Rangappa Dinesh, Manickavasakam Karnan, Muniyappa Murthy, Bekal Chandrakantha, Shenoy B Satish, Misnon Izan Izwan, Kandasamy Manikandan, Shetty Manjunath
Department of Applied Sciences and Visveswaraya Centre for Nanoscience and Technology, Visveswaraya Technological University PG Centre Bangalore Region, Muddenahalli Chikkaballapura 562103 India.
Center for Advanced Intelligent Materials, Universiti Malaysia Pahang Kuantan Pahang Malaysia.
RSC Adv. 2024 Mar 5;14(11):7699-7709. doi: 10.1039/d3ra07731d. eCollection 2024 Feb 29.
The application of novel one-dimensional (1D) architectures in the field of energy storage has fascinated researchers for a long time. The fast-paced technological advancements require reliable rapid synthesis techniques for the development of various Multi-metal oxide (MMO) nanostructures. For the first time, we report the synthesis of a single-phase hierarchical one-dimensional (1D) branched BiVO-Reduced Graphene Oxide (BVONB/RGO) nanocomposite with different weight percent variations of RGO starting from 6, 12, 24, and 26 wt% using the supercritical water method (SCW). The affirmation of the sample characteristics is done through various nano-characterization tools that help in establishing the monoclinic crystal structure, and nano branch morphology along with its physical, and thermal characteristics. Further, the electrochemical behavior evaluations of the fabricated coin cells provide insights into the well-known superior initial cycle capacity of around 810 mA h g, showing the superior ability of BVONB structures in storing lithium-ions (Li-ions). Meanwhile, an improved cyclic performance of the pure BVONB/RGO with 260 mA h g is evident after 50 cycles. Finally, the reported rapid single-pot SCW approach has delivered promising results in establishing a material process technique for multimetal oxides and their RGO nanocomposites successfully.
新型一维(1D)结构在储能领域的应用长期以来一直吸引着研究人员。快节奏的技术进步需要可靠的快速合成技术来开发各种多金属氧化物(MMO)纳米结构。我们首次报道了使用超临界水法(SCW)合成具有不同重量百分比变化(从6、12、24和26 wt%)的RGO的单相分级一维(1D)分支BiVO-还原氧化石墨烯(BVONB/RGO)纳米复合材料。通过各种纳米表征工具对样品特性进行确认,这些工具有助于确定单斜晶体结构、纳米分支形态及其物理和热特性。此外,对制备的硬币电池的电化学行为评估揭示了其众所周知的约810 mA h g的优异初始循环容量,表明BVONB结构在存储锂离子(Li-离子)方面具有卓越能力。同时,纯BVONB/RGO在50次循环后具有260 mA h g的改善循环性能是明显的。最后,所报道的快速单锅超临界水方法在成功建立多金属氧化物及其RGO纳米复合材料的材料制备技术方面取得了有前景的结果。