Gečė Gintarė, Pilipavičius Jurgis, Traškina Nadežda, Drabavičius Audrius, Vilčiauskas Linas
Center for Physical Sciences and Technology (FTMC), Saulėtekio al. 3, LT-10257 Vilnius, Lithuania.
ACS Sustain Chem Eng. 2023 Feb 15;11(8):3429-3436. doi: 10.1021/acssuschemeng.2c06732. eCollection 2023 Feb 27.
Aqueous Na-ion batteries are among the most discussed alternatives to the currently dominating Li-ion battery technology, in the area of stationary storage systems because of their sustainability, safety, stability, and environmental friendliness. The electrochemical properties such as ion insertion kinetics, practical capacity, cycling stability, or Coulombic efficiency are strongly dependent on the structure, morphology, and purity of an electrode material. The selection and optimization of materials synthesis route in many cases allows researchers to engineer materials with desired properties. In this work, we present a comprehensive study on size- and shape-controlled hydro(solvo)thermal synthesis of NaTi(PO) nanoparticles. The effects of different alcohol/water synthesis media on nanoparticle phase purity, morphology, and size distribution are analyzed. Water activity in the synthesis media of different alcohol solutions is identified as the key parameter governing the nanoparticle phase purity, size, and shape. The careful engineering of NaTi(PO) nanoparticle morphology allows control of the electrochemical performance and degradation of these materials as aqueous Na-ion battery electrodes.
水系钠离子电池是目前主导的锂离子电池技术在固定存储系统领域中讨论最多的替代方案之一,因其具有可持续性、安全性、稳定性和环境友好性。诸如离子插入动力学、实际容量、循环稳定性或库仑效率等电化学性能强烈依赖于电极材料的结构、形态和纯度。在许多情况下,材料合成路线的选择和优化使研究人员能够设计出具有所需性能的材料。在这项工作中,我们对尺寸和形状可控的水(溶剂)热合成NaTi(PO)纳米颗粒进行了全面研究。分析了不同醇/水合成介质对纳米颗粒相纯度、形态和尺寸分布的影响。不同醇溶液合成介质中的水活度被确定为控制纳米颗粒相纯度、尺寸和形状的关键参数。对NaTi(PO)纳米颗粒形态的精心设计能够控制这些材料作为水系钠离子电池电极的电化学性能和降解情况。