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Pressure-driven electronic phase transition in the high-pressure phase of nitrogen-rich 1H-tetrazoles.


ABSTRACT: High-energy-density materials (HEDMs) require new design rules collected from experimental and theoretical results and a proposed mechanism. One of the targeted systems is the nitrogen-rich compounds as precursors for possible polymeric nitrogen or its counterpart in a reasonable pressure range. 1H-tetrazole (CH2N4) with hydrogen bonds was studied under pressure by both diffraction and spectroscopy techniques. The observed crystal structure phase transition and hydrogen bond-assisted electronic structure anomaly were confirmed by first-principles calculation. The rearrangement of the hydrogen bonds under pressure elucidates the bonding interactions of the nitrogen-rich system in local 3D chemical environments, allowing the discovery and design of a feasible materials system to make new-generation high-energy materials.

SUBMITTER: Liu Y 

PROVIDER: S-EPMC9034126 | biostudies-literature | 2021 Jun

REPOSITORIES: biostudies-literature

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Pressure-driven electronic phase transition in the high-pressure phase of nitrogen-rich 1H-tetrazoles.

Liu Ying Y   Du Huifang H   Fang Leiming L   Sun Fei F   Su Haipeng H   Ge Zhongxue Z   Guo Wei W   Zhu Jinlong J  

RSC advances 20210617 35


High-energy-density materials (HEDMs) require new design rules collected from experimental and theoretical results and a proposed mechanism. One of the targeted systems is the nitrogen-rich compounds as precursors for possible polymeric nitrogen or its counterpart in a reasonable pressure range. 1H-tetrazole (CH<sub>2</sub>N<sub>4</sub>) with hydrogen bonds was studied under pressure by both diffraction and spectroscopy techniques. The observed crystal structure phase transition and hydrogen bon  ...[more]

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