Solvothermal synthesis and multifunctional characterization of a two-dimensional Mn(II) coordination polymer with dibromoterephthalate linkers: Dielectric, BET, and hirshfeld surface studies

A new two-dimensional Mn(II)-based coordination polymer, poly[(μ 2 -2,5-dibromobenzene-1,4-dicarboxylato-κ 2 O:O′)bis(μ 2 -formato-κ 2 O:O′)bis(N,N-dimethylformamide-κO)dimanganese(II)] ([Mn 2 (Br 2 BDC)(Fo) 2 (DMF) 2 ] n ), was synthesized solvothermally at 150 °C for 24 h and obtained in approximately 75% yield. Single-crystal X-ray diffraction revealed a trigonal centrosymmetric structure with space group P-3, in which Mn(II) adopts a slightly distorted MnO 6 octahedral coordination environment, and Br 2 BDC/formate bridges generate an extended two-dimensional framework. Hirshfeld surface analysis showed that H···H (24.8%), H···O/O···H (20.6%), Br···H/H···Br (13.0%), and Mn···O/O···Mn (9.8%) contacts make major contributions to crystal packing. Thermal analysis revealed three main decomposition stages with weight losses of 20.8%, 19.2%, and 14.1%, while nitrogen adsorption–desorption measurements indicated Type IV mesoporous behaviour with a Brunauer–Emmett–Teller (BET) surface area of 68.22 m 2 g –1 and an average pore radius of 29.19 Å. Dielectric measurements demonstrated frequency- and temperature-dependent polarization with reduced dielectric loss at higher frequencies. A.C. conductivity measurements showed frequency-dependent hopping transport, reaching approximately 1.0 × 10 –4 S m –1 in the high-frequency region at 40 °C. Complementary ESP, NCI–RDG, ELF, LOL, and IRI analyses further provided insights into the electrostatic distribution, non-covalent interactions, and electron localization within the coordination framework. The combined structural and physicochemical characteristics highlight [Mn 2 (Br 2 BDC)(Fo) 2 (DMF) 2 ] n as a promising multifunctional coordination material for potential dielectric, insulating, and adsorption-related applications.

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Journal
Next Materials
Published
2026-09-17
DOI
https://doi.org/10.1016/j.nxmate.2026.103562
Primary Topic
Metal-Organic Frameworks: Synthesis and Applications
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article
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article

Solvothermal synthesis and multifunctional characterization of a two-dimensional Mn(II) coordination polymer with dibromoterephthalate linkers: Dielectric, BET, and hirshfeld surface studies

Abror Kh. Ruzmetov, C. Balakrishnan, Abdusamat Rasulov, Voggu Kesava Reddy et al.
Next Materials
Metal-Organic Frameworks: Synthesis and Applications
article

Solvothermal synthesis and multifunctional characterization of a two-dimensional Mn(II) coordination polymer with dibromoterephthalate linkers: Dielectric, BET, and hirshfeld surface studies

Abror Kh. Ruzmetov, C. Balakrishnan, Abdusamat Rasulov, Voggu Kesava Reddy, Bakhtiyor Chori ugli Tursunov, Adkhamjon Sadullayevich Normamatov, Madumar Musurmonov, Avazbek Bakhtiyarovich Ibragimov, Kuvonch Bakhtiyor ugli Kholturaev, Yuldash Yusupbaevich Yakubov, Aziz Bakhtiyarovich Ibragimov, Khayit Khudaynazarovich Turaev, Asliddin Abdurashid ugli Ernazarov
article en

Abstract

A new two-dimensional Mn(II)-based coordination polymer, poly[(μ 2 -2,5-dibromobenzene-1,4-dicarboxylato-κ 2 O:O′)bis(μ 2 -formato-κ 2 O:O′)bis(N,N-dimethylformamide-κO)dimanganese(II)] ([Mn 2 (Br 2 BDC)(Fo) 2 (DMF) 2 ] n ), was synthesized solvothermally at 150 °C for 24 h and obtained in approximately 75% yield. Single-crystal X-ray diffraction revealed a trigonal centrosymmetric structure with space group P-3, in which Mn(II) adopts a slightly distorted MnO 6 octahedral coordination environment, and Br 2 BDC/formate bridges generate an extended two-dimensional framework. Hirshfeld surface analysis showed that H···H (24.8%), H···O/O···H (20.6%), Br···H/H···Br (13.0%), and Mn···O/O···Mn (9.8%) contacts make major contributions to crystal packing. Thermal analysis revealed three main decomposition stages with weight losses of 20.8%, 19.2%, and 14.1%, while nitrogen adsorption–desorption measurements indicated Type IV mesoporous behaviour with a Brunauer–Emmett–Teller (BET) surface area of 68.22 m 2 g –1 and an average pore radius of 29.19 Å. Dielectric measurements demonstrated frequency- and temperature-dependent polarization with reduced dielectric loss at higher frequencies. A.C. conductivity measurements showed frequency-dependent hopping transport, reaching approximately 1.0 × 10 –4 S m –1 in the high-frequency region at 40 °C. Complementary ESP, NCI–RDG, ELF, LOL, and IRI analyses further provided insights into the electrostatic distribution, non-covalent interactions, and electron localization within the coordination framework. The combined structural and physicochemical characteristics highlight [Mn 2 (Br 2 BDC)(Fo) 2 (DMF) 2 ] n as a promising multifunctional coordination material for potential dielectric, insulating, and adsorption-related applications.

Next MaterialsVol. 13
Academy of Sciences Republic of Uzbekistan (UZ), Tashkent University of Information Technology (UZ), Krishna Institute of Medical Sciences (IN), International Islamic Academy of Uzbekistan (UZ), Termez State University (UZ), National University of Uzbekistan (UZ)
Academy of Sciences Republic of Uzbekistan
Openalex Percentile: Top 26%
Metal-Organic Frameworks: Synthesis and Applications
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