Molten salt synthesis of carbon-doped boron nitride nanosheets with enhanced adsorption performance

材料科学 吸附 氮化硼 化学工程 弗伦德利希方程 水溶液 热稳定性 朗缪尔 熔盐 碳纤维 硼酸 三聚氰胺 无机化学 纳米技术 有机化学 复合材料 冶金 化学 复合数 工程类
作者
Honghong Wang,Liang Tian,Zhong Huang,Feng Liang,Keke Guan,Quanli Jia,Haijun Zhang,Shaowei Zhang
出处
期刊:Nanotechnology [IOP Publishing]
卷期号:31 (50): 505606-505606 被引量:24
标识
DOI:10.1088/1361-6528/abb6a4
摘要

Owing to their large specific areas, high thermal stability and chemical inertness, two-dimensional boron carbon nitride nanosheets (BCNNs) have captured much attention in recent years in the field of adsorption of pollutants. The formation of BCNNs via incorporating carbon into boron nitride (BN) can effectively improve the photoelectric and adsorption properties of the latter. In this work, carbon-doped BN (BCN) nanosheets were prepared at 1100 °C via a molten salt route using boric acid, melamine and glucose as the main starting materials. The effects of molten salt type and carbon doping level on the formation of BCN were investigated, and their isothermal adsorption properties in a methylene blue (MB) aqueous solution were evaluated based on the Langmuir and Freundlich models. The results indicated that using molten LiCl-KCl as a liquid medium was more favorable than NaCl-KCl to the formation of BCNNs. As-prepared BC0.4N sample possessed a sheet-like structure of about 10 nm thick and a specific surface area as high as 484 m2 g-1. Moreover, the adsorption test of MB demonstrated a high adsorption capacity of 249.04 mg g-1, which was about 14 times higher than that in the case of the pristine BN, and the kinetic rate constant value in the case of using BC0.4N is about ten times as high as that of BN following a pseudo-second-order model, suggesting that the as-formed BC0.4N nanosheets could be potentially used as a value-added effective adsorbent for future wastewater remediation.
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