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Keywords = Cerium coordination polymer

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17 pages, 6837 KiB  
Article
Synergistic Therapeutic Effects of D-Mannitol–Cerium–Quercetin (Rutin) Coordination Polymer Nanoparticles on Acute Lung Injury
by Yusheng Zhang, Hong Wang, Ruiying Yang, Ying Zhang, Yao Chen, Cuiping Jiang and Xianyu Li
Molecules 2024, 29(12), 2819; https://doi.org/10.3390/molecules29122819 - 13 Jun 2024
Cited by 2 | Viewed by 1876
Abstract
Acute lung injury (ALI) remains a significant global health issue, necessitating novel therapeutic interventions. In our latest study, we pioneered the use of D-mannitol–cerium–quercetin/rutin coordination polymer nanoparticles (MCQ/R NPs) as a potential treatment for ALI. The MCQ/R NPs, which integrate rutin and quercetin [...] Read more.
Acute lung injury (ALI) remains a significant global health issue, necessitating novel therapeutic interventions. In our latest study, we pioneered the use of D-mannitol–cerium–quercetin/rutin coordination polymer nanoparticles (MCQ/R NPs) as a potential treatment for ALI. The MCQ/R NPs, which integrate rutin and quercetin for their therapeutic potential and D-mannitol for its pulmonary targeting, displayed exceptional efficacy. By utilizing cerium ions for optimal nanoparticle assembly, the MCQ/R NPs demonstrated an average size of less than 160 nm. Impressively, these nanoparticles outperformed conventional treatments in both antioxidative capabilities and biocompatibility. Moreover, our in vivo studies on LPS-induced ALI mice showed a significant reduction in lung tissue inflammation. This groundbreaking research presents MCQ/R NPs as a promising new approach in ALI therapeutics. Full article
(This article belongs to the Special Issue Synthesis of Nanomaterials and Their Applications in Biomedicine)
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22 pages, 6971 KiB  
Article
Divalent Europium, NIR and Variable Emission of Trivalent Tm, Ho, Pr, Er, Nd, and Ce in 3D Frameworks and 2D Networks of Ln–Pyridylpyrazolates
by Heba Youssef, Jonathan Becker, Clemens Pietzonka, Ilya V. Taydakov, Florian Kraus and Klaus Müller-Buschbaum
Chemistry 2023, 5(2), 1006-1027; https://doi.org/10.3390/chemistry5020069 - 28 Apr 2023
Cited by 2 | Viewed by 2746
Abstract
The redox reactions of various lanthanide metals with 3-(4-pyridyl)pyrazole (4-PyPzH) or 3-(3-pyridyl)pyrazole (3-PyPzH) ligands yield the 2D network 2[Eu(4-PyPz)2(Py)2] containing divalent europium, the 3D frameworks 3[Ln(4-PyPz)3] and 3[Ln(3-PyPz)3] for [...] Read more.
The redox reactions of various lanthanide metals with 3-(4-pyridyl)pyrazole (4-PyPzH) or 3-(3-pyridyl)pyrazole (3-PyPzH) ligands yield the 2D network 2[Eu(4-PyPz)2(Py)2] containing divalent europium, the 3D frameworks 3[Ln(4-PyPz)3] and 3[Ln(3-PyPz)3] for trivalent cerium, praseodymium, neodymium, holmium, erbium, and thulium as well as 3[La(4-PyPz)3], and the 2D networks 2[Ln(4-PyPz)3(Py)] for trivalent cerium and thulium and 2[Ln2(4-PyPz)6]·Py for trivalent ytterbium and lutetium. The 18 lanthanide coordination polymers were synthesized under solvothermal conditions in pyridine (Py), partly acting as a co-ligand for some networks. The compounds exhibit a variety of luminescence properties, including metal-centered 4f–4f/5d–4f emission in the visible and near-infrared spectral range, metal-to-ligand energy transfer, and ligand-centered fluorescence and phosphorescence. The anionic ligands 3-PyPz and 4-PyPz serve as suitable antennas for lanthanide-based luminescence in the visible and near-infrared range through effective sensitization followed by emission through intra–4f transitions of the trivalent thulium, holmium, praseodymium, erbium, and neodymium. 2[Ce(4-PyPz)3(Py)], 3[Ce(4-PyPz)3], and 3[Ce(3-PyPz)3] exhibit strong degrees of reduction in the 5d excited states that differ in intensity compared to the ligand-based emission, resulting in a distinct emission ranging from pink to orange. The direct current magnetic studies show magnetic isolation of the lanthanide centers in the crystal lattice of 3[Ln(3-PyPz)3], Ln = Dy, Ho, and Er. Full article
(This article belongs to the Special Issue Commemorating 150 Years of Justus von Liebig’s Legacy)
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21 pages, 4731 KiB  
Article
3–(2–Pyridyl)pyrazole Based Luminescent 1D-Coordination Polymers and Polymorphic Complexes of Various Lanthanide Chlorides Including Orange-Emitting Cerium(III)
by Heba Youssef, Alexander E. Sedykh, Jonathan Becker, Ilya V. Taydakov and Klaus Müller-Buschbaum
Inorganics 2022, 10(12), 254; https://doi.org/10.3390/inorganics10120254 - 10 Dec 2022
Cited by 3 | Viewed by 2727
Abstract
A series of 18 lanthanide-containing 1D-coordination polymers 1[Ln2(2–PyPzH)4Cl6], Ln = La, Nd, Sm, dinuclear polymorphic complexes α–, β–[Ln2(2–PyPzH)4Cl6], Ln = Sm, Eu, Gd, α–[Tb2(2–PyPzH)4Cl6 [...] Read more.
A series of 18 lanthanide-containing 1D-coordination polymers 1[Ln2(2–PyPzH)4Cl6], Ln = La, Nd, Sm, dinuclear polymorphic complexes α–, β–[Ln2(2–PyPzH)4Cl6], Ln = Sm, Eu, Gd, α–[Tb2(2–PyPzH)4Cl6], and [Gd2(2–PyPzH)3(2–PyPz)Cl5], mononuclear complexes [Ce(2–PyPzH)3Cl3], [Ln(2–PyPzH)2Cl3], Ln = Tb, Dy, Ho, and Er, and salt-like complexes [Gd3(2–PyPzH)8Cl8]Cl and [PyH][Tb(2–PyPzH)2Cl4] were obtained from the reaction of the respective lanthanide chloride with the 3–(2–pyridyl)pyrazole (2–PyPzH) ligand at different temperatures. An antenna effect through ligand-to-metal energy transfer was observed for several products, leading to the highest luminescence efficiency displayed by a quantum yield of 92% in [Tb(2–PyPzH)2Cl3]. The Ce3+ ion in the complex [Ce(2–PyPzH)3Cl3] exhibits a bright and orange 5d-based broadband emission with a maximum at around 600 nm, marking an example of a strong reduction of the 5d-excited states of Ce(III). The absorption spectroscopy shows ion-specific 4f–4f transitions, which can be assigned to Nd3+, Sm3+, Eu3+, Dy3+, Ho3+, and Er3+ in a wide spectral range from UV–VIS to the NIR region. Full article
(This article belongs to the Special Issue Metal Complexes with N-donor Ligands)
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11 pages, 3383 KiB  
Article
Novel Cerium Bisphosphinate Coordination Polymer and Unconventional Metal–Organic Framework
by Jan Rohlíček, Daniel Bůžek, Petr Brázda, Libor Kobera, Jan Hynek, Jiří Brus, Kamil Lang and Jan Demel
Crystals 2019, 9(6), 303; https://doi.org/10.3390/cryst9060303 - 12 Jun 2019
Cited by 9 | Viewed by 5183
Abstract
The first Ce(III)-based coordination polymer ICR-9 (ICR stands for Inorganic Chemistry Řež), with the formula Ce2(C8H10P2O4)3, containing ditopic phenylene-1,4-bis(methylphosphinic acid) linker, was synthetized under solvothermal conditions. The crystal structure, solved using [...] Read more.
The first Ce(III)-based coordination polymer ICR-9 (ICR stands for Inorganic Chemistry Řež), with the formula Ce2(C8H10P2O4)3, containing ditopic phenylene-1,4-bis(methylphosphinic acid) linker, was synthetized under solvothermal conditions. The crystal structure, solved using electron diffraction tomography (EDT), revealed 2D layers of octahedrally coordinated cerium atoms attached together through O-P-O bridges. The structure is nonporous, however, the modification of synthetic conditions led to unconventional metal–organic framework (or defective amorphous phase) with a specific surface area up to approximately 400 m2 g-1. Full article
(This article belongs to the Special Issue Metal Phosphonates and Phosphinates)
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12 pages, 3172 KiB  
Article
Cerium Coordination Polymer Based Composite Mimicking Peroxidase for Detection of Nitroaniline
by Xi Wang, Kunkun Zheng and Peijun Ji
Catalysts 2017, 7(7), 206; https://doi.org/10.3390/catal7070206 - 7 Jul 2017
Cited by 2 | Viewed by 4937
Abstract
Cerium coordination polymer (CeCP) was synthesized with 1,3,5-benzenetricarboxylic acid as the ligand. By using the carboxyl groups on the surface of CeCP as the anchors, platinum nanoparticles were formed on CeCP forming the composite CeCP@Pt. The composite was characterized by measuring TEM images, [...] Read more.
Cerium coordination polymer (CeCP) was synthesized with 1,3,5-benzenetricarboxylic acid as the ligand. By using the carboxyl groups on the surface of CeCP as the anchors, platinum nanoparticles were formed on CeCP forming the composite CeCP@Pt. The composite was characterized by measuring TEM images, and EDS and XPS spectra. CeCP@Pt was used to catalyze the oxidation of 3,3,5,5-tetramethylbenzidine in the presence of H2O2. The activity assay demonstrated that CeCP@Pt exhibited an activity similar to that of horseradish peroxidase, but with a much higher activity. CeCP@Pt was utilized to detect nitroaniline, being able to detect trace amount of nitroaniline (>3.125 × 10−4 mg/mL). Full article
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