首页> 外文期刊>Small >WO3 Nanofiber-Based Biomarker Detectors Enabled by Protein-Encapsulated Catalyst Self-Assembled on Polystyrene Colloid Templates
【24h】

WO3 Nanofiber-Based Biomarker Detectors Enabled by Protein-Encapsulated Catalyst Self-Assembled on Polystyrene Colloid Templates

机译:WO3纳米纤维为基础的生物标志物检测器,其通过蛋白质封装的催化剂自组装在聚苯乙烯胶体模板上实现

获取原文
获取原文并翻译 | 示例
           

摘要

A novel catalyst functionalization method, based on protein-encapsulated metallic nanoparticles (NPs) and their self-assembly on polystyrene (PS) colloid templates, is used to form catalyst-loaded porous WO3 nanofibers (NFs). The metallic NPs, composed of Au, Pd, or Pt, are encapsulated within a protein cage, i.e., apoferritin, to form unagglomerated monodispersed particles with diameters of less than 5 nm. The catalytic NPs maintain their nanoscale size, even following high-temperature heat-treatment during synthesis, which is attributed to the discrete self-assembly of NPs on PS colloid templates. In addition, the PS templates generate open pores on the electrospun WO3 NFs, facilitating gas molecule transport into the sensing layers and promoting active surface reactions. As a result, the Au and Pd NP-loaded porous WO3 NFs show superior sensitivity toward hydrogen sulfide, as evidenced by responses (R-air/R-gas) of 11.1 and 43.5 at 350 degrees C, respectively. These responses represent 1.8- and 7.1-fold improvements compared to that of dense WO3 NFs (R-air/R-gas = 6.1). Moreover, Pt NP-loaded porous WO3 NFs exhibit high acetone sensitivity with response of 28.9. These results demonstrate a novel catalyst loading method, in which small NPs are well-dispersed within the pores of WO3 NFs, that is applicable to high sensitivity breath sensors.
机译:一种基于蛋白质包封的金属纳米颗粒(NPs)及其在聚苯乙烯(PS)胶体模板上自组装的新型催化剂功能化方法,用于形成负载催化剂的多孔WO3纳米纤维(NFs)。将由Au,Pd或Pt组成的金属NP封装在蛋白质笼子即脱铁铁蛋白内,以形成直径小于5 nm的未团聚的单分散颗粒。即使在合成过程中进行高温热处理后,催化NP仍保持其纳米级尺寸,这归因于NP在PS胶体模板上的离散自组装。此外,PS模板在电纺WO3 NF上产生开孔,促进气体分子转运到传感层中并促进活性表面反应。结果,Au和Pd NP负载的多孔WO3 NF对硫化氢表现出优异的敏感性,这分别由350摄氏度下的11.1和43.5响应(R空气/ R气体)证明。与致密的​​WO3 NF(R空气/ R气体= 6.1)相比,这些响应代表了1.8倍和7.1倍的改进。此外,负载Pt NP的多孔WO3 NFs具有较高的丙酮敏感性,响应为28.9。这些结果证明了一种新颖的催化剂加载方法,其中小的NP很好地分散在WO3 NF的孔中,适用于高灵敏度呼吸传感器。

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