Renewable synthesis of MoO3 nanosheets via low temperature phase transition for supercapacitor application

超级电容器 材料科学 正交晶系 纳米片 纳米材料 化学工程 电化学 纳米技术 过渡金属 电极 二硫化钼 相变 化学 复合材料 有机化学 物理化学 催化作用 晶体结构 物理 量子力学 工程类
作者
K. N. Amba Sankar,Lokesh Kesavan,Bikash Saha,M. K. Jyolsnaraj,S. Venkata Mohan,P. Nandakumar,Kallol Mohanta,Carita Kvarnström
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:14 (1): 20503-20503 被引量:39
标识
DOI:10.1038/s41598-024-69765-x
摘要

Abstract 2D transition metal oxides have created revolution in the field of supercapacitors due to their fabulous electrochemical performance and stability. Molybdenum trioxides (MoO 3 ) are one of the most prominent solid-state materials employed in energy storage applications. In this present work, we report a non-laborious physical vapor deposition (PV D ) and ultrasonic extraction (US E ) followed by vacuum assisted solvothermal treatment (V ST ) route ( DEST ), to produce 2D MoO 3 nanosheets, without any complex equipment requirements. Phase transition in MoO 3 is often achieved at very high temperatures by other reported works. But our well-thought-out, robust approach led to a phase transition from one phase to another phase, for e.g., hexagonal ( h- MoO 3 ) to orthorhombic ( α -MoO 3 ) structure at very low temperature (90 °C), using a green solvent (H 2 O) and renewable energy. This was achieved by implementing the concept of oxygen vacancy defects and solvolysis. The synthesized 2D nanomaterials were investigated for electrochemical performance as supercapacitor electrode materials. The α -MoO 3 electrode material has shown supreme capacitance (256 Fg −1 ) than its counterpart h -MoO 3 and mixed phases ( h and α ) of MoO 3 (< 50 Fg −1 ). Thus, this work opens up a new possibility to synthesize electrocapacitive 2D MoO 3 nanosheets in an eco-friendly and energy efficient way; hence can contribute in renewable circular economy.
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