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In Silico Prediction of ERRα Agonists Based on Combined Features and Stacking Ensemble Method.
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- ChemMedChem, 2024, v. 19, n. 20, p. 1, doi. 10.1002/cmdc.202400298
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- Article
In Silico Prediction of Metabolic Reaction Catalyzed by Human Aldehyde Oxidase.
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- Metabolites (2218-1989), 2023, v. 13, n. 3, p. 449, doi. 10.3390/metabo13030449
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- Article
Flexible Janus Nanoribbons Array: A New Strategy to Achieve Excellent Electrically Conductive Anisotropy, Magnetism, and Photoluminescence.
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- Advanced Functional Materials, 2015, v. 25, n. 16, p. 2436, doi. 10.1002/adfm.201500348
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BiMoO/RGO composite nanofibers: facile electrospinning fabrication, structure, and significantly improved photocatalytic water splitting activity.
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- Journal of Materials Science: Materials in Electronics, 2017, v. 28, n. 1, p. 543, doi. 10.1007/s10854-016-5557-3
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- Article
Fabrication of novel BaYF:Er nanofibers with upconversion fluorescence via combination of electrospinning with fluorination.
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- Journal of Materials Science: Materials in Electronics, 2016, v. 27, n. 11, p. 11666, doi. 10.1007/s10854-016-5302-y
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- Article
Hydrothermal synthesis, multicolor tunable luminescence and energy transfer of Eu or/and Tb activated NaY(WO) nanophosphors.
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- Journal of Materials Science: Materials in Electronics, 2016, v. 27, n. 10, p. 10780, doi. 10.1007/s10854-016-5183-0
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A new scheme to acquire BaYF:Er nanofibers with upconversion luminescence.
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- Journal of Materials Science: Materials in Electronics, 2016, v. 27, n. 9, p. 9152, doi. 10.1007/s10854-016-4951-1
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A new route to fabricate PbS nanofibers and PbSe nanofibers via electrospinning combined with double-crucible technique.
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- Journal of Materials Science: Materials in Electronics, 2016, v. 27, n. 9, p. 9772, doi. 10.1007/s10854-016-5042-z
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- Article
Er doped BaYF nanofibers: facile construction technique, structure and upconversion luminescence.
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- Journal of Materials Science: Materials in Electronics, 2016, v. 27, n. 5, p. 5277, doi. 10.1007/s10854-016-4425-5
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Flexible composite nanobelts: facile electrospinning construction, structure and color-tunable photoluminescence.
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- Journal of Materials Science: Materials in Electronics, 2015, v. 26, n. 11, p. 8413, doi. 10.1007/s10854-015-3509-y
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- Article
Electrospinning-derived [C/FeO]@C coaxial nanocables with tuned magnetism, electrical conduction and highly efficient adsorption trifunctionality.
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- Journal of Materials Science: Materials in Electronics, 2015, v. 26, n. 10, p. 8054, doi. 10.1007/s10854-015-3463-8
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Color-tunable luminescence nanofibers endowed with simultaneously tuned electricity-magnetism performance.
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- Journal of Materials Science: Materials in Electronics, 2015, v. 26, n. 8, p. 5994, doi. 10.1007/s10854-015-3175-0
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- Article
Dy and Eu complexes co-doped flexible composite nanofibers to achieve tunable fluorescent color.
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- Journal of Materials Science: Materials in Electronics, 2015, v. 26, n. 5, p. 3112, doi. 10.1007/s10854-015-2804-y
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- Article
In situ synthesis of porous FeO/C composite nanobelts with tunable magnetism, electrical conduction and highly efficient adsorption characteristics.
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- Journal of Materials Science: Materials in Electronics, 2015, v. 26, n. 4, p. 2457, doi. 10.1007/s10854-015-2706-z
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Tunable and enhanced simultaneous photoluminescence-electricity-magnetism trifunctionality successfully realized in flexible Janus nanofiber.
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- Journal of Materials Science: Materials in Electronics, 2015, v. 26, n. 4, p. 2658, doi. 10.1007/s10854-015-2741-9
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A novel scheme to obtain tunable fluorescent colors based on electrospun composite nanofibers.
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- Journal of Materials Science: Materials in Electronics, 2015, v. 26, n. 1, p. 336, doi. 10.1007/s10854-014-2405-1
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A single flexible nanofiber to obtain simultaneous tunable color-electricity bifunctionality.
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- Journal of Materials Science: Materials in Electronics, 2014, v. 25, n. 12, p. 5395, doi. 10.1007/s10854-014-2318-z
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Coaxial electrospinning preparation and properties of magnetic-photoluminescent bifunctional CoFeO@YO:Eu coaxial nanofibers.
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- Journal of Materials Science: Materials in Electronics, 2014, v. 25, n. 10, p. 4259, doi. 10.1007/s10854-014-2158-x
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- Article
Synthesis of SnO@SnS core-shell nanorods by double crucible method and their photocatalysis.
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- Journal of Materials Science: Materials in Electronics, 2014, v. 25, n. 9, p. 3801, doi. 10.1007/s10854-014-2092-y
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- Article
Janus nanofiber: a new strategy to achieve simultaneous enhanced magnetic-photoluminescent bifunction.
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- Journal of Materials Science: Materials in Electronics, 2014, v. 25, n. 9, p. 4024, doi. 10.1007/s10854-014-2124-7
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A new tactics to fabricate flexible nanobelts with enhanced magnetic-luminescent bifunction.
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- Journal of Materials Science: Materials in Electronics, 2014, v. 25, n. 6, p. 2561, doi. 10.1007/s10854-014-1910-6
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A single nanobelt to achieve simultaneous photoluminescence-electricity-magnetism trifunction.
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- Journal of Materials Science: Materials in Electronics, 2014, v. 25, n. 5, p. 2279, doi. 10.1007/s10854-014-1872-8
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Study on terbium doped lanthanum oxybromide luminescent nanoribbons and nanofibers.
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- Journal of Materials Science: Materials in Electronics, 2014, v. 25, n. 4, p. 1657, doi. 10.1007/s10854-014-1780-y
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- Article
Photoluminescence-electricity-magnetism trifunction simultaneously assembled into one flexible nanofiber.
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- Journal of Materials Science: Materials in Electronics, 2014, v. 25, n. 3, p. 1309, doi. 10.1007/s10854-014-1728-2
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Preparation and electrochemical performances of LiFePO/C composite nanobelts via facile electrospinning.
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- Journal of Materials Science: Materials in Electronics, 2014, v. 25, n. 2, p. 1040, doi. 10.1007/s10854-013-1684-2
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Facile electrospinning fabrication and photoluminescence of LaOI:Tb one-dimensional nanomaterials.
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- Journal of Materials Science: Materials in Electronics, 2014, v. 25, n. 2, p. 1053, doi. 10.1007/s10854-013-1686-0
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Fabrication of Er-doped LaOCl nanostructures with upconversion and near-infrared luminescence performances.
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- Journal of Materials Science: Materials in Electronics, 2014, v. 25, n. 1, p. 46, doi. 10.1007/s10854-013-1547-x
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Synthesis and luminescence properties of LaOCl:Eu<sup>3+</sup> nanostructures via the combination of electrospinning with chlorination technique.
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- Journal of Materials Science: Materials in Electronics, 2013, v. 24, n. 12, p. 4745, doi. 10.1007/s10854-013-1469-7
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Coaxial electrospinning fabrication and electrochemical properties of LiFePO<sub>4</sub>/C/Ag composite hollow nanofibers.
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- Journal of Materials Science: Materials in Electronics, 2013, v. 24, n. 12, p. 4718, doi. 10.1007/s10854-013-1465-y
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Electrospinning fabrication and electrochemical properties of LiFePO/C composite nanofibers.
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- Journal of Materials Science: Materials in Electronics, 2013, v. 24, n. 11, p. 4263, doi. 10.1007/s10854-013-1395-8
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Fabrication and luminescence of YF:Tb hollow nanofibers.
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- Journal of Materials Science: Materials in Electronics, 2013, v. 24, n. 8, p. 3041, doi. 10.1007/s10854-013-1209-z
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- Article
Substitution Pattern Reverses the Fluorescence Response of Coumarin Glycoligands upon Coordination with Silver (I).
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- Scientific Reports, 2014, p. 1, doi. 10.1038/srep04252
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admetSAR3.0: a comprehensive platform for exploration, prediction and optimization of chemical ADMET properties.
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- Nucleic Acids Research, 2024, v. 52, n. W1, p. W432, doi. 10.1093/nar/gkae298
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Pharos: Collating protein information to shed light on the druggable genome.
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- Nucleic Acids Research, 2017, v. 45, n. D1, p. D995, doi. 10.1093/nar/gkw1072
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- Article
Dehydrogenation of Primary Alkyl Azides to Nitriles Catalyzed by Pincer Iridium/Ruthenium Complexes.
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- ChemCatChem, 2020, v. 12, n. 14, p. 3661, doi. 10.1002/cctc.202000260
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Geochemical characteristics of natural gas from mud volcanoes in the southern Junggar Basin.
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- SCIENCE CHINA Earth Sciences, 2012, v. 55, n. 3, p. 355, doi. 10.1007/s11430-012-4363-x
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- Article
Dual‐Confinement Effect of Nanocages@Nanotubes Suppresses Polysulfide Shuttle Effect for High‐Performance Lithium–Sulfur Batteries.
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- Small, 2024, v. 20, n. 16, p. 1, doi. 10.1002/smll.202308603
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- Article
Facilely Direct Construction, White‐Light Emission, and Color‐Adjustable Luminescence of LaF<sub>3</sub>:Pr<sup>3+</sup>@SiO<sub>2</sub> Yolk‐Shell Nanospheres with Moisture Resistance.
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- Small, 2024, v. 20, n. 1, p. 1, doi. 10.1002/smll.202305287
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DBPP-Predictor: a novel strategy for prediction of chemical drug-likeness based on property profiles.
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- Journal of Cheminformatics, 2024, v. 16, n. 1, p. 1, doi. 10.1186/s13321-024-00800-9
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- Article
Inferring Gene Regulatory Networks Based on a Hybrid Parallel Genetic Algorithm and the Threshold Restriction Method.
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- Interdisciplinary Sciences: Computational Life Sciences, 2018, v. 10, n. 1, p. 221, doi. 10.1007/s12539-017-0269-9
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LPRP: A Gene-Gene Interaction Network Construction Algorithm and Its Application in Breast Cancer Data Analysis.
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- Interdisciplinary Sciences: Computational Life Sciences, 2018, v. 10, n. 1, p. 131, doi. 10.1007/s12539-016-0185-4
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- Article
Thermocatalytic Dehydrogenation‐Enabled Arene‐Alkane Couplings<sup>†</sup>.
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- Chinese Journal of Chemistry, 2023, v. 41, n. 16, p. 1905, doi. 10.1002/cjoc.202300220
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Dehydrogenation Based Asymmetric Epoxidation of Arylalkanes to Chiral Epoxides.
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- Chinese Journal of Chemistry, 2022, v. 40, n. 19, p. 2263, doi. 10.1002/cjoc.202200304
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Asymmetric Transfer Hydrogenation of Diaryl Ketones with Ethanol Catalyzed by Chiral NCP Pincer Iridium Complexes.
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- Chinese Journal of Chemistry, 2022, v. 40, n. 10, p. 1131, doi. 10.1002/cjoc.202100868
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Iron Catalyzed Isomerization of α‐Alkyl Styrenes to Access Trisubstituted Alkenes.
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- Chinese Journal of Chemistry, 2021, v. 39, n. 3, p. 585, doi. 10.1002/cjoc.202000492
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Recent Advances in Coordination‐Insertion Copolymerization of Ethylene with Polar Functionalized Comonomers.
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- Chinese Journal of Chemistry, 2020, v. 38, n. 11, p. 1445, doi. 10.1002/cjoc.202000047
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NCP‐Type Pincer Iridium Complexes Catalyzed Transfer‐Dehydrogenation of Alkanes and Heterocycles<sup>†</sup>.
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- Chinese Journal of Chemistry, 2020, v. 38, n. 8, p. 837, doi. 10.1002/cjoc.202000097
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A New Phosphine‐Amine‐Oxazoline Ligand for Ru‐Catalyzed Asymmetric Hydrogenation of N‐Phosphinylimines.
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- Chinese Journal of Chemistry, 2018, v. 36, n. 12, p. 1151, doi. 10.1002/cjoc.201800343
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- Article
Catalytic Mechanism of Cytochrome P450 2D6 for 4-Hydroxylation of Aripiprazole: A QM/MM Study.
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- Chinese Journal of Chemistry, 2013, v. 31, n. 9, p. 1219, doi. 10.1002/cjoc.201300427
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Inhibitors of HIV-1 Integrase-Human LEDGF/p75 Interaction Identified from Natural Products via Virtual Screening.
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- Chinese Journal of Chemistry, 2012, v. 30, n. 12, p. 2752, doi. 10.1002/cjoc.201200897
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- Article