the National Natural Science Foundation of China(Nos.21875198,22005257,and 22021001);Natural Science Foundation of Fujian Province of China(No.2020J05009)for financial support.
Rechargeable magnesium batteries(RMBs)have emerged as a promising next-generation electrochemical energy storage technology due to their superiority of low price and high safety.However,the practical applications of R...
financial support from the National Natural Science Foundation of China(51464020);the financial support from the Australian Research Council。
Spent selective catalytic reduction(SCR)catalysts are defined as hazardous wastes because of the toxicity of V_(2)O_(5)to the ecological environment.Recycling of V_(2)O_(5)and TiO_(2)from the spent SCR catalysts has s...
supported by both the Technology Innovation Program(20004958,Development of ultra-high performance supercapacitor and high power module);funded by the Ministry of Trade,Industry and Energy(MOTIE);the R&D Convergence Program(CAP-15-02-KBSI)of the National Research Council of Science&Technology,Republic of Korea。
With the development of stable alkali metal anodes,V_(2)O_(5) is gaining traction as a cathode material due to its high theoretical capacity and the ability to intercalate Li,Na and K ions.Herein,we report a method fo...
Project supported by the National Natural Science Foundation of China(No.U1862203);the National Science Fund for Distinguished Young Scholars(No.21525627);the Science Fund for Creative Research Groups of National Natural Science Foundation of China(No.61621002)。
Pyrolysis is a cost-effective and safe method for the disposal of radioactive spent resins.In this work,the catalytic effects of V_(2)O_(5) on the pyrolysis of cation exchange resin are investigated for the first time...