Chiang Hsiu-Mei, Cho Kuan-Yu, Zeng Li-Xuan, Chiang Hung-Lung
Department of Cosmeceutics, China Medical University, Taichung 40402, Taiwan.
Department of Health Risk Management, China Medical University, Taichung 40402, Taiwan.
Materials (Basel). 2016 May 9;9(5):350. doi: 10.3390/ma9050350.
Carbon spheres and tubes were formed from acetylene decomposition on SBA-15 and Ni-SBA-15 at 650-850 °C. At 650 °C, the decomposed carbons covered the surface of the support, and no carbon spheres and filament materials were formed. Carbon sphere formation occurred at 750 °C-850 °C; with diameters ranging from 0.8 μm-1.1 μm. For Ni-SBA-15, the diameters of the spheres and filaments were 0.8 μm and 62 nm, respectively, at 650 °C. At 750 °C, the diameter of the ball carbon materials ranged from 0.7 μm-0.8 μm, the diameter of the carbon tubes formed was 120-130 nm, and their pore diameter was 8.0 nm-11 nm. At 850 °C, the diameters of ball carbon materials and carbon tubes were similar to those of the materials at the formation temperature, 750 °C. Si, O and C were the main constituents of SBA-15; Ni-SBA-15 and carbon material formation supports. High-ring PAHs (such as BaP (five rings); IND (six rings); DBA (five rings) and B[]P (six rings)) exist in carbon materials. SBA-15 revealed insignificant cytotoxicity, but Ni-SBA-15 inhibited the proliferation of human lung cancer cells (A549). Less inhibition on cell viability and reactive oxidative species (ROS) generation on A549 were determined for carbon material formation on the Ni-SBA-15 compared to the Ni-SBA-15.
在650 - 850℃下,乙炔在SBA - 15和Ni - SBA - 15上分解形成了碳球和碳管。在650℃时,分解产生的碳覆盖在载体表面,未形成碳球和丝状材料。碳球在750℃ - 850℃时形成,直径范围为0.8μm - 1.1μm。对于Ni - SBA - 15,在650℃时,球体和丝状材料的直径分别为0.8μm和62nm。在750℃时,球状碳材料的直径范围为0.7μm - 0.8μm,形成的碳管直径为120 - 130nm,其孔径为8.0nm - 11nm。在850℃时,球状碳材料和碳管的直径与在750℃形成温度时的材料直径相似。Si、O和C是SBA - 15、Ni - SBA - 15以及碳材料形成载体的主要成分。碳材料中存在高环多环芳烃(如BaP(五环);IND(六环);DBA(五环)和B[]P(六环))。SBA - 15显示出微不足道的细胞毒性,但Ni - SBA - 15抑制人肺癌细胞(A549)的增殖。与Ni - SBA - 15相比,在Ni - SBA - 15上形成的碳材料对A549细胞活力和活性氧(ROS)生成的抑制作用较小。