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Extraordinarily Persistent Zero Linear Compressibility in Metal-Organic Framework MIL-122(In) AITranslate

Jilin University; Jiangsu Normal University; Jilin University; Jilin University; Jilin University; Jilin University
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Publisher: ACS
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Abstract AITranslate

Because of its rare linear stability, material with zero linear compression (ZLC) is active in many complicated environments. But it is generally difficult to acquire a single material with ZLC behavior. Herein, we reported a rare ZLC over a huge pressure range (1 atm to 10.5 GPa) in MIL-122(In) material along its a-axis direction. High-pressure angle-dispersive X-ray powder diffraction experiments revealed its structure changes under increasing hydrostatic pressure. Density functional theory calculations confirmed that the ZLC in MIL-122(In) resulted from the unconventional mechanical response of the rhombohedral wine-rack frameworks. Our work provided a new instance of the ZLC material in a large pressure range and demonstrated that the naturally soft materials, metal-organic frameworks, can also exhibit persistent pressure resistance.

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DOI:https://doi.org/10.1021/acsmaterialslett.0c00090

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Because of its rare linear stability, material with zero linear compression (ZLC) is active in many complicated environments. But it is generally difficult to acquire a single material with ZLC behavior. Herein, we reported a rare ZLC over a huge pressure range (1 atm to 10.5 GPa) in MIL-122(In) material along its a-axis direction. High-pressure angle-dispersive X-ray powder diffraction experiments revealed its structure changes under increasing hydrostatic pressure. Density functional theory calculations confirmed that the ZLC in MIL-122(In) resulted from the unconventional mechanical response of the rhombohedral wine-rack frameworks. Our work provided a new instance of the ZLC material in a large pressure range and demonstrated that the naturally soft materials, metal-organic frameworks, can also exhibit persistent pressure resistance.

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GB/T 7714-2015 [1] Yishuai Yu, Qingxin Zeng, Yaping Chen, et al. ACS Materials Letters, 2020(2). DOI:10.1021/acsmaterialslett.0c00090.
MLA [1] Yishuai Yu, et al., ACS Materials Letters, no. 2, 2020, https://doi.org/10.1021/acsmaterialslett.0c00090.
APA [1] Yishuai Yu, Qingxin Zeng, Yaping Chen, Lina Jiang, Kai Wang, & Bo Zou. (2020). ACS Materials Letters(2). https://doi.org/10.1021/acsmaterialslett.0c00090
IEEE [1] Yishuai Yu, Qingxin Zeng, Yaping Chen, Lina Jiang, Kai Wang, and Bo Zou, ACS Materials Letters, no. 2, 2020, doi: 10.1021/acsmaterialslett.0c00090.