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SBA-15 confined synthesis of TiNb2O7 nanoparticles for lithium-ion batteries

机译:SBA-15局限TiNb2O7纳米颗粒的合成对锂离子电池

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Unlike most conventional anode materials, the newly developed TiNb2O7 (TNO) does not form a solid electrolyte interface (SEI) layer, which makes it safe for high power requiring lithium-ion batteries. In this paper, we demonstrated an SBA-15 confined synthetic approach to prepare TNO nanoparticles (S-TNO) with a small particle size around 10 nm and a large BET surface area of 79.5 m~2 g~(-1). It is worth mentioning that this is the smallest size reported so far for TNO. In contrast, the TNO (L-TNO) synthesized without SBA-15 has a particle size above 100 nm and a BET surface area of only 4.3 m~2 g~(-1). The S-TNO shows better lithium-ion storage properties than L-TNO. The excellent electrochemical performance of S-TNO is attributed to its small crystalline size, which not only provides a larger effective area for better contact between the electrode material and the electrolyte, but also reduces the rate-limiting Li diffusion path. Moreover, S-TNO shows a high Coulombic efficiency (above 98% over 300 cycles) and negligible increase of impedance after cycling, which confirms no SEI layer formation in the operational voltage (1-3 V) of TNO.
机译:与大多数传统的阳极材料,新开发TiNb2O7 (TNO)不形式固态电解质界面(SEI)层使它安全的高功率要求锂离子电池。演示了一个SBA-15密闭合成方法准备TNO纳米颗粒(S-TNO)小粒径在10 nm和大赌注表面面积79.5 m ~ 2 g ~(1)。值得一提的,这是最小的尺寸TNO报道到目前为止。(L-TNO)合成没有SBA-15粒子大小超过100海里,打赌表面面积4.3米~ 2 g ~(1)。比L-TNO锂存储属性。S-TNO的优良的电化学性能归因于它的小晶体尺寸,不仅提供了一个更大的有效面积更好的电极材料和之间的联系电解质,但也减少了李病原扩散路径。显示了库仑效率高(98%以上300周期)和增加阻抗可以忽略不计骑自行车后,确认没有SEI层操作电压(1 - 3 V)的形成

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