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Wyświetlanie 1-6 z 6
Tytuł:
Struktura i właściwości fizykochemiczne polimerów koordynacyjnych oraz materiałów typu MOF kadmu(II) i cynku(II)
Structure and physicochemical properties of coordination polymers and MOF materials based on cadmium(II) and zinc(II)
Autorzy:
Pobłocki, Kacper
Drzeżdżon, Joanna
Jacewicz, Dagmara
Powiązania:
https://bibliotekanauki.pl/articles/1413238.pdf
Data publikacji:
2021
Wydawca:
Polskie Towarzystwo Chemiczne
Tematy:
polimery koordynacyjne
sieci metaliczno-organiczne
związki kadmu(II)
związki cynku(II)
MOF
coordination polymer
metal organic framework
cadmium(II)
compounds
zinc(II) compounds
Opis:
In 1964, J.C. Bailat Jr. was one of the first scientists who use coordination polymers in his research. He established the rules of structure and the composition of compounds containing metal ions and organic ligands connected by coordination bonds to form layered or chain structures. He compared inorganic compounds belonging to polymeric species with organic polymers. The term Metal Organic Frameworks (MOF) was first used in the publication by О. M. Yaghia. Crystalline, microporous structures contain rigid organic ligands (used interchangeably: organic building blocks) that bind metal ions. This is called reticular synthesis. MOF surface area values usually range from 1000 to 10000 m2/g-1, thus exceeding the area values of traditional porous materials such as zeolites and carbons. Metal Organic Frameworks create porous three-dimensional structures, unlike coordination polymers. Inorganic minerals from the aluminosilicate group are used in the widespread heterogeneous catalysis and processes such as: adsorption and ion exchange, while compared to Metal Organic Frameworks, shows a lower potential than zeolites, moreover, the design of structures is less precise and rational due to the lack of shape, size and control functionalization of pores. To date, MOF are the most diverse and most numerous class of porous materials. All aspects have made them ideal structures for storing fuels such as hydrogen and methane. They are perfect for catalytic reactions and are good materials for capturing pollutants, e.g. CO2. The number of publications on coordination polymers (CP), Metal Organic Frameworks (MOF) or a group of hybrid compounds (organic-inorganic) increased tenfold at the turn of 2005, which proves the growing interest in this field by scientists around the world. MOF diversity in terms of structure, size, geometry, functionality and flexibility of MOF has led to the study of over 20,000 different MOF’s over the past decade. The search for new materials consists of combining molecular building blocks with the desired physicochemical properties. To produce a solid, porous material that can be used in the construction of a "molecular scaffold", rigid organic moieties, which are described in the literature as rods, must be combined with multi-core, inelastic inorganic clusters that act as joints (also called SBU secondary building units). By design, multi-core cluster nodes are able to impart thermodynamic stability through strong covalent bonds and mechanical stability due to coordination bonds that can stabilize the position of metals in the molecule. This property contrasts with those of the unstable single coordination polymers. The size and most importantly the chemical environment of the resulting voids are determined by the length and functions of the organic unit. Therefore, adjusting the appropriate properties of the material is made by appropriate selection of the starting materials. The isoretical method made it possible to use MOF structures with large pores (98 Á and low densities (0.13 g/cm3). This method involves changing the size and nature of Metal Organic Frameworks without changing the topology of their substrate. Thanks to this, it was possible to include large molecules such as vitamins (e.g. B12) or proteins (e.g. green fluorescence protein) into their structure and use the pores as reaction vessels. The thermal and chemical stability of many MOFs has made them amenable to functionalization by post-synthetic covalent organic complexes with metals. These properties make it possible to significantly improve gas storage in MOF structures and have led to their extensive research into the catalysis of organic reactions, activation of small molecules such as hydrogen, methane and water, gas separation, biomedical imaging and conductivity. Currently, methods of producing nanocrystals and MOF super crystals for their incorporation into specialized devices are being developed. Crystalline structures of MOF’s are formed by creating strong bonds between inorganic and organic units. Careful selection of MOF components produces crystals of giant porosity, high thermal and chemical stability. These features allow the interior of the MOF to be chemically altered to separate and store gases. The uniqueness of MOF materials is that they are the only solids to modify and increase the particle size without changing the substrate topology.
Źródło:
Wiadomości Chemiczne; 2021, 75, 7-8; 1041-1073
0043-5104
2300-0295
Pojawia się w:
Wiadomości Chemiczne
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Związki kompleksowe na bazie Gd(III), W(IV), Mn(II), Eu(III) i 99mTc wykorzystywane w diagnostyce medycznej
Complex compounds based on Gd(III), W(IV), Mn(II), Eu(III) and 99mTc used in medical diagnostics
Autorzy:
Pobłocki, Kacper
Drzeżdżon, Joanna
Jacewicz, Dagmara Elżbieta
Powiązania:
https://bibliotekanauki.pl/articles/2200431.pdf
Data publikacji:
2022
Wydawca:
Polskie Towarzystwo Chemiczne
Tematy:
obrazowanie medyczne
związki kompleksowe
magnetyczny rezonans jądrowy
tomografia emisyjna pojedynczego fotonu
rentgenografia
obrazowanie optyczne
medical imaging
complex compounds
magnetic resonance imaging
single-photon emission computed tomography
rentgenography
optical imaging
Opis:
Recently, hospitals have undergone major changes. Minimally invasive surgery is becoming more common, and numerous innovations are emerging, such as interventional radiology (IVR) and hybrid surgery. In order to keep pace with changes in this extremely dynamic field, scientist keep working on the development of imaging technology and the improvement of image display devices and new compounds acting as contrast agent (CA). In medicine, metals are used for diagnostic and therapeutic purposes. Inorganic elements are increasingly used as contrast agents in medical imaging due to their unique physicochemical properties. In this review, we would like to focus on the latest literature reports that contain information on Gd(III), W(IV), Mn(II), Eu(III) and 99mTc used in medical diagnostics.
Źródło:
Wiadomości Chemiczne; 2022, 76, 9-10; 803--823
0043-5104
2300-0295
Pojawia się w:
Wiadomości Chemiczne
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Właściwości fizykochemiczne, biologiczne i aplikacyjne izocyjanków. Część 2., Zastosowanie w medycynie i materiałoznawstwie
Physicochemical, biological and application properties of isocyanides. Part 2., Medical and materials science applications
Autorzy:
Pawlak, Marta
Pobłocki, Kacper
Drzeżdżon, Joanna
Jacewicz, Dagmara
Powiązania:
https://bibliotekanauki.pl/articles/2200417.pdf
Data publikacji:
2023
Wydawca:
Polskie Towarzystwo Chemiczne
Tematy:
isocyanides
medicine
pharmaceuticals
polymers
IBPs
izocyjanki
medycyna
farmaceutyki
polimery
Opis:
Isocyanides are compounds with a triple bond between a nitrogen atom and a carbon atom. Thanks to this structure, there is an electron lone pair on the carbon atom, which allows these compounds to participate in many reactions in organic chemistry. Due to their properties and the number of reactions in which they can participate, this group has been applied in medicine. Both natural and synthetic isocyanides have antifungal, antibacterial, antimalarial, antiviral and anticancer properties. The reactions involving them allow for a much simpler and faster synthesis of many pharmaceuticals. In addition, these compounds have application properties, making it possible to obtain polymers. Despite the polymerization of these compounds raising many objections, many polymeric materials based on isocyanides have found applications both in science and in everyday life.
Źródło:
Wiadomości Chemiczne; 2023, 77, 3-4; 239--256
0043-5104
2300-0295
Pojawia się w:
Wiadomości Chemiczne
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Właściwości fizykochemiczne, biologiczne i aplikacyjne izocyjanków. Część 1., Pochodzenie, otrzymywanie i reakcje chemiczne
Physicochemical, biological and application properties of isocyanides, Part 1., Origins, derivation and chemical reactions
Autorzy:
Pawlak, Marta
Pobłocki, Kacper
Drzeżdżon, Joanna
Jacewicz, Dagmara
Powiązania:
https://bibliotekanauki.pl/articles/2200424.pdf
Data publikacji:
2023
Wydawca:
Polskie Towarzystwo Chemiczne
Tematy:
isocyanides
isocyanates
isonitriles
electrophile nucleophile
reactions of isocyanides
izocyjanki
izocyjaniany
izonitryle
elektrofil
nukleofil
reakcje izocyjanków
Opis:
Isocyanides are the most unusual and unique group in organic chemistry. They possess an unusual valence structure and reactivity. Isocyanides are the only class of stable organic compounds with a formal divalent carbon, which allows them to be the subject of virtually all reactions in organic chemistry. It can be either an electrophile, a nucleophile, a caraben and a radical acceptor. We distinguish between naturally occurring and synthetically produced isocyanides. Both groups of isocyanides have become recently the subject of scientific interest.
Źródło:
Wiadomości Chemiczne; 2023, 77, 3-4; 215--237
0043-5104
2300-0295
Pojawia się w:
Wiadomości Chemiczne
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Katalizatory wykorzystywane w syntezie biodiesla
Catalysts used in biodiesel synthesis
Autorzy:
Pobłocki, Kacper
Walczak, Juliusz
Drzeżdżon, Joanna
Jacewicz, Dagmara Elżbieta
Powiązania:
https://bibliotekanauki.pl/articles/2200588.pdf
Data publikacji:
2022
Wydawca:
Polskie Towarzystwo Chemiczne
Tematy:
katalizator
biodiesel
synteza
biopaliwa
energia odnawialna
catalyst
synthesis
biofuels
renewable energy
Opis:
Rising prices of electricity, conventional fuels and heating require decisive steps in the further development of technologies based on renewable energy sources. These include geothermal- ; hydrothermal- ; aerothermal- ; and solar energy. Due to the fact that the petrochemical industry is one of the fastest growing branches of the economy, we would like to expand on the topic related to biofuels. Biodiesel is an alternative fuel similar to conventional diesel. It is usually made from animal fat, vegetable oil and waste cooking oil. Its biodegradability, nontoxicity and lack of sulfur and aroma content make it superior to conventional gasoline and diesel. During fuel consumption, it emits fewer air pollutants and greenhouse gases other than nitrogen oxides. In this literature review, we will discuss the latest trends in the world related to catalysts used in biodiesel synthesis.
Źródło:
Wiadomości Chemiczne; 2022, 76, 3-4; 129--144
0043-5104
2300-0295
Pojawia się w:
Wiadomości Chemiczne
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Właściwości katalityczne i biomedyczne związków zawierających jony rutenu (II) oraz Rutenu (III)
Catalytic and biomedical properties of compound containing ruthenium (II) and ruthenium (III) ions
Autorzy:
Pobłocki, Kacper
Pawlak, Marta
Walczak, Juliusz
Drzeżdżon, Joanna
Jacewicz, Dagmara Elżbieta
Powiązania:
https://bibliotekanauki.pl/articles/27310039.pdf
Data publikacji:
2023
Wydawca:
Polskie Towarzystwo Chemiczne
Tematy:
związki kompleksowe Ru(II)
związki kompleksowe Ru(III)
właściwości biomedyczne
właściwości katalityczne
Ru(II) complex compounds
Ru(III) complex compounds
biomedical properties
catalytic properties
Opis:
Ruthenium complexes appear in scientific publications mainly as catalysts in the olefins metathesis process. In this review, we want to indicate the research niche regarding the use of ruthenium(II) and ruthenium(III) complexes in other catalytic processes, i.e. polymerization or epoxidation of olefins and depolymerization. We would like to combine the catalytic properties of ruthenium(II,III) complex compounds with their biomedical activity due to the growing problem of drug resistance (including antibiotic resistance). Scientists have been designing new metallopharmaceuticals exhibiting biological activity for several years, therefore this requires a critical review of the literature. The main goal of designing new metallodrugs is to create compounds with new or stronger biological properties compared to free ligands. Ruthenium compounds are considered potential substitutes for known drugs. In particular, Ru(II) and Ru(III) based complexes have reduced toxicity and can be tolerated in vivo. In addition, a wide spectrum of ruthenium oxidation states, a different mechanism of action and the kinetics of ligand substitution increase the advantage over coordination complex compounds based on platinum. In conclusion, in this review, we will focus on the latest reports from the literature on the catalytic properties and biomedical activity of ruthenium(II) and ruthenium(III) chemical compounds.
Źródło:
Wiadomości Chemiczne; 2023, 77, 5-6; 569--595
0043-5104
2300-0295
Pojawia się w:
Wiadomości Chemiczne
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-6 z 6

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