[1]王正午,黃憶雪,張恩鳳,等.磷酸鈦釔鋰表面原位包覆制備高電壓鎳錳酸鋰鋰離子電池正極材料[J].中國(guó)材料進(jìn)展,2025,44(10):922-928.[doi:10.7502/j.issn.1674-3962.202403012]
WANG Zhengwu,HUANG Yixue,ZHANG Enfeng,et al.In-Situ Surface Modification of LNMO Cathode with LYTP for Lithium-Ion Batteries[J].MATERIALS CHINA,2025,44(10):922-928.[doi:10.7502/j.issn.1674-3962.202403012]
點(diǎn)擊復(fù)制
磷酸鈦釔鋰表面原位包覆制備高電壓鎳錳酸鋰鋰離子電池正極材料(
)
中國(guó)材料進(jìn)展[ISSN:1674-3962/CN:61-1473/TG]
- 卷:
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44
- 期數(shù):
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2025年10
- 頁(yè)碼:
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922-928
- 欄目:
-
- 出版日期:
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2025-10-30
文章信息/Info
- Title:
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In-Situ Surface Modification of LNMO Cathode with LYTP for Lithium-Ion Batteries
- 文章編號(hào):
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1674-3962(2025)10-0922-07
- 作者:
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王正午; 黃憶雪; 張恩鳳; 劉永康; 豐子良; 張寶; 董鵬; 張英杰; 張雁南
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昆明理工大學(xué)冶金與能源工程學(xué)院 鋰離子電池及材料制備技術(shù)國(guó)家地方聯(lián)合工程研究中心,云南 昆明 650093
- Author(s):
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WANG Zhengwu; HUANG Yixue; ZHANG Enfeng; LIU Yongkang; FENG Ziliang;
ZHANG Bao; DONG Peng; ZHANG Yingjie; ZHANG Yannan
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National and Local Joint Engineering Laboratory for Lithium-Ion Batteries and Materials Preparation Technology,Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology,Kunming 650093, China
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- 關(guān)鍵詞:
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鋰離子電池; 高電壓鎳錳酸鋰; 表面包覆; 磷酸鈦釔鋰; 電化學(xué)性能
- Keywords:
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lithium-ion batteries; high voltage lithium nickel manganese spinel (LNMO); surface coating; yttrium lithium titanium phosphate (LYTP); electrochemical performance
- 分類號(hào):
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TQ131.1+1; TM912
- DOI:
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10.7502/j.issn.1674-3962.202403012
- 文獻(xiàn)標(biāo)志碼:
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A
- 摘要:
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尖晶石LiNi0.5Mn1.5O4(LNMO)因其高工作電壓(>4.7 V)和優(yōu)良的質(zhì)量能量密度(≥650 Wh·kg-1)可以成為一種有前途的鋰離子電池(lithium-ion batteries,LIBs)無(wú)鈷正極材料。然而,在高工作電壓下較差的循環(huán)性阻礙了其商業(yè)應(yīng)用。采用凝膠溶膠法在LNMO表面成功原位構(gòu)筑了一層無(wú)機(jī)導(dǎo)電Li1.4Y0.4Ti1.6(PO4)3(LYTP)包覆層。對(duì)改性前后LNMO的表面形貌、晶體結(jié)構(gòu)和電化學(xué)性能進(jìn)行了綜合研究。結(jié)果表明,LYTP表面改性具有良好的多功能保護(hù)層作用,有效降低了錳在電解液中的溶解,提高了鋰離子的遷移效率。值得注意的是,LNMO@LYTP的容量保持率在500次循環(huán)后仍高達(dá)82%,顯著高于未包覆的LNMO正極。即使在10C倍率條件下,LNMO@LYTP也具有116 mAh·g-1的放電比容量。該研究為錳基正極材料的表面改性領(lǐng)域提供了數(shù)據(jù),并為進(jìn)一步提高其他高壓錳基LIBs正極材料的電化學(xué)性能提供了思路。
- Abstract:
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Spinel LiNi0.5Mn1.5O4 (LNMO) is a promising cobalt-free cathode material for lithium-ion batteries (LIBs) due to its high operating voltage (>4.7 V) and excellent bulk energy density (≥650 Wh·kg-1). However, the commercial application of this material is hindered by its poor cyclability at high operating voltage. This work successfully constructed an inorganic conductive coating layer, Li1.4Y0.4Ti1.6(PO4)3 (LYTP), on the surface of LNMO using the gel-sol method. The study comprehensively investigated the surface morphology,crystal structure and electrochemical properties of LNMO before and after modification. The results indicate that the LYTP surface modification has a good multifunctional protective layer effect. It effectively reduces the dissolution of manganese in the electrolyte and improves the migration efficiency of lithium ions. The capacity retention of LNMO@LYTP remains high at 82% even after 500 cycles, which is significantly higher than that of the uncapped lithium nickel manganate cathode. The LNMO@LYTP has a discharge specific capacity of 116 mAh·g-1 even at 10C multiplication. This study contributes to the field of surface modification and provides ideas for further improving the electrochemical performance of other high-voltage manganese-based LIBs.
備注/Memo
- 備注/Memo:
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收稿日期:2024-03-16修回日期:2024-04-22
基金項(xiàng)目:國(guó)家自然科學(xué)基金項(xiàng)目(52164031); 云南省基礎(chǔ)研究項(xiàng)目(202201AT070160);云南省“興滇英才”計(jì)劃青年拔尖人才專項(xiàng)(YNWR-QNBJ-2020-009)
第一作者:王正午,男,1996年生,碩士研究生
通訊作者:張雁南,男,1986年生,特聘教授,碩士生導(dǎo)師,
Email: zynlegolas@kust.edu.cn
更新日期/Last Update:
2025-11-14