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A novel highly selective and sensitive NH_3 gas sensor based on monolayer Hf_2CO_2

机译:基于单层Hf_2CO_2的新型高选择性高灵敏度NH_3气体传感器

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摘要

The gas sensing performance of monolayer Hf2CO was evaluated by means of first-principles calculation. Present results indicate that Hf2CO sheet possesses high selectivity and remarkable sensitivity toward NH3 molecule, by virtue of the moderate adsorption energy, sharply enhanced electronic conductivity beyond a specific bias voltage and appreciable work function change, as well as good stability, short recovery time. Moreover, the interaction of NH3 with Hf2CO can be enhanced by pre-adsorbed H2O molecule via forming hydrogen bonds between the adsorbates, while pre-covered O-2 molecule can barely affect the adsorption of NH3 molecule. Particularly, NH3 capture/release on monolayer Hf2CO is predicted to be realized by applying external strains and/or electric fields. These appealing features signify monolayer Hf2CO as promising nanomaterials for gaseous NH3 detection and storage.
机译:通过第一性原理计算来评估单层Hf2CO的气体传感性能。目前的结果表明,Hf2CO片材具有适度的吸附能,对NH3分子具有很高的选择性和极高的灵敏度,在特定的偏置电压之外,电子电导率大大提高,并且功函数变化明显,稳定性好,恢复时间短。此外,预吸附的H2O分子可通过在被吸附物之间形成氢键来增强NH3与Hf2CO的相互作用,而预覆盖的O-2分子几乎不会影响NH3分子的吸附。特别地,预计通过施加外部应变和/或电场可实现在单层Hf2CO上的NH3捕获/释放。这些吸引人的特征表明,单层Hf2CO是用于气态NH3检测和存储的有前途的纳米材料。

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