Flexible quasi-solid zinc-ion batteries(ZIBs)have large potential in power applications due to the low price,wearable nature,safety,and high capacity.However,the use of transition metal sulfide cathodes in ZIBs has no...Flexible quasi-solid zinc-ion batteries(ZIBs)have large potential in power applications due to the low price,wearable nature,safety,and high capacity.However,the use of transition metal sulfide cathodes in ZIBs has not been studied extensively and the underlying mechanism and theoretical basis of this type of batteries are not well understood.Herein,a highly active cobalt-doped Ni_(3)S_(2) porous nanocone framework(C12NS)is designed and demonstrated as a zinc-ion battery electrode.First-principles calculation and experiments reveal that the cobalt dopant improves the battery properties greatly.The assembled flexible zinc-ion battery exhibits a high specific capacity of 453.3 mAh g^(−1)at a current density of 0.4 A g^(−1)in as well as excellent cycling stability as manifested by a capacity retention ratio of 89.5%at a current density of 4 A g^(−1)after 5000 cycles.The peak energy density of 553.9 Wh kg^(−1)is also superior to those of most recently reported NiCo-based zinc-ion batteries.More importantly,the flexible battery can be operated under severe mechanical bending and even continues to work after physical puncturing without showing leakage.These exciting results not only reveal a novel design of cathode materials for zinc-based batteries,but also suggest their immense commercial potential in portable and wearable electronics.展开更多
Parkinson’s disease(PD) is a common degenerative disease of the central nervous system, and the pathologic features are mainly degeneration of substantianigra and dopamine neurons. Studies have shown that safflower f...Parkinson’s disease(PD) is a common degenerative disease of the central nervous system, and the pathologic features are mainly degeneration of substantianigra and dopamine neurons. Studies have shown that safflower flavonoid extract(SAFE) exhibits the neuroprotective effect. In this study, the safflower flavonoid extract drop pills(SAFE-DPs) for anti-PD were prepared by the heating and melting method using SAFE and matrix PEG6000. The performances of the pills were evaluated with powder X-ray diffraction(PXRD), differential scanning calorimetry(DSC), Fourier transform infrared spectroscopy(FT-IR), scanning electron microscopy(SEM) and dissolution testing. The analysis results demonstrated an amorphous state for SAFE dispersion in the matrix PEG6000 without any chemical reaction. The SAFE-DPs demonstrated acceptable chemical and physical stability irrespective of the manufacturing process and the storage period. Dissolution testing in three dissolution media(pH 1.0, pH 6.8 and pH 7.5) indicated that SAFE-DPs had excellent dissolution property. The transport of Kaempferol-3-rutinoside(K3 R) on the Caco-2 monolayer and the absorption of K3 R in situ intestinal perfusion revealed that the principal component of SAFE had a good transport and absorption capacity. Therefore, the drop pills had better release and absorption in the gastrointestinal tract, corresponding with the pharmacological and pharmacodynamic results for PD in vivo.展开更多
基金jointly supported by the National Natural Science Foundation of China(Grant Nos.61176108 and 61774060)the Science and Technology Commission of Shanghai Municipality(Grant No.18DZ2270800)+1 种基金the City University of Hong Kong Strategic Research Grant(SRG)(Grant No.7005505)the support of the Scientific Research Foundation for the Returned Overseas Chinese Scholars of State Education Ministry(Grant No.[2015]-1098)。
文摘Flexible quasi-solid zinc-ion batteries(ZIBs)have large potential in power applications due to the low price,wearable nature,safety,and high capacity.However,the use of transition metal sulfide cathodes in ZIBs has not been studied extensively and the underlying mechanism and theoretical basis of this type of batteries are not well understood.Herein,a highly active cobalt-doped Ni_(3)S_(2) porous nanocone framework(C12NS)is designed and demonstrated as a zinc-ion battery electrode.First-principles calculation and experiments reveal that the cobalt dopant improves the battery properties greatly.The assembled flexible zinc-ion battery exhibits a high specific capacity of 453.3 mAh g^(−1)at a current density of 0.4 A g^(−1)in as well as excellent cycling stability as manifested by a capacity retention ratio of 89.5%at a current density of 4 A g^(−1)after 5000 cycles.The peak energy density of 553.9 Wh kg^(−1)is also superior to those of most recently reported NiCo-based zinc-ion batteries.More importantly,the flexible battery can be operated under severe mechanical bending and even continues to work after physical puncturing without showing leakage.These exciting results not only reveal a novel design of cathode materials for zinc-based batteries,but also suggest their immense commercial potential in portable and wearable electronics.
基金Science and Technology Major Projects:Significant New-Drugs Creation(Grant No.2012ZX09103201-042)
文摘Parkinson’s disease(PD) is a common degenerative disease of the central nervous system, and the pathologic features are mainly degeneration of substantianigra and dopamine neurons. Studies have shown that safflower flavonoid extract(SAFE) exhibits the neuroprotective effect. In this study, the safflower flavonoid extract drop pills(SAFE-DPs) for anti-PD were prepared by the heating and melting method using SAFE and matrix PEG6000. The performances of the pills were evaluated with powder X-ray diffraction(PXRD), differential scanning calorimetry(DSC), Fourier transform infrared spectroscopy(FT-IR), scanning electron microscopy(SEM) and dissolution testing. The analysis results demonstrated an amorphous state for SAFE dispersion in the matrix PEG6000 without any chemical reaction. The SAFE-DPs demonstrated acceptable chemical and physical stability irrespective of the manufacturing process and the storage period. Dissolution testing in three dissolution media(pH 1.0, pH 6.8 and pH 7.5) indicated that SAFE-DPs had excellent dissolution property. The transport of Kaempferol-3-rutinoside(K3 R) on the Caco-2 monolayer and the absorption of K3 R in situ intestinal perfusion revealed that the principal component of SAFE had a good transport and absorption capacity. Therefore, the drop pills had better release and absorption in the gastrointestinal tract, corresponding with the pharmacological and pharmacodynamic results for PD in vivo.