Latvian
Albanian
Arabic
Armenian
Azerbaijani
Belarusian
Bengali
Bosnian
Catalan
Czech
Danish
Deutsch
Dutch
English
Estonian
Finnish
Français
Greek
Haitian Creole
Hebrew
Hindi
Hungarian
Icelandic
Indonesian
Irish
Italian
Japanese
Korean
Latvian
Lithuanian
Macedonian
Mongolian
Norwegian
Persian
Polish
Portuguese
Romanian
Russian
Serbian
Slovak
Slovenian
Spanish
Swahili
Swedish
Turkish
Ukrainian
Vietnamese
Български
中文(简体)
中文(繁體)
Journal of Colloid and Interface Science 2019-Oct

Walnut core-like hollow carbon micro/nanospheres supported SnOx@C composite for high performance lithium-ion battery anode.

Rakstu tulkošanu var veikt tikai reģistrēti lietotāji
Ielogoties Reģistrēties
Saite tiek saglabāta starpliktuvē
Qinghua Tian
Yanbin Chen
Fengtao Chen
Jizhang Chen
Li Yang

Atslēgvārdi

Abstrakts

Herein, to cope with the volume variation problem of SnO2 anodes for lithium-ion batteries, individual walnut core-like hollow carbon micro/nanospheres (WCSs) have been prepared to be used as a supporting skeleton to form WCSs@SnOx@C composite. In WCSs@SnOx@C the SnOx (SnO2 with relatively small amounts of SnO) nanoparticles are well sandwiched between inner WCSs supporting skeleton and outmost glucose derived carbon anchoring coating. It is suggested that the characteristic composite construction has three key contributions to the electrochemical performance of WCSs@SnOx@C composite: firstly, with structural characteristics such as network filled cavities and porous shells, the WCSs has stronger stress tolerance, and therefore can be better able to withstand structural deformation of SnOx nanoparticles; secondly, the outmost glucose derived carbon, as an anchoring coating, can not only prevent SnOx nanoparticles from aggregating but also pulverization; finally, the ultrafine SnOx nanoparticles have low absolute volume change and shortened ions and electrons transfer distances, and therefore possess improved electrochemical performance. As a result, with the combined effect of WCSs, ultrafine SnOx nanoparticles and outmost carbon coating, the as-constructed WCSs@SnOx@C exhibits outstanding electrochemical performances such as high capacity (853 mAh g-1 at 200 mA g-1 after 400 cycles) and ultra-long lifespan (417 mAh g-1 at 1000 mA g-1 after even 1000 cycles).

Pievienojieties mūsu
facebook lapai

Vispilnīgākā ārstniecības augu datu bāze, kuru atbalsta zinātne

  • Darbojas 55 valodās
  • Zāļu ārstniecības līdzekļi, kurus atbalsta zinātne
  • Garšaugu atpazīšana pēc attēla
  • Interaktīva GPS karte - atzīmējiet garšaugus atrašanās vietā (drīzumā)
  • Lasiet zinātniskās publikācijas, kas saistītas ar jūsu meklēšanu
  • Meklēt ārstniecības augus pēc to iedarbības
  • Organizējiet savas intereses un sekojiet līdzi jaunumiem, klīniskajiem izmēģinājumiem un patentiem

Ierakstiet simptomu vai slimību un izlasiet par garšaugiem, kas varētu palīdzēt, ierakstiet zāli un redziet slimības un simptomus, pret kuriem tā tiek lietota.
* Visa informācija ir balstīta uz publicētiem zinātniskiem pētījumiem

Google Play badgeApp Store badge