Hybrid perovskites are emerging as promising candidates for thermal management and thermal energy storage (TES). Compared to traditional solid–liquid phase change materials, these hybrids offer tunable structures, enhanced thermal conductivity, and comparable latent heats. This study extends a rapid, scalable microwave (MW)-assisted synthesis to a broader suite of organic–inorganic hybrid perovskites with the general formula (C12H25NH3)2MCl4 (where M = Zn, Cu, Mn). Beyond broadening the synthetic scope, we provide a comprehensive comparative analysis of how metal center substitutions influence material properties. The structural integrity, morphology, and phase purity were systematically characterized via XRD, SEM, EDX, and FTIR, while thermal behaviors were evaluated using DSC and TGA. The results demonstrate that the specific metal ion significantly dictates both the crystalline structure and phase transition thermodynamics. Transition enthalpies ranged from 58 to 112 J/g, with peak temperatures between 46 and 74 °C. Thermal stability also varied across the series, with decomposition onset occurring between 270 and 335 °C. By elucidating how metal selection steers performance, this work establishes MW-assisted synthesis as a versatile, energy-efficient platform for the tailored fabrication of advanced solid–solid phase change materials for practical energy storage applications.
Metal organic framework (MOF) structures are crystalline materials composed of metal ions and organic ligands, known for their large surface area and chemical stability. When synthesized from two metals and a single organic ligand, bimetallic MOF (BMOF) structures are formed, which exhibit significant properties such a...
Utku Bulut Şimşek· Osmaniye Korkut Ata Üniversi...· 0 citations
Abstract MXenes, a family of two-dimensional carbides and nitrides based on transition metals derived from MAX phases, have emerged as promising materials for solar energy conversion due to their high metallic conductivity and tunable surface terminations. A sustainable route for synthesizing vanadium-based Bio-MXene (...
V. Patel, R. N. Singh, P. P. Singh et al.· Pure and Applied Chemistry· 0 citations
Hydrogen presents a compelling solution to the growing energy scarcity and environmental problems as a clean and sustainable energy source. Among various storage methods, solid-state hydrogen storage holds promise but necessitates extensive investigation. However, to enhance the performance of these systems, metal...
Muhammad Adnan Samhi, Shafaat Hussain Mirza, Sikander Azam et al.· Scientific Reports· 0 citations
Herein, we have developed hierarchical ZnFe2O4 micro/nanostructures, synthesized via solvent-evaporation-induced Zn2+ deposition by pyrolysis of a Zn salt and Fe-based metal-organic framework. The synthesized material was characterized by various spectroscopic techniques such as powder X-ray diffraction (PXRD), scannin...
In this study, a series of (LaxYb1-x)2Zr2O7 powders with [Formula: see text] were synthesized by a co-precipitation method to investigate the effect of rare earth (RE) site substitution (La3⁺ and Yb3⁺) on phase stability, structural disorder, and high-temperature sintering behavior for thermal barrier coating (TBC) app...
Mobina Eslami, M. Bahamirian, M. Farvizi· Scientific Reports· 0 citations
Spinel Co3O4 materials were successfully synthesized through the thermal decomposition of Co-BTC metal-organic frameworks prepared by hydrothermal and microwave-assisted methods. The structural characteristics and physicochemical properties of the materials were investigated by XRD, EDX, FTIR, SEM, and N₂ adsorption-de...
Bằng Nguyễn Văn, Phương Nguyễn Thị· Journal of Military Science...· 0 citations
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