...
首页> 外文期刊>Bulletin of Materials Science >Eesorcinol-formaldehyde based carbon nanospheres by electrospraying
【24h】

Eesorcinol-formaldehyde based carbon nanospheres by electrospraying

机译:通过电喷雾法制得的依索诺尔-甲醛基碳纳米球

获取原文
获取原文并翻译 | 示例
           

摘要

Carbon nanospheres were synthesized using sol-gel processing of organic and aqueous resorcinol formaldehyde (RF) sols combined with electrospraying technique. RF sol was electrosprayed to form nano-droplets which were collected on a Si wafer. After oven drying at 60 deg for 12 h, RF nano-droplets were pyro-lyzed at 900 deg C in an inert atmosphere to yield the carbon nanospheres. This study reports the optimization of various process parameters including needle diameter, applied electric potential and liquid flow rate in order to get spherical, mono-disperse particles. For the organic RF sol, the optimized parameters, needle diameter 0.241 mm, electric potential, 1.5 kV/cm and a flow rate of 0.8 ml/h, enabled the synthesis of nearly mono-dispersed carbon nano-spheres with diameter of 30.2 + -7.1 nm. With the same conditions, aqueous RF sol produced irregularly shaped nanoparticles with a smaller mean diameter and much higher variance (17.4 + -8.0 nm). The surface properties were significantly influenced by the surface morphologies as demonstrated In the water contact angle (WCA) studies. The surface covered with the RF derived carbon nano-spheres was extremely hydrophilic (WCA 10.1 deg) as compared to a much weaker hydrophilicity of the RF derived carbon films (WCA 83.3 deg). The hydrophilic carbon nanospheres reported here may have potential applications as adsorbents and in controlled drug delivery, biosensors and carbon-based microelectromechanical systems (C-MEMS) including bio-MEMS.
机译:碳纳米球是利用有机和水性间苯二酚甲醛(RF)溶胶的溶胶-凝胶工艺结合电喷雾技术合成的。将RF溶胶电喷雾以形成纳米滴,将其收集在Si晶片上。在60摄氏度的烤箱中干燥12小时后,RF纳米液滴在惰性气氛中900摄氏度热解,得到碳纳米球。这项研究报告了各种工艺参数的优化,包括针直径,施加电势和液体流速,以获得球形的单分散颗粒。对于有机RF溶胶,优化的参数(针直径0.241 mm,电势,1.5 kV / cm和流速0.8 ml / h)能够合成直径30.2 +的几乎单分散的碳纳米球。 7.1纳米在相同条件下,水性RF溶胶产生的不规则形状的纳米粒子的平均直径较小,且方差更大(17.4 + -8.0 nm)。如水接触角(WCA)研究中所示,表面形貌显着影响表面性能。与RF衍生碳膜的亲水性弱得多(WCA 83.3度)相比,RF衍生碳纳米球覆盖的表面具有极强的亲水性(WCA 10.1度)。本文报道的亲水性碳纳米球可能具有潜在的应用作为吸附剂,并在药物控制,生物传感器和包括生物MEMS的碳基微机电系统(C-MEMS)中发挥潜在作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号