Geometry Optimization and Charge Density Distribution of Single Layer of ZN-Based Metal-Organic Framework

2018 ◽  
Vol 52 (5) ◽  
pp. 597-599
Author(s):  
N. Y. Senkevich ◽  
I. I. Vrubel ◽  
R. G. Polozkov ◽  
I. A. Shelykh
Author(s):  
N.Y. Senkevich ◽  
I.I. Vrubel ◽  
R.G. Polozkov ◽  
I.A. Shelykh

AbstractThe set of theoretical approaches were used to obtain the optimized geometries, electronic structure and charge density of single layer of metal-organic framework based on Zn [Zn_2(TBAP_ y )(H_2O)_2 · 3.5DEF]_ n (MOF-Zn). Infinite monolayer composed of the unit cell of the MOF-Zn was considered. Ground state properties were researched using density functional theory with BLYP and PBE exchange-correlation functionals. The influence of the type of these approaches on the spatial structure and charge density was discussed.


2020 ◽  
Vol 124 (49) ◽  
pp. 27017-27023
Author(s):  
Zi’Ang Gao ◽  
Yifan Gao ◽  
Muqing Hua ◽  
Jing Liu ◽  
Li Huang ◽  
...  

2009 ◽  
pp. 6294 ◽  
Author(s):  
Neena S. John ◽  
Camilla Scherb ◽  
Maryiam Shöâeè ◽  
Michael W. Anderson ◽  
Martin P. Attfield ◽  
...  

2021 ◽  
Vol 9 (1) ◽  
pp. 546-555
Author(s):  
Lei-Lei Liu ◽  
Jing Chen ◽  
Yan Zhang ◽  
Cai-Xia Yu ◽  
Wei Du ◽  
...  

A single-layer of 2D metal–organic framework nanosheet was elaborately prepared by a facile exfoliation approach and showed unprecedented performance in removing congo red.


2021 ◽  
Author(s):  
Jintong Liu ◽  
Jing Huang ◽  
Lei Zhang ◽  
Jianping Lei

We review the general principle of the design and functional modulation of nanoscaled MOF heterostructures, and biomedical applications in enhanced therapy.


2020 ◽  
Author(s):  
Jesse Park ◽  
Brianna Collins ◽  
Lucy Darago ◽  
Tomce Runcevski ◽  
Michael Aubrey ◽  
...  

<b>Materials that combine magnetic order with other desirable physical attributes offer to revolutionize our energy landscape. Indeed, such materials could find transformative applications in spintronics, quantum sensing, low-density magnets, and gas separations. As a result, efforts to design multifunctional magnetic materials have recently moved beyond traditional solid-state materials to metal–organic solids. Among these, metal–organic frameworks in particular bear structures that offer intrinsic porosity, vast chemical and structural programmability, and tunability of electronic properties. Nevertheless, magnetic order within metal–organic frameworks has generally been limited to low temperatures, owing largely to challenges in creating strong magnetic exchange in extended metal–organic solids. Here, we employ the phenomenon of itinerant ferromagnetism to realize magnetic ordering at <i>T</i><sub>C</sub> = 225 K in a mixed-valence chromium(II/III) triazolate compound, representing the highest ferromagnetic ordering temperature yet observed in a metal–organic framework. The itinerant ferromagnetism is shown to proceed via a double-exchange mechanism, the first such observation in any metal–organic material. Critically, this mechanism results in variable-temperature conductivity with barrierless charge transport below <i>T</i><sub>C</sub> and a large negative magnetoresistance of 23% at 5 K. These observations suggest applications for double-exchange-based coordination solids in the emergent fields of magnetoelectrics and spintronics. Taken together, the insights gleaned from these results are expected to provide a blueprint for the design and synthesis of porous materials with synergistic high-temperature magnetic and charge transport properties. </b>


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