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芘包覆过渡金属二硫化物用于防止光氧化和环境老化

Pyrene Coating Transition Metal Disulfides as Protection from Photooxidation and Environmental Aging.

作者信息

Canton-Vitoria Ruben, Sayed-Ahmad-Baraza Yuman, Humbert Bernard, Arenal Raul, Ewels Christopher P, Tagmatarchis Nikos

机构信息

Theoretical and Physical Chemistry Institute, National Hellenic Research Foundation, 48 Vassileos Constantinou Avenue, 11635 Athens, Greece.

Institut des Materiaux Jean Rouxel (IMN), UMR6502 CNRS, Universite de Nantes, 2 Rue de la Houssiniere, BP32229, 44322 Nantes, France.

出版信息

Nanomaterials (Basel). 2020 Feb 19;10(2):363. doi: 10.3390/nano10020363.

Abstract

Environmental degradation of transition metal disulfides (TMDs) is a key stumbling block in a range of applications. We show that a simple one-pot non-covalent pyrene coating process protects TMDs from both photoinduced oxidation and environmental aging. Pyrene is immobilized non-covalently on the basal plane of exfoliated MoS and WS. The optical properties of TMD/pyrene are assessed via electronic absorption and fluorescence emission spectroscopy. High-resolution scanning transmission electron microscopy coupled with electron energy loss spectroscopy confirms extensive pyrene surface coverage, with density functional theory calculations suggesting a strongly bound stable parallel-stacked pyrene coverage of ~2-3 layers on the TMD surfaces. Raman spectroscopy of exfoliated TMDs while irradiating at 0.9 mW/4 μm under ambient conditions shows new and strong Raman bands due to oxidized states of Mo and W. Yet remarkably, under the same exposure conditions TMD/pyrene remain unperturbed. The current findings demonstrate that pyrene physisorbed on MoS and WS acts as an environmental barrier, preventing oxidative surface reactions in the TMDs catalyzed by moisture, air, and assisted by laser irradiation. Raman spectroscopy confirms that the hybrid materials stored under ambient conditions for two years remained structurally unaltered, corroborating the beneficial role of pyrene for not only hindering oxidation but also inhibiting aging.

摘要

过渡金属二硫化物(TMDs)的环境降解是一系列应用中的关键绊脚石。我们表明,一种简单的一锅法非共价芘涂层工艺可保护TMDs免受光致氧化和环境老化的影响。芘通过非共价方式固定在剥离的MoS₂和WS₂的基面上。通过电子吸收和荧光发射光谱对TMD/芘的光学性质进行了评估。高分辨率扫描透射电子显微镜与电子能量损失谱相结合,证实了芘在表面的广泛覆盖,密度泛函理论计算表明,TMD表面上芘以约2 - 3层的紧密结合稳定平行堆积形式覆盖。在环境条件下以0.9 mW/4 μm进行辐照时,剥离的TMDs的拉曼光谱显示出由于Mo和W的氧化态而产生的新的强拉曼峰。然而,值得注意的是,在相同的暴露条件下,TMD/芘保持不受影响。目前的研究结果表明,物理吸附在MoS₂和WS₂上的芘起到了环境屏障的作用,防止了在水分、空气以及激光辐照辅助下TMDs中发生的氧化表面反应。拉曼光谱证实,在环境条件下储存两年的混合材料结构未发生改变,这证实了芘不仅在阻碍氧化方面,而且在抑制老化方面都发挥了有益作用。

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