Reversible switching between positive and negative thermal expansion in a metal-organic framework DUT-49

被引:16
|
作者
Garai, Bikash [1 ]
Bon, Volodymyr [1 ]
Efimova, Anastasia [2 ]
Gerlach, Martin [3 ]
Senkovska, Irena [1 ]
Kaskel, Stefan [1 ]
机构
[1] Tech Univ Dresden, Dept Inorgan Chem 1, Bergstr 66, D-01069 Dresden, Germany
[2] Brandenburg Univ Technol Cottbus Senftenberg, Dept Inorgan Chem, Univ Pl 1, D-01968 Senftenberg, Germany
[3] Helmholtz Zentrum Berlin Mat & Energie, Macromol Crystallog Grp, Albert Einstein Str 15, D-12489 Berlin, Germany
基金
欧洲研究理事会;
关键词
ADSORPTION; MIL-53;
D O I
10.1039/d0ta06830f
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Three-dimensional architectures constructedviacoordination of organic ligands to metal ions (broadly termed metal-organic frameworks, MOFs), are highly interesting for many demanding applications such as gas adsorption, molecular separation, heterogeneous catalysis, molecular sensing,etc.Being constructed from heterogeneous components, such framework solids show characteristic features from both the individual components and framework-specific features. One such interesting physicochemical property is thermal expansion, which arises from thermal vibration from the organic linker and metal ions. Herein, we show a very unique example of thermal responsiveness for the DUT-49 framework, a MOF well-known for its distinctive negative gas adsorption (NGA) properties. In the guest-free form, the framework shows another counter-intuitive phenomenon of negative thermal expansion (NTE),i.e.the lattice size increases with decrease of temperature. However, in the solvated state, it shows both NTE and positive thermal expansion (i.e.lattice size decreases with lowering of temperature, PTE) based on a specific temperature range. When the solvent exists in the liquid form inside the MOF pore, it retains the pristine NTE nature of the bare framework. But freezing of the solvent inside the pores induces the strain, which causes a structural transformation through in-plane bending of the linker and this squeezes the framework by similar to 10% of the unit cell volume. This effect has been verified using 3 different solvents where the structural contraction occurs immediately at the freezing point of the individual solvent. Furthermore, studies on a series of DUT-49(M) frameworks with varying metals confirm the general applicability of this mechanism.
引用
收藏
页码:20420 / 20428
页数:9
相关论文
共 50 条
  • [31] Defect-dependent colossal negative thermal expansion in UiO-66(Hf) metal-organic framework
    Cliffe, Matthew J.
    Hill, Joshua A.
    Murray, Claire A.
    Coudert, Francois-Xavier
    Goodwin, Andrew L.
    [J]. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2015, 17 (17) : 11586 - 11592
  • [32] Tuning the Negative Thermal Expansion Behavior of the Metal-Organic Framework Cu3BTC2 by Retrofitting
    Schneider, Christian
    Bodesheim, David
    Ehrenreich, Michael G.
    Crocella, Valentina
    Mink, Janos
    Fischer, Roland A.
    Butler, Keith T.
    Kieslich, Gregor
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2019, 141 (26) : 10504 - 10509
  • [33] Reversible switching of arylazopyrazole within a metal-organic cage
    Hanopolskyi, Anton, I
    De, Soumen
    Bialek, Michal J.
    Diskin-Posner, Yael
    Avram, Liat
    Feller, Moran
    Klajn, Rafal
    [J]. BEILSTEIN JOURNAL OF ORGANIC CHEMISTRY, 2019, 15 : 2398 - 2407
  • [34] Node Distortion as a Tunable Mechanism for Negative Thermal Expansion in Metal-Organic Frameworks
    Chen, Zhihengyu
    Stroscio, Gautam D.
    Liu, Jian
    Lu, Zhiyong
    Hupp, Joseph T.
    Gagliardi, Laura
    Chapman, Karena W.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2023, 145 (01) : 268 - 276
  • [35] Assessing negative thermal expansion in mesoporous metal-organic frameworks by molecular simulation
    Evans, Jack D.
    Duerholt, Johannes P.
    Kaskel, Stefan
    Schmid, Rochus
    [J]. JOURNAL OF MATERIALS CHEMISTRY A, 2019, 7 (41) : 24019 - 24026
  • [36] Negative Thermal Expansion Design Strategies in a Diverse Series of Metal-Organic Frameworks
    Burtch, Nicholas C.
    Baxter, Samuel J.
    Heinen, Jurn
    Bird, Ashley
    Schneemann, Andreas
    Dubbeldam, David
    Wilkinson, Angus P.
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2019, 29 (48)
  • [37] Negative to positive axial thermal expansion switching of an organic crystal: contribution to multistep photoactuation
    Hasebe, Shodai
    Hagiwara, Yuki
    Ueno, Takashi
    Asahi, Toru
    Koshima, Hideko
    [J]. CHEMICAL SCIENCE, 2024, 15 (03) : 1088 - 1097
  • [38] Tunable Anisotropic Thermal Expansion of a Porous Zinc(II) Metal-Organic Framework
    Grobler, Ilne
    Smith, Vincent J.
    Bhatt, Prashant M.
    Herbert, Simon A.
    Barbour, Leonard J.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2013, 135 (17) : 6411 - 6414
  • [39] Negative Linear Compressibility of a Metal-Organic Framework
    Li, Wei
    Probert, Michael R.
    Kosa, Monica
    Bennett, Thomas D.
    Thirumurugan, A.
    Burwood, Ryan P.
    Parinello, Michele
    Howard, Judith A. K.
    Cheetham, Anthony K.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2012, 134 (29) : 11940 - 11943
  • [40] Large negative thermal expansion provided by metal-organic framework MOF-5: A first-principles study
    Wang, Lei
    Wang, Cong
    Sun, Ying
    Shi, Kewen
    Deng, Sihao
    Lu, Huiqing
    [J]. MATERIALS CHEMISTRY AND PHYSICS, 2016, 175 : 138 - 145