0000000001301426

AUTHOR

Cristian Celis-barros

Spectroscopic studies of the interaction of 3-(2-thienyl)-[1,2,3]triazolo[1,5-a]pyridine with 2,6-dimethyl-β-cyclodextrin and ctDNA

The inclusion complexation behavior of 3-(2-thienyl)-[1,2,3]triazolo[1,5-a] pyridine (TTP) with native β-cyclodextrin and derivatized cyclodextrins was investigated. Stability constants for complexes with 1 : 1 molar ratios were calculated from phase solubility diagrams. The solubilizing efficiency of the TTP inclusion complex is enhanced in the order of DMβCD > HPβCD > βCD. The TTP-DMβCD inclusion complex was further characterized in solution by means of absorption, fluorescence, 2D NMR and molecular modeling methods. The thermodynamic studies indicate that the inclusion of TTP into the cyclodextrin cavity is mainly an enthalpy-driven process. The 2D NMR studies revealed that the thienyl m…

research product

Supramolecular assemblies of phenyl-pyridyl-triazolopyridine and β-cyclodextrin as sensor of divalent cations in aqueous solution

The chemosensor 3-phenyl-7-(pyrid-2-yl)-[1,2,3]triazolo[1,5-a]pyridine (PhPTP) used in combination with two different cyclodextrins, enable its solubilization and stabilization in aqueous solution. The behavior of the inclusion complex, and its binding ability in both cyclodextrins were investigated by means of absorption and fluorescence spectroscopy. The best results were obtained for PhPTP-DMβCD assembly, and its orientation in the DMβCD nano cavity was obtained by 2D-NMR. This inclusion geometry was confirmed by docking studies. The binary complex was proved as chemosensor upon the presence of different divalent cations in aqueous solutions. The PhPTP-DMβCD system, displays a high sensi…

research product

Understanding the Stabilization and Tunability of Divalent Europium 2.2.2B Cryptates

Lanthanides such as europium with more accessible divalent states are useful for studying redox stability afforded by macrocyclic organic ligands. Substituted cryptands, such as 2.2.2B cryptand, that increase the oxidative stability of divalent europium also provide coordination environments that support synthetic alterations of Eu(II) cryptate complexes. Two single crystal structures were obtained containing nine-coordinate Eu(II) 2.2.2B cryptate complexes that differ by a single coordination site, the occupation of which is dictated by changes in reaction conditions. A crystal structure containing a [Eu(2.2.2B)Cl]+ complex is obtained from a methanol-THF solvent mixture, while a methanol-…

research product

Influence of Outer-Sphere Anions on the Photoluminescence from Samarium(II) Crown Complexes.

Three samarium(II) crown ether complexes, [Sm(15-crown-5)2]I2 (1), [Sm(15-crown-5)2]I2·CH3CN (2), and [Sm(benzo-15-crown-5)2]I2 (3), have been prepared via the reaction of SmI2 with the corresponding crown ether in either THF or acetonitrile in good to moderate yields. The compounds have been characterized by single crystal X-ray diffraction and a variety of spectroscopic techniques. In all cases, the Sm(II) centers are sandwiched between two crown ether molecules and are bound by the five etheric oxygen atoms from each crown ether to yield 10-coordinate environments. Despite the higher symmetry crystal class of 1 (R3c), the samarium center resides on a general position, whereas in 2 and 3 …

research product

Detecting ni(ii) in aqueous solution by 3-(2-pyridyl)-[1,2,3]triazolo[1,5-a]pyridine and dimethyl-beta-cyclodextrin

Abstract A new supramolecular sensitizer for nickel(II) ion in aqueous solution based on a pyridyltriazolopyridine-cyclodextrin inclusion complex is proposed. The inclusion complexation behavior, characterization and binding ability of pyridyltriazolopyridine (PTP) with dimethyl-β-cyclodextrin (DMβCD) has been investigated both in solution and solid state by means of absorption, fluorescence, 1H NMR, DSC, and molecular modeling methods. The stoichiometry of the inclusion complex is 1:1, and the thermodynamic studies indicate that the inclusion of PTP is mainly an entropic driven process. The 2D NMR studies revealed that the pyridyl-triazolopyridine is included by both sides of cyclodextrin …

research product

CCDC 2088521: Experimental Crystal Structure Determination

Related Article: Todd N. Poe, Sarah Molinari, Maria J. Beltran-Leiva, Cristian Celis-Barros, Harry Ramanantoanina, Thomas E. Albrecht-Scho��nzart|2021|Inorg.Chem.|60|15196|doi:10.1021/acs.inorgchem.1c01606

research product

CCDC 2086032: Experimental Crystal Structure Determination

Related Article: Todd N. Poe, Sarah Molinari, Maria J. Beltran-Leiva, Cristian Celis-Barros, Harry Ramanantoanina, Thomas E. Albrecht-Scho��nzart|2021|Inorg.Chem.|60|15196|doi:10.1021/acs.inorgchem.1c01606

research product

CCDC 2088520: Experimental Crystal Structure Determination

Related Article: Todd N. Poe, Sarah Molinari, Maria J. Beltran-Leiva, Cristian Celis-Barros, Harry Ramanantoanina, Thomas E. Albrecht-Scho��nzart|2021|Inorg.Chem.|60|15196|doi:10.1021/acs.inorgchem.1c01606

research product

CCDC 2086030: Experimental Crystal Structure Determination

Related Article: Todd N. Poe, Sarah Molinari, Maria J. Beltran-Leiva, Cristian Celis-Barros, Harry Ramanantoanina, Thomas E. Albrecht-Scho��nzart|2021|Inorg.Chem.|60|15196|doi:10.1021/acs.inorgchem.1c01606

research product

CCDC 2088522: Experimental Crystal Structure Determination

Related Article: Todd N. Poe, Sarah Molinari, Maria J. Beltran-Leiva, Cristian Celis-Barros, Harry Ramanantoanina, Thomas E. Albrecht-Scho��nzart|2021|Inorg.Chem.|60|15196|doi:10.1021/acs.inorgchem.1c01606

research product

CCDC 2086031: Experimental Crystal Structure Determination

Related Article: Todd N. Poe, Sarah Molinari, Maria J. Beltran-Leiva, Cristian Celis-Barros, Harry Ramanantoanina, Thomas E. Albrecht-Scho��nzart|2021|Inorg.Chem.|60|15196|doi:10.1021/acs.inorgchem.1c01606

research product

CCDC 2057854: Experimental Crystal Structure Determination

Related Article: Todd N. Poe, Maria J. Beltra��n-Leiva, Cristian Celis-Barros, William L. Nelson, Joseph M. Sperling, Ryan E. Baumbach, Harry Ramanantoanina, Manfred Speldrich, Thomas E. Albrecht-Scho��nzart|2021|Inorg.Chem.|60|7815|doi:10.1021/acs.inorgchem.1c00300

research product

CCDC 2057855: Experimental Crystal Structure Determination

Related Article: Todd N. Poe, Maria J. Beltra��n-Leiva, Cristian Celis-Barros, William L. Nelson, Joseph M. Sperling, Ryan E. Baumbach, Harry Ramanantoanina, Manfred Speldrich, Thomas E. Albrecht-Scho��nzart|2021|Inorg.Chem.|60|7815|doi:10.1021/acs.inorgchem.1c00300

research product