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Recent advances in ultrathin 2D hexagonal boron nitride based gas sensors

机译:超薄2D六边形硼氮化物的气体传感器的最新进展

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The recent advances in the field of 2D hexagonal boron nitride (hBN) for realizing electronic and optoelectronic devices, including wearable and portable devices, have aroused scientific interest in this ultrathin material for a wide range of applications. Its exceptionally high thermal conductivity and temperature stability make it one of the most promising materials for next-generation high-performance gas sensors. Although a number of review articles on hBN have already been published focusing on its synthesis, properties, and functionalities, however, none of them has made a significant contribution to the field of gas sensing. Hence, in this review, we have analytically summarized the state-of-art advances in hBN based devices with a particular emphasis on gas sensors. Moreover, we have also explained the comprehensive physics of hBN based gas sensors. The recent technological advancements to overcome the inherent properties such as poor surface reactivity and low conductivity have also been thoroughly compiled. Finally, we have discussed some of the prominent challenges faced by hBN technology for developing practical gas sensors.
机译:二维六角氮化硼(hBN)用于实现电子和光电子设备(包括可穿戴和便携式设备)领域的最新进展引起了人们对这种超薄材料的广泛应用的科学兴趣。其极高的导热性和温度稳定性使其成为下一代高性能气体传感器最有前途的材料之一。尽管已经发表了大量关于hBN的综述文章,重点介绍了hBN的合成、性质和功能,但没有一篇对气体传感领域做出重大贡献。因此,在这篇综述中,我们分析总结了基于hBN的设备的最新进展,特别强调了气体传感器。此外,我们还解释了基于hBN的气体传感器的综合物理特性。最近的技术进步,以克服固有的性质,如表面反应性差和导电率低也已被彻底汇编。最后,我们讨论了hBN技术在开发实用气体传感器方面面临的一些突出挑战。

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