Equipment Department, Metal Industries Research and Development Center, Kaohsiung City 811, Taiwan.
Materials (Basel). 2016 Jul 9;9(7):559. doi: 10.3390/ma9070559.
In this paper, the oil-in-gelatin based tissue-mimicking materials (TMMs) doped with carbon based materials including carbon nanotube, graphene ink or lignin were prepared. The volume percent for gelatin based mixtures and oil based mixtures were both around 50%, and the doping amounts were 2 wt %, 4 wt %, and 6 wt %. The effect of doping material and amount on the microwave dielectric properties including dielectric constant and conductivity were investigated over an ultra-wide frequency range from 2 GHz to 20 GHz. The coaxial open-ended reflection technology was used to evaluate the microwave dielectric properties. Six measured values in different locations of each sample were averaged and the standard deviations of all the measured dielectric properties, including dielectric constant and conductivity, were less than one, indicating a good uniformity of the prepared samples. Without doping, the dielectric constant was equal to 23 ± 2 approximately. Results showed with doping of carbon based materials that the dielectric constant and conductivity both increased about 5% to 20%, and the increment was dependent on the doping amount. By proper selection of doping amount of the carbon based materials, the prepared material could map the required dielectric properties of special tissues. The proposed materials were suitable for the phantom used in the microwave medical imaging system.
在本文中,制备了掺杂有包括碳纳米管、石墨烯墨水或木质素在内的碳基材料的明胶基油基组织模拟材料(TMMs)。明胶基混合物和油基混合物的体积百分比均约为50%,掺杂量分别为2 wt%、4 wt%和6 wt%。在2 GHz至20 GHz的超宽频率范围内研究了掺杂材料及其用量对包括介电常数和电导率在内的微波介电性能的影响。采用同轴开口反射技术评估微波介电性能。对每个样品不同位置的六个测量值进行平均,所有测量的介电性能(包括介电常数和电导率)的标准偏差均小于1,表明所制备样品具有良好的均匀性。未掺杂时,介电常数约等于23±2。结果表明,掺杂碳基材料后,介电常数和电导率均增加了约5%至20%,且增量取决于掺杂量。通过适当选择碳基材料的掺杂量,所制备的材料可以模拟特殊组织所需的介电性能。所提出的材料适用于微波医学成像系统中使用的体模。