已收录 268921 条政策
 政策提纲
  • 暂无提纲
Charge-Dipole Acceleration of Polar GasMolecules towards Charged Nanoparticles: Involvement inPowerful Charge-Induced Catalysis of HeterophaseChemical Reactions and Ball Lightning Phenomenon
[摘要] In humid air, the substantial charge-dipole attraction and electrostatic acceleration of surrounding water vapour molecules towards charged combustible nanoparticles cause intense electrostatic hydration and preferential oxidation of these nanoparticles by electrostatically accelerated polar water vapour molecules rather than nonaccelerated nonpolar oxygen gas molecules. Intense electrostatic hydration of charged combustible nanoparticles converts the nanoparticle's oxide-based shells into the hydroxide-based electrolyte shells, transforming these nanoparticles into reductant/air core-shell nanobatteries, periodically short-circuited by intraparticle field and thermionic emission. Partially synchronized electron emission breakdowns within trillions of nanoparticles-nanobatteries turn a cloud of charged nanoparticles-nanobatteries into a powerful radiofrequency aerosol generator. Electrostatic oxidative hydration and charge-catalyzed oxidation of charged combustible nanoparticles also contribute to a self-oscillating thermocycling process of evolution and periodic autoignition of inflammable gases near to the nanoparticle's surface. The described effects might be of interest for the improvement of certain nanotechnological heterophase processes and to better understand ball lightning phenomenon.
[发布日期]  [发布机构] 
[效力级别]  [学科分类] 材料工程
[关键词]  [时效性] 
   浏览次数:2      统一登录查看全文      激活码登录查看全文