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Cadmium Metal–Organic Frameworks Based on Ditopic Triazamacrocyclic Linkers: Unusual Structural Features and Selective CO 2 Capture
2017
International audience; Two three-dimensional cadmium metal organic frameworks with general formula [Cd-2(L-1)(H2O)(3)](NO3)(0.7)(HCOO)(0.2)Br-0.1 (Cd2L1, L-1 = 1,4,7-tris(4-carboxybenzy1)-1,4,7-triazacyclononane) and Cd(HL2)(H2O)(2) (CdL2, L-2 = 1,4,7-tris(3-(4-benzoate)prop-2-yn-1-yl)-1,4,7-triazacydononane) based on 1,4,7-triazacyclononane N-functionalized by different arylcarboxylic acids were prepared under solvothermal conditions and characterized by single crystal X-ray analysis and porosity measurements. The crystal structure of Cd2L1 reveals a cationic net with a bcs topology,. and nodes are constituted by dinuclear cadmium complexes, in which each cadmium atom adopts a hexacoordin…
Properties of zeros of solutions to third order nonlinear differential equations
2013
We investigate the behavior of zeros of solutions to the certain type of third order nonlinear differential equations. We show that the behavior of zeros may be rather different and depend on the nature of nonlinearity in the equation. Main results in the paper are illustrated with a number of examples.
Zirga simbolika latviešu folklorā
2016
Bakalaura darbs ir pētījums par zirga simboliku un funkcijām latviešu folklorā, akcentējot tautasdziesmu tekstus. Darbam ir divas nodaļas ar apakšnodaļām. Pētnieciskā darba mērķis ir latviešu folkloras materiālā rast kopējo priekšstatu par zirgu, tā lomu un nozīmi tradicionālajā sabiedrībā caur tā simboliku un raksturot to tematiskos blokos, tādā veidā nodalot tā funkcionalitāti. Pētnieciskā mērķa īstenošanai autore pastiprināti pievērsusies tautasdziesmu tekstu simbolikai. Darba gaitā secināts, ka zirga pastāvīgā klātbūtne arhaiskā cilvēka apziņā ir ne tikai cēlusi zirga statusu, padarot to par auglības un darba simbolu, bet arī pielīdzinājusi un piedēvējusi zirgu dievību pasaulei kā pastā…
CCDC 1578284: Experimental Crystal Structure Determination
2018
Related Article: Arnau Call, Federico Franco, Noufal Kandoth, Sergio Fernández, María González-Béjar, Julia Pérez-Prieto, Josep M. Luis, Julio Lloret-Fillol|2018|Chemical Science|9|2609|doi:10.1039/C7SC04328G
CCDC 1578288: Experimental Crystal Structure Determination
2018
Related Article: Arnau Call, Federico Franco, Noufal Kandoth, Sergio Fernández, María González-Béjar, Julia Pérez-Prieto, Josep M. Luis, Julio Lloret-Fillol|2018|Chemical Science|9|2609|doi:10.1039/C7SC04328G
CCDC 1917751: Experimental Crystal Structure Determination
2019
Related Article: Víctor García-López, Mario Palacios-Corella, Verónica Gironés-Pérez, Carlos Bartual-Murgui, José Antonio Real, Eric Pellegrin, Javier Herrero-Martín, Guillem Aromí, Miguel Clemente-León, Eugenio Coronado|2019|Inorg.Chem.|58|12199|doi:10.1021/acs.inorgchem.9b01526
CCDC 2073463: Experimental Crystal Structure Determination
2021
Related Article: Lorena Martínez, Nicolás Veiga, Carla Bazzicalupi, Antonio Bianchi, Francesc Lloret, Carlos Kremer, Raúl Chiozzone|2021|Polyhedron|208|115406|doi:10.1016/j.poly.2021.115406
CCDC 1949614: Experimental Crystal Structure Determination
2020
Related Article: Justin J. Dressler, Abel Cárdenas Valdivia, Ryohei Kishi, Gabriel E. Rudebusch, Austin M. Ventura, Brian E. Chastain, Carlos J. Gómez-García, Lev N. Zakharov, Masayoshi Nakano, Juan Casado, Michael M. Haley|2020|Cell Press: Chem|6|1353|doi:10.1016/j.chempr.2020.02.010
CCDC 1964314: Experimental Crystal Structure Determination
2020
Related Article: Justin J. Dressler, Abel Cárdenas Valdivia, Ryohei Kishi, Gabriel E. Rudebusch, Austin M. Ventura, Brian E. Chastain, Carlos J. Gómez-García, Lev N. Zakharov, Masayoshi Nakano, Juan Casado, Michael M. Haley|2020|Cell Press: Chem|6|1353|doi:10.1016/j.chempr.2020.02.010
CCDC 2019551: Experimental Crystal Structure Determination
2020
Related Article: Araceli Aquino, Francisco J. Caparrós, Gabriel Aullón, Jas S. Ward, Kari Rissanen, Yongsik Jung, Hyeonho Choi, João Carlos Lima, Laura Rodríguez|2020|Chem.-Eur.J.|27|1810|doi:10.1002/chem.202004051