Dataset: pzc_ir_pxrd_sem_lls_uvvis_sim.zip, 16.46 MB Access Condition: Access restricted to higher education institution's students and staff in RH Description: Set eksperimentalnih podataka (PXRD, IR, SEM, LLS, UV-Vis, simulacije). (Croatian)
Documentation: pseudohalogen-mehanokem-chem_comm-esi-v7.5.docx, 3.09 MB Access Condition: Access restricted to higher education institution's students and staff in RH Description: Electronic supplementary information of the paper detailing experimental methods and procedures (English)
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Cite this document
Jakupec, N. & Palčić, A. (2025). Encapsulation of (pseudo)halogen metal complexes in zeolite Y cages by mechanochemistry [Data set]. https://urn.nsk.hr/urn:nbn:hr:241:777970.
Jakupec, Nikola and Ana Palčić. Encapsulation of (pseudo)halogen metal complexes in zeolite Y cages by mechanochemistry. Institut Ruđer Bošković, 2025. 11 Mar 2025. https://urn.nsk.hr/urn:nbn:hr:241:777970.
Jakupec, Nikola, and Ana Palčić. 2025. Encapsulation of (pseudo)halogen metal complexes in zeolite Y cages by mechanochemistry. Institut Ruđer Bošković. https://urn.nsk.hr/urn:nbn:hr:241:777970.
Jakupec, N. and Palčić, A. 2025. Encapsulation of (pseudo)halogen metal complexes in zeolite Y cages by mechanochemistry. Institut Ruđer Bošković. [Online]. [Accessed 11 March 2025]. Available from: https://urn.nsk.hr/urn:nbn:hr:241:777970.
Jakupec N, Palčić A. Encapsulation of (pseudo)halogen metal complexes in zeolite Y cages by mechanochemistry. [Internet]. Institut Ruđer Bošković; 2025, [cited 2025 March 11] Available from: https://urn.nsk.hr/urn:nbn:hr:241:777970.
N. Jakupec and A. Palčić, Encapsulation of (pseudo)halogen metal complexes in zeolite Y cages by mechanochemistry, Institut Ruđer Bošković, 2025. Accessed on: Mar 11, 2025. Available: https://urn.nsk.hr/urn:nbn:hr:241:777970.
Scientific / art field, discipline and subdiscipline
NATURAL SCIENCES Chemistry Inorganic Chemistry
Abstract (english)
In an effort to introduce alternative methods of post-synthetic modification of zeolites, mechanochemistry was utilized for ion-exchange and synthesis of transition metal halide and pseudohalide complexes within FAU-type zeolite cages. Structural characterization of the guest molecules shows a variety of synthetized compounds inside the zeolite cavities.
Methods (english)
PXRD patterns of the samples were collected using PANalytical Aeris benchtop powder diffractometer (CuKα radiation with Ni filter; λ= 1.5418 Å, 45 kV, 40 mA) in Bragg-Brentano geometry in a 5°-50° 2θ range (0.025° step). Particle size distribution (PSD) curves were obtained by laser light scattering analysis using Malvern Mastersizer 2000 laser light scattering granulometer. The samples were exposed to ultrasonication during the measurement to prevent agglomeration. Scanning electron microscopy (SEM) images were acquired on a Jeol JSM 7000F scanning electron microscope. Mid-IR spectra were collected on a PerkinElmer Frontier FTIR spectrometer with an attenuated total reflection (ATR) addon in the range of 4000-400 cm-1. Far-IR spectra were collected on a ThermoFisher Nicolet iS50 FTIR spectrometer with an ATR add-on in the range of 800-110 cm-1. Solid-state UV-Vis spectra were obtained by measurement on a Thermo Scientific Evolution 350 UV-Vis spetrometer. Data was visualized in MagicPlot Student and Spectragryph software packages.
Number: UIP-2019-04-4977 Title (croatian): Zeoliti s malim šupljinama modificirani bakrom pogodni za primjenu u zaštiti okoliša Title (english): Copper-modified Small-pore Zeolites Suitable for Environmental Applications Acronym: SMALLPORE Leader: Ana Palčić Jurisdiction: Croatia Funding stream: Installation Research Projects