Insights Into the Mechanochemical Glass Formation of Zeolitic Imidazolate Frameworks

Author:

Xue Wen‐Long1ORCID,Das Chinmoy12ORCID,Weiß Jan‐Benedikt1ORCID,Henke Sebastian1ORCID

Affiliation:

1. Anorganische Chemie Fakultät für Chemie und Chemische Biologie Technische Universität Dortmund Otto-Hahn Straße 6 44227 Dortmund Germany

2. Department of Chemistry SRM University-AP Andhra Pradesh 522240 India

Abstract

AbstractMetal–organic framework (MOF) glasses, known for their potential in gas separation, optics, and solid‐state electrolytes, benefit from the processability of their (supercooled) liquid state. Traditionally, MOF glasses are produced by heating MOF crystals to their melting point and then cooling the liquid MOF to room temperature under an inert atmosphere. While effective, this melt‐quenching technique requires high energy due to the high temperatures involved. It also limits the scope of new material development by restricting the compositional range to only those combinations of metal ions and linkers that are highly thermally stable. An alternative, mechanical milling at room temperature, has demonstrated its capability to transform MOF crystals into amorphous phases. However, the specific conditions under which these amorphous phases exhibit glass‐like behavior remain uncharted. In this study, we explore the mechanochemical amorphization and vitrification of a variety of zeolitic imidazolate frameworks (ZIFs) with diverse linkers and different metal ions (Zn2+, Co2+ and Cu2+) at room temperature. Our findings demonstrate that ZIFs capable of melting can be successfully converted into glasses through ball‐milling. Remarkably, some non‐meltable ZIFs can also be vitrified using the ball‐milling technique, as highlighted by the preparation of the first Cu2+‐based ZIF glass.

Funder

Deutsche Forschungsgemeinschaft

China Scholarship Council

Fonds der Chemischen Industrie

Publisher

Wiley

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