- 余厚詠 教授
- 浙江理工大學
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A novel chemical reduction method to fabricate tunable selenium nanosphere and nanobelt based on cellulose nanocrystals
作者:DuanchaoWang,HouyongYu,YingGuan,MaihaoZhu,ShanshanLiu,JumingYao
關鍵字:Selenium nanosphere,Selenium nanobelt,Cellulose nanocrystal
論文來源:期刊
發表時間:2018年
A novel chemical reduction method was reported to prepare tunable spherical or belted morphologies of nano-selenium (Se) based on cellulose nanocrystal (CNC). The homogeneous Se nanospheres with size of about 36?nm can be found for Se-Sphere-12H by adding ascorbic acid (VC) as assisted reducing agent. The Se nanobelt with a length of about 800?nm can be observed for Se-Belt-12H through one-pot reaction of CNC with sodium selenite (Na2SeO3) under hydrothermal conditions. Moreover, Se-Belt-12H exhibited the higher crystallinity of 96.10% and maximum thermal degradation temperature (Tmax) of 479.4?°C, the highest capacitance and the smallest internal resistance.
關鍵字:Selenium nanosphere,Selenium nanobelt,Cellulose nanocrystal
論文來源:期刊
發表時間:2018年
A novel chemical reduction method was reported to prepare tunable spherical or belted morphologies of nano-selenium (Se) based on cellulose nanocrystal (CNC). The homogeneous Se nanospheres with size of about 36?nm can be found for Se-Sphere-12H by adding ascorbic acid (VC) as assisted reducing agent. The Se nanobelt with a length of about 800?nm can be observed for Se-Belt-12H through one-pot reaction of CNC with sodium selenite (Na2SeO3) under hydrothermal conditions. Moreover, Se-Belt-12H exhibited the higher crystallinity of 96.10% and maximum thermal degradation temperature (Tmax) of 479.4?°C, the highest capacitance and the smallest internal resistance.