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高導(dǎo)電性Ti3SiC2改性LiFePO4/C及其電化學(xué)性能
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國家自然科學(xué)基金項(xiàng)目(50872090,51072130)


Electrochemical Performance of LiFePO4/C Modified with High Conducting Ti3SiC2
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    摘要:

    LiFePO4具有優(yōu)良的綜合電化學(xué)性能,然而它的高倍率性能較差。為了提高其導(dǎo)電性能,進(jìn)而改善高倍率電化學(xué)性能,利用高導(dǎo)電性Ti3SiC2來改性LiFePO4。采用球磨法將Ti3SiC2與LiFePO4進(jìn)行均勻混合,研究Ti3SiC2添加量對(duì)LiFePO4電化學(xué)性能的影響。當(dāng)Ti3SiC2質(zhì)量分?jǐn)?shù)為4%時(shí),電化學(xué)綜合性能最好。1、2、5 C的放電容量分別為131.7、119.6、97.4 mAh·g?1,而不加Ti3SiC2試樣在相應(yīng)倍率的放電容量僅為120.8、101.9、64.0 mAh·g?1;恒電位階躍測試表明添加4% Ti3SiC2使鋰離子的擴(kuò)散速率從8.5×10?11 cm2·s?1提高到8.2×10?10 cm2·s?1;交流阻抗和循環(huán)伏安測試還發(fā)現(xiàn)Ti3SiC2的加入降低了電荷轉(zhuǎn)移電阻,提高了電極材料的可逆性,從而改善了充放電過程中的動(dòng)力學(xué)限制,提高了高倍率下的放電容量

    Abstract:

    Lithium iron phosphate is a new kind of cathode materials for lithium ion battery. It has found wide applications in lithium ion battery industry. It has excellent comprehensive electrochemical performance. Unfortunately, its high rate performance is not satisfactory. In order to enhance its conductivity and improve the high rate performance of the cathode material, highly conductive Ti3SiC2 modification was adopted. Ti3SiC2 modified LiFePO4/C powders were prepared via a ball milling process followed by heat-treatment at 400 °C. The effects of addition amount of Ti3SiC2 on electrochemical performance of the cathode material were investigated. It is found that a Ti3SiC2-based conducting network characterized by a “plane-to-point” conducting mode is constituted in the LiFePO4/C cathode. Galvanostatic charge/discharge test indicates that Ti3SiC2 modification is effective to improve the discharge capacity at high rates. Cyclic voltammetry (CV), electrochemical impedance spectroscopy (EIS) and potential step chronoamperometry (PSCA) measurements prove that the Ti3SiC2-based conducting network enhances electrochemical reversibility, alleviates charge transfer impedance and facilitates lithium ion diffusion (from 8.5′10?11 cm2·s?1 to 8.2′10?10 cm2·s?1). The 4wt% Ti3SiC2-modified LiFePO4 sample exhibits the best electrochemical performance with capacities of 131.7, 119.6 and 97.4 mAh·g?1 at 1 C, 2 C and 5 C, respectively, much higher than those without Ti3SiC2 modification. They are only 120.8, 101.9 and 64.0 mAh·g?1 at the corresponding rates, respectively

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郭瑞松,吳立軍,安 靜,劉崇威.高導(dǎo)電性Ti3SiC2改性LiFePO4/C及其電化學(xué)性能[J].稀有金屬材料與工程,2013,42(12):2486~2489.[Guo Ruisong, Wu Lijun, An Jing, Liu Chongwei. Electrochemical Performance of LiFePO4/C Modified with High Conducting Ti3SiC2[J]. Rare Metal Materials and Engineering,2013,42(12):2486~2489.]
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  • 收稿日期:2012-12-19
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