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xiejf專家顧問 (文學(xué)泰斗)
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[資源]
Adv. Funct. Mater.最新綜述:鈉離子電池 Sodium-Ion Batteries
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最新上線的AFM發(fā)表了以Sodium-Ion Batteries為題的介紹鈉離子電池的特征論文,對(duì)鈉離子電池的發(fā)展現(xiàn)狀做了綜述,分別從能量密度,陰極材料,陽(yáng)極材料,電解液方面做了詳盡的總結(jié)。最近這方面文章非常多,也足以反映出這個(gè)領(lǐng)域的發(fā)展前景。文章12頁(yè),引文92篇。 The status of ambient temperature sodium ion batteries is reviewed in light of recent developments in anode, electrolyte and cathode materials. These devices, although early in their stage of development, are promising for large-scale grid storage applications due to the abundance and very low cost of sodium-containing precursors used to make the components. The engineering knowledge developed recently for highly successful Li ion batteries can be leveraged to ensure rapid progress in this area, although different electrode materials and electrolytes will be required for dual intercalation systems based on sodium. In particular, new anode materials need to be identifi ed, since the graphite anode, commonly used in lithium systems, does not intercalate sodium to any appreciable extent. A wider array of choices is available for cathodes, including high performance layered transition metal oxides and polyanionic compounds. Recent developments in electrodes are encouraging, but a great deal of research is necessary, particularly in new electrolytes, and the understanding of the SEI fi lms. The engineering modeling calculations of Na-ion battery energy density indicate that 210 Wh kg − 1 in gravimetric energy is possible for Na-ion batteries compared to existing Li-ion technology if a cathode capacity of 200 mAh g − 1 and a 500 mAh g − 1 anode can be discovered with an average cell potential of 3.3 V. 。[ 來(lái)自科研家族 材料家族 ] |
材料科學(xué)最新前沿?zé)狳c(diǎn) | 電化學(xué)-電池材料 | 鋰電資源共享 | 納米技術(shù)與能源及模擬 |
鋰離子電池 | 先進(jìn)材料 | 鋰電-電化學(xué) | 納米化學(xué)/電化學(xué)綜述 |
材料類精品資源 | 鋰電 | 鋰電池 | 學(xué)術(shù) |
鈉離子電池電極材料 | 值得一看 | 催化dlut | 電化學(xué) |
鋰離子電池與燃料電池 |
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