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18篇 您的检索式:作者名="NAVAL N"
    题名 作者 年代 出处 被引量
1Visual impairment and quality of life:gender differences in the elderly in Cuenca,Spain显示文摘Esteban JJ Martínez MS Navalón PG 2008Qual Life Res2008,17,1:1
2Determination of pyrimethanil and kresoxim-methyl in soils by headspace solid-phase microextraction and gas chromatography-mass spectrometry显示文摘NAVAL N A PRIETO A ARAUJO L 2004Anal Bioanal Chem2004,379,78:1
3The Latin American population in Spain and organ donation. Attitude toward deceased organ donation and organ donation rates显示文摘Antonio Ríos Ana I. López‐Navas Juan C. Navalón Laura Martínez‐Alarcón Marco A. Ayala‐García María J. Sebastián‐Ruiz Francisco Moya‐Faz Gregorio Garrido Pablo Ramirez Pascual Parrilla 2015Transpl Int2015,,4:1
4Risk factors and medical management of vasospasm after subarachnoid hemorrhage显示文摘Lazaridis C Naval N 2010Neurosurg Clin N Am2010,21,2:1
5ICH aspiration and thro-mbolysis显示文摘Naval N S Nyquist P Carhuapoma J R 2007J Neurol Sci2007,261,1:1
6Organ Fail- ure: Central Nervous System显示文摘NAVAL N CHANDOLU S MIRSKI M 2011Semin Respir Crit Care Med2011,32,:1
7Endoscopic treatment of the benign prostatic hyperplasia with localanesthesia and sedation in patients with high surgical or anaesthesicalrisk显示文摘Navalón Verdejo P Sánchez Ballester F Ordon^o Dominguez F 2006Actas Urol Esp2006,30,1:1
8Simultaneous Determination of Naproxen, Salicylic Acid and Acetylsalicylic Acid by Spectrofluorimetry Using Partial Least-squares (PLS) Multivariate Calibration 显示文摘Naval n A Blanc R Del Olmo M 1999Talanta1999,48,2:1
9New sample treatment for determination of linear alkylbenzene sulfonate (LAS) in agricultural soils by liquid chromatography with fluorescence detection显示文摘M. Nimer O. Ballesteros A. Navalón G. Crovetto C. Verge I. López J. L. Berna J. L. Vílchez 2007Analytical and Bioanalytical Chemistry2007,,6:1
10Differential-pulse polarographic determination of the insecticide imidacloprid in commercial formulations显示文摘Alberto Navalón Rachid El-Khattabi Antonio González-Casado José Luis Vilchez 1999Mikrochimica Acta1999,,4:1
11An association of prior statin use with decreased perihematomal edema显示文摘Naval NS Abdelhak TA Urrunaga N 2008Neurocrit Care2008,8,1:1
12NF-κB and STAT3 inhibition as a therapeutic strategy in psoriasis:in vitro and in vivo effects of BTH显示文摘Andrés RM Montesinos MC Navalón P 2013J Invest Dermatol2013,133,10:1
13Flow behavior of fracturing slurries in CT显示文摘Shah S N Zhou Y Goel Naval 2002SPE 74811 -MS2002,,:1
14Risk factors and management of urine leaks after partial nephrectomy显示文摘Meeks J J Zhao L C Naval N 2008J Urol2008,180,6:1
15Photocatalytic CO2 reduction using non-titanium metal oxides and sulfides 显示文摘Navalón S Dhakshinamoorthy A álvaro M Garcia H 2013ChemSusChem2013,6,4:1
16Risk factors and medical management of vasospasm after subarachnoid hemorrhage显示文摘Lazaridis C Naval N 2010Neurosurg Clin N Am2010,21,2:1
17Solar-assisted photocatalytic water splitting using defective UiO-66 solids from modulated synthesis显示文摘Metal-organic frameworks(MOFs)are attracting increasing interests as photocatalysts for solar-driven hydrogen production from water.This paper reports on a comparative study of using either acetic acid(AA)or trifluoroacetic acid(TFA)as the representative UiO-66 organic modulators for synthesizing visible light responsive UiO-66(Zr)-X(X:NH_(2) or NO_(2))photocatalysts for water splitting.The results show that photocatalytic hydrogen generation from a water/methanol mixture can be improved by varying the nature and amount of the modulator employed to prepare the different UiO-66(Zr)-X(X:NH_(2) or NO_(2))solid derivatives.UiO-66(Zr)-NH_(2) was the most active photocatalyst,followed by UiO-66(Zr)-NO_(2),both prepared with 12 equivalents of AA with respect to the organic ligand.This UiO-66(Zr)-NH_(2) solid was more active than the parent MOF in photocatalytic overall water splitting(OWS)(H_(2) and O_(2) production of 450 and 160μmol·g^(-1),respectively,in 5 h;apparent quantum yield(AQY)at 400 nm of 0.06%)in the absence of methanol and compares favourably with analogous reports.Information on the photocatalytic activity of the most active solids of both series was obtained by means of a series of techniques,including ultraviolet-visible(UV-vis)diffuse reflectance,X-ray photoelectron spectroscopy(XPS),laser flash photolysis(LFP),electron spin resonance(ESR),photoluminescence and photoelectrochemical measurements together with density functional theory(DFT)calculations.The results showed that organic acid modulators can be used to enhance the photocatalytic activity of missing linker UiO-66 defective materials in solar-powered water splitting.Celia M.Rueda-Navarro María Cabrero-Antonino Paula Escamilla Valentín Díez-Cabanes Dong Fan Pedro Atienzar Belén Ferrer Ignacio Vayá Guillaume Maurin Herme G.Baldoví Sergio Navalón 2024Nano Research2024,17,5:0
18Robust hybrid bismuth perovskites as potential photocatalysts for overall water splitting显示文摘Organic-inorganic hybrid perovskites have gained great attention as promising photocatalysts for hydrogen generation.However,due to their poor stability in water,the use of aqueous hydrohalic acid solutions is specifically required for an efficient hydrogen evolution.Herein,three novel photoactive lead-free hybrid perovskites based on bismuth and triazolium cations(denoted as IEF-15,IEF-16,and IEF-17(IEF stands for IMDEA energy frameworks))were synthesized and fully characterized(structural,compositional,optical,etc.).Further,these solids were proposed as photocatalysts for the challenging gas phase overall water splitting(OWS)reaction.Accordingly,IEF-16 thin films exhibited a remarkable photocatalytic activity in both H_(2) and O_(2) evolution,as a consequence of its appropriate bandgap and energy-band alignment,achieving hydrogen evolution rates ofμmol·g_(H_(2))^(-)1846 and 360 after 24 h under ultraviolet-visible(UV-vis)irradiation or simulated solar irradiation,respectively.This study additionally highlights the remarkable structural and photochemical stability of IEF-16 under different operational conditions(i.e.water volume,irradiation and temperature),paving the way for green hydrogen production from OWS using perovskite-based photocatalysts.Antonio J.Chacón-García Herme G.Baldovi Artem A.Babaryk Antonio Rodríguez-Diéguez Sergio Navalón Yolanda Pérez Hermenegildo García Patricia Horcajada 2024Nano Research2024,17,5:0
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