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1.
J Chem Phys ; 157(24): 244701, 2022 Dec 28.
Artículo en Inglés | MEDLINE | ID: mdl-36586986

RESUMEN

Ambient pressure x-ray photoelectron spectroscopy (APXPS) can provide a compelling platform for studying an analyte's oxidation and reduction reactions in solutions. This paper presents proof-of-principle operando measurements of a model organometallic complex, iron hexacyanide, in an aqueous solution using the dip-and-pull technique. The data demonstrates that the electrochemically active liquid meniscuses on the working electrodes can undergo controlled redox reactions which were observed using APXPS. A detailed discussion of several critical experimental considerations is included as guidance for anyone undertaking comparable experiments.

2.
J Phys Chem B ; 126(1): 229-238, 2022 01 13.
Artículo en Inglés | MEDLINE | ID: mdl-34935378

RESUMEN

We report valence band photoelectron spectroscopy measurements of gas-phase and liquid-phase benzene as well as those of benzene dissolved in liquid ammonia, complemented by electronic structure calculations. The origins of the sizable gas-to-liquid-phase shifts in electron binding energies deduced from the benzene valence band spectral features are quantitatively characterized in terms of the Born-Haber solvation model. This model also allows to rationalize the observation of almost identical shifts in liquid ammonia and benzene despite the fact that the former solvent is polar while the latter is not. For neutral solutes like benzene, it is the electronic polarization response determined by the high frequency dielectric constant of the solvent, which is practically the same in the two liquids, that primarily determines the observed gas-to-liquid shifts.


Asunto(s)
Amoníaco , Benceno , Electrones , Espectroscopía de Fotoelectrones , Solventes
3.
J Phys Chem Lett ; 12(28): 6676-6683, 2021 Jul 22.
Artículo en Inglés | MEDLINE | ID: mdl-34260255

RESUMEN

We demonstrate for the case of photoexcited [Ru(2,2'-bipyridine)3]2+ how femtosecond resonant inelastic X-ray scattering (RIXS) at the ligand K-edge allows one to uniquely probe changes in the valence electronic structure following a metal-to-ligand charge-transfer (MLCT) excitation. Metal-ligand hybridization is probed by nitrogen-1s resonances providing information on both the electron-accepting ligand in the MLCT state and the hole density of the metal center. By comparing to spectrum calculations based on density functional theory, we are able to distinguish the electronic structure of the electron-accepting ligand and the other ligands and determine a temporal upper limit of (250 ± 40) fs for electron localization following the charge-transfer excitation. The spin of the localized electron is deduced from the selection rules of the RIXS process establishing new experimental capabilities for probing transient charge and spin densities.

4.
J Phys Chem A ; 125(32): 6881-6892, 2021 Aug 19.
Artículo en Inglés | MEDLINE | ID: mdl-34328745

RESUMEN

Liquid-jet photoelectron spectroscopy was applied to determine the first acid dissociation constant (pKa) of aqueous-phase glucose while simultaneously identifying the spectroscopic signature of the respective deprotonation site. Valence spectra from solutions at pH values below and above the first pKa reveal a change in glucose's lowest ionization energy upon the deprotonation of neutral glucose and the subsequent emergence of its anionic counterpart. Site-specific insights into the solution-pH-dependent molecular structure changes are also shown to be accessible via C 1s photoelectron spectroscopy. The spectra reveal a considerably lower C 1s binding energy of the carbon site associated with the deprotonated hydroxyl group. The occurrence of photoelectron spectral fingerprints of cyclic and linear glucose prior to and upon deprotonation are also discussed. The experimental data are interpreted with the aid of electronic structure calculations. Our findings highlight the potential of liquid-jet photoelectron spectroscopy to act as a site-selective probe of the molecular structures that underpin the acid-base chemistry of polyprotic systems with relevance to environmental chemistry and biochemistry.

5.
Langmuir ; 36(32): 9399-9411, 2020 08 18.
Artículo en Inglés | MEDLINE | ID: mdl-32706259

RESUMEN

Understanding the interaction of amino acids with metal surfaces is essential for the rational design of chiral modifiers able to confer enantioselectivity to metal catalysts. Here, we present an investigation of the adsorption of aspartic acid (Asp) on the Ni{100} surface, using a combination of synchrotron X-ray photoelectron spectroscopy (XPS), near-edge X-ray absorption fine structure, and density functional theory simulations. Based on the combined analysis of the experimental and simulated data, we can identify the dominant mode of adsorption as a pentadentate configuration with three O atoms at the bridge sites of the surfaces, and the remaining oxygen atom and the amino nitrogen are located on atop sites. From temperature-programmed XPS measurements, it was found that Asp starts decomposing above 400 K, which is significantly higher than typical decomposition temperatures of smaller organic molecules on Ni surfaces. Our results offer valuable insights into understanding the role of Asp as a chiral modifier of nickel catalyst surfaces in enantioselective hydrogenation reactions.

6.
Cambios rev. méd ; 17(2): 94-104, 28/12/2018. ilus, tab
Artículo en Español | LILACS | ID: biblio-1005258

RESUMEN

El sangrado digestivo alto (SDA) se define como la presencia de sangre en el tracto digestivo alto, proveniente de la mucosa o vasos sanguíneos que se localizan entre el esófago y el ángulo de Treitz. Las principales manifestaciones clínicas asociadas al SDA están dadas por la presencia de hematemesis, melena y en algunos casos hematoquezia, esta última relacionada con sangrados que cursan con aceleración del tránsito intestinal. En el Hospital de Especialidades Carlos Andrade Marín el SDA es un motivo frecuente de consulta en urgencias, que implica además un importante número de ingresos tanto al área crítica de Urgencias, Unidad de Cuidados Intensivos y hospitalización. La mortalidad por esta causa es variable, se estima en 3,5% al 10,0% y esta depende sobre todo de la edad del paciente y sus posibles enfermedades asociadas, la cuantía del sangrado y los hallazgos que se encuentren durante la realización del procedimiento endoscópico. El sangrado digestivo alto es autolimitado o cesa espontáneamente en el 80,0% de los casos. La causa más frecuente es la hemorragia por úlcera péptica (25,0% ulcera duodenal­23,0% ulcera gástrica). Con este protocolo clínico buscamos normar el manejo hospitalario de los pacientes que ingresan al área de Urgencias con el fin de unificar criterios que conlleven al manejo adecuado de los pacientes con sangrado digestivo alto.


Upper digestive tract bleeding (SDA) is defined as the presence of blood in the upper digestive tract, coming from the mucosa or blood vessels that are located between the esophagus and the Treitz angle. The main clinical manifestations associated with SDA are given by the presence of hematemesis, melena and in some cases hematochezia, the latter related to bleeding that occurs with the acceleration of intestinal transit. In the Hospital of Specialties Carlos Andrade Marín, the SDA is a frequent reason for consultation in the emergency room, which also implies an important number of admissions to the critical area of Emergency, Intensive Care Unit and hospitalization. Mortality from this cause is variable, it is estimated at 3,5% to 10,0% and this depends above all on the age of the patient and their possible associated diseases, the amount of bleeding and the findings that are found during the performance of the endoscopic procedure. High digestive bleeding is self-limiting or ceases spontaneously in 80,0% of cases. The most frequent cause is peptic ulcer hemorrhage (25,0% duodenal ulcer -23,0% gastric ulcer). With this clinical protocol, we seek to regulate the hospital management of patients who enter the Emergency Department to unify criteria that lead to the proper management of patients with high digestive bleeding.


Asunto(s)
Humanos , Úlcera Gástrica , Hematemesis , Úlcera Duodenal , Hemorragia , Angiografía , Protocolos Clínicos
7.
Phys Chem Chem Phys ; 20(44): 27745-27751, 2018 Nov 14.
Artículo en Inglés | MEDLINE | ID: mdl-30211412

RESUMEN

Understanding and controlling properties of transition metal complexes is a crucial step towards tailoring materials for sustainable energy applications. In a systematic approach, we use resonant inelastic X-ray scattering to study the influence of ligand substitution on the valence electronic structure around an aqueous iron(ii) center. Exchanging cyanide with 2-2'-bipyridine ligands reshapes frontier orbitals in a way that reduces metal 3d charge delocalization onto the ligands. This net decrease of metal-ligand covalency results in lower metal-centered excited state energies in agreement with previously reported excited state dynamics. Furthermore, traces of solvent-effects were found indicating a varying interaction strength of the solvent with ligands of different character. Our results demonstrate how ligand exchange can be exploited to shape frontier orbitals of transition metal complexes in solution-phase chemistry; insights upon which future efforts can built when tailoring the functionality of photoactive systems for light-harvesting applications.

8.
J Phys Chem Lett ; 9(12): 3538-3543, 2018 Jun 21.
Artículo en Inglés | MEDLINE | ID: mdl-29888918

RESUMEN

Soft X-ray spectroscopies are ideal probes of the local valence electronic structure of photocatalytically active metal sites. Here, we apply the selectivity of time-resolved resonant inelastic X-ray scattering at the iron L-edge to the transient charge distribution of an optically excited charge-transfer state in aqueous ferricyanide. Through comparison to steady-state spectra and quantum chemical calculations, the coupled effects of valence-shell closing and ligand-hole creation are experimentally and theoretically disentangled and described in terms of orbital occupancy, metal-ligand covalency, and ligand field splitting, thereby extending established steady-state concepts to the excited-state domain. π-Back-donation is found to be mainly determined by the metal site occupation, whereas the ligand hole instead influences σ-donation. Our results demonstrate how ultrafast resonant inelastic X-ray scattering can help characterize local charge distributions around catalytic metal centers in short-lived charge-transfer excited states, as a step toward future rationalization and tailoring of photocatalytic capabilities of transition-metal complexes.

9.
Phys Chem Chem Phys ; 19(47): 32091-32098, 2017 Dec 06.
Artículo en Inglés | MEDLINE | ID: mdl-29182178

RESUMEN

The valence orbitals of aqueous histidine under basic, neutral and acidic conditions and their X-ray induced transformations have been monitored through N 1s resonant inelastic X-ray scattering. Using density functional ab initio molecular dynamics simulations in the core-hole state within the Z + 1 approximation, core-excitation-induced molecular transformations are quantified. Spectroscopic evidence for a highly directional X-ray-induced local N-H dissociation within the scattering duration is presented for acidic histidine. Our report demonstrates a protonation-state and chemical-environment dependent propensity for a molecular dissociation, which is induced by the absorption of high energy photons. This case study indicates that structural deformations in biomolecules under exposure to ionizing radiation, yielding possible alteration or loss of function, is highly dependent on the physiological state of the molecule upon irradiation.

10.
Struct Dyn ; 4(5): 054307, 2017 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-28944255

RESUMEN

X-ray absorption spectroscopy at the L-edge of 3d transition metals provides unique information on the local metal charge and spin states by directly probing 3d-derived molecular orbitals through 2p-3d transitions. However, this soft x-ray technique has been rarely used at synchrotron facilities for mechanistic studies of metalloenzymes due to the difficulties of x-ray-induced sample damage and strong background signals from light elements that can dominate the low metal signal. Here, we combine femtosecond soft x-ray pulses from a free-electron laser with a novel x-ray fluorescence-yield spectrometer to overcome these difficulties. We present L-edge absorption spectra of inorganic high-valent Mn complexes (Mn ∼ 6-15 mmol/l) with no visible effects of radiation damage. We also present the first L-edge absorption spectra of the oxygen evolving complex (Mn4CaO5) in Photosystem II (Mn < 1 mmol/l) at room temperature, measured under similar conditions. Our approach opens new ways to study metalloenzymes under functional conditions.

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