论文著作:
[61].Mechanism insight into oxygen vacancy-dependent effect in Fe1/TiO2 single-atom catalyst for highly enhanced photo-Fenton mineralization of phenol,Applied Catalysis B: Environment and Energy, 2024,124071(SCI).
[60].Enhanced electromagnetic tunability of barium strontium titanate films via coating Pr modified yttrium iron garnet layer,Journal of Materials Science & Technology,2024, 202, 174-182(SCI).
[59].Designing a periodic structure with a composition gradient stack unit to realize a good comprehensive dielectric property of Yttrium iron garnet multilayer film,ACS Applied Materials & Interfaces,2023, 15, 49826-49834(SCI).
[58].Structural distortion induced enhancement of magnetic and dielectric properties in Pr modified yttrium iron garnet films,Ceramics International, 2023, 49, 10129-10138(SCI).
[57].Synthesis and characterization of new donor-acceptor oligothiophene derivative with pyrido[1,2,5]thiadiazole as electron accepting unit,Journal of Molecular Structure,2023, 1284,135418(SCI).
[56].Achieving high breakdown strength and figure of merit of Ba0.6Sr0.4TiO3films through coating a Y3Fe5O12layer,Journal of the European Ceramic Society, 2022, 42, 4926-4933(SCI).
[55].A novel donor‐acceptor thiophene‐containing oligomer comprising dibenzothiophene‐S,S‐dioxide Units for solution‐processable organic field effect transistor,Molecules, 2022, 27, 2938(SCI).
[54].Enhanced visible-light catalytic activity of micro-patterned ZnFe2O4/Fe3+-TiO2heterojunction composite thin films prepared byphotolithography-assisted chemical solution deposition,Materials Research Bulletin, 2022,155,111951(SCI).
[53].A novel donor‐acceptor thiophene‐containing oligomer comprising dibenzothiophene‐S,S‐dioxide Units for solution‐processable organic field effect transistor,Molecules, 2022,27,2938(SCI).
[52].Enhanced multiferroic properties of Bi4Ti3-xCoxO12/La0.67Sr0.33MnO3layered composite thin films,Ceramics International,2022,48,21728(SCI).
[51].Achieving high breakdown strength and figure of merit of Ba0.6Sr0.4TiO3films through coating a Y3Fe5O12layer,Journal of the European Ceramic Society, 2022, 42, 4926-4933 (SCI).
[50].High tunability and low loss via establishing an internal electric field inLiFe5O8/Ba0.6Sr0.4TiO3composite films using chemical solutiondeposition method,Applied Surface Science, 2022, 590,153112(SCI).
[49].Micro-patterned NiFe2O4/Fe-TiO2composite films: fabrication, hydrophilicity and application in visible-light-driven photocatalysis,Ceramics International,2020, 46, 27080-27091.(SCI)
[48].Fabrication of micro-patterned ZrO2/TiO2composite surfaces with tunable super-wettability via a photosensitive sol-gel technique,Applied Surface Science, 2020, 529, 147136 (SCI).
[47]. Annealing heating rate dependence of microstructure and multiferroic properties in Bi4Ti2.9Fe0.1O12/CoFe2O4layered magnetoelectric composite films prepared by chemical solution deposition method,Ceramics International, 2020,46,15654-15664(SCI).
[46]Enhanced superconducting performance in solution-derived YBCO-BaZrO3composite film,Progress in Natural Science: Materials International, 2020,30,180(SCI).
[45]. Magnetoelectric composite films of La0.67Sr0.33MnO3and Fe-substitutedBi4Ti3O12fabricated by chemical solution deposition.Applied Surface Science, 2019,491, 225-235(SCI).
[44]. Enhanced electrochromic performances andpatterning of Ni–Sn oxide films prepared bya photosensitive sol-gel method.Journal ofMaterials Chemistry C, 2019,9, 650(SCI).
[43].Enhanced flux-pinning performance of YBCO films derived from a fluorine-free sol-gel process with ceria addition,Ceramics International, 2019, 4, 2657-2661(SCI).
[42]. Preparation of Micro-Patterned CaMn7O12CeramicFilms via a Photosensitive Sol-Gel Method.Coatings, 2019,452,165-173(SCI).
[41]. Facile micro-patterning of ferromagnetic CoFe2O4films using a combinedapproach of sol-gel method and UV irradiation.Ceramics International, 2019,45, 369-377(SCI).
[40]. Preparation of epitaxial CaMn7O12film via sol-gel method and itsferromagnetic properties.Journal of Sol-Gel Science and Technology, 2018,88, 639-645(SCI).
[39].Dielectric and energy storage properties of SrTiO3and SrZrO3modified Bi0.5Na0.5TiO3-Sr0.8Bi0.1TiO3based ceramics,Journal of Alloys and Compounds, 2018,742,683-689(SCI).
[38]. Non-UV activated superhydrophilicity of patterned Fe-doped TiO2film for anti-fogging and photocatalysis.Applied Surface Science, 2018,452,165-173(SCI).
[37]. Growth and characterization of Bi3.15Nd0.85Ti2.95Hf0.05O12/La0.67Sr0.33MnO3composite film with strong magnetoelectric effect by chemical solution deposition under moderate crystallization temperature.Journal of Alloys and Compounds, 2018,754,190-198(SCI).
[36]. Growth of highly c-axis oriented LaNiO3films with improved surface morphology on Si substrate using chemical solution deposition and rapid heat treatment process.Ceramics International, 2018,44, 695-702(SCI).
[35]. Integration of c-axis oriented Bi3.15Nd0.85Ti2.95Hf0.05O12/La0.67Sr0.33MnO3ferromagnetic-ferroelectric composite film on Si substrate.Scientific Reports,2017,7, 11341(SCI).
[34]. Patterning ZrO2films surface: Superhydrophilic and superhydrophobic properties.Ceramics International, 2017, 43, 5089-5094(SCI).
[33]. Ferromagnetic, ferroelectric and magnetoelectric properties of (001)-oriented Pb(Zr0.52Ti0.48)O3/La0.67Sr0.33MnO3composite films deposited on Si substrates using chemical solution deposition.Journal of Alloys and Compounds, 2017, 698, 276-283(SCI).
[32].Preparation of YBa2Cu3O7-x/Y2O3/YBa2Cu3O7-xtrilayer films using Sol-Gel Method.Journal of Superconductivity and Novel Magnetism, 2017,30, 1719-1725(SCI).
[31]. A facial approach combining photosensitive sol-gel with self-assembly method to fabricate superhydrophobic TiO2films with patterned surface structure.Applied Surface Science, 2016, 360:1030-1035(SCI).
[30].Facile fabrication of micro-patterned LSMO films with unchanged magnetic properties by photosensitive sol-gel method on LaAlO3substrates.Ceramics International, 2016, 42, 14100-14106(SCI).
[29]. Peparation of LSMO/PLZT composite film by sol-gel technique and its ferroelectric and ferromagnetic properties.Materials Science Forum, 2015, 815, 166-170 (EI).
[28]. Phenylene-thiophene oligomer derivatives for thin-film transistors:structure and semiconductor performances.Japanese Journal of Applied Physics, 2013, 52, 03BB07(1-5) (SCI).
[27].Flexible Organic Solar Cells Based on Spin-Coated Blend Films of a Phenylene-Thiophene Oligomer Derivative and PCBM.Molecular Crystals and Liquid Crystals, 2013, 578, 78-87 (SCI).
[26]. Novel Phenylene–thiophene oligomer derivatives with dibenzothiophene 5,5-dioxide core: synthesis, characterization, and applications in organic solar cells.Chemistry Letters, 2012, 41, 363-365, (SCI).
[25].Yasushiro Nishioka. Organic field-effect transistors based on two phenylene-thiophene oligomer derivatives with a biphenyl or fluorene core.Synthetic Metals, 2012, 162, 1292-1298 (SCI).
[24].Novel thienyl-dibenzothiophene oligomers end-capped by hexylphenyl groups as potentially organic semiconductor materials.Molecular Crystals and Liquid Crystals, 2012, 567, 28-33 (SCI).
[23]. Organic field-effect transistors based on 3,7-bis[5-(4-n-hexylphenyl) -2-thienyl]dibenzothiophene oligomer.Active-Matrix Flatpanel Displays and Devices, 2012, 12, 195-198 (EI).
[22]. Synthesis and characterization of novel pyrene derivatives containing thienyl groups.Molecular Crystals and Liquid Crystals, 2011, 538, 199-207 (SCI).
[20]. A novel thiophene-fused polycyclic aromatic with a tetracene core: synthesis, characterization, optical and electrochemical properties.Molecules, 2011, 16, 4467-4481 (SCI).
[20].Facile synthesis and characterization of a novel thiophene-fused polycyclic aromatics based on pyrene.Chinese Chemical Letters,2011, 22, 819-822 (SCI).
[19]. Preparation of Co-Na heterobinuclear polymeric complex of Salen-Crown ether and its catalytic activation for molecular oxygen.Journal of Macromolecular Science:Part A-Pure and Applied Chemistry, 2005, 42, 231-235(SCI).
[18].Heterogeneous catalytic aerobic oxidation behavior of Co–Na heterodinuclear polymeric complex of Salen-crown ether.Journal of Molecular Catalysis A: Chemical, 2006, 260, 280-287(SCI).
[17].高分子担载水杨醛希夫碱钴配合物催化分子氧氧化环己烯性能研究,分子催化,2005, 19,383-387。
[16]. Synthesis of novel thiophene-phenylene oligomer derivatives with a dibenzothiophene-5,5-dioxide core for use in organic solar cells.Physica Status Solidi B, 2012, 249, 2648-2651 (SCI).
[15].Bulk-heterojunction solar cells based on mixed donors of P3HT and phenylene–thiophene oligomer derivative,ECS Transactions, 2013, 58, 3-10 (EI).
[14]. Polypyrrole actuator operating characteristicsin electrolyte solution mixed with methanol,Applied Mechanics and Materials, 2013, 300-301, 933-936 (EI).
[13].Bulk-Heterojunction Organic Solar Cells Based on Phenylene-Thiophene Oligomer and Phenyl-C61-butyric-acid Methyl Ester,IEICE Transaction on Electronics,2014, E97-C, 405-408(SCI).
[12]. Preparation of ITO Films Using a Spray Pyrolysis Solution Containing an Acetylacetone Chelating Agent,Materials Science-Poland, 2014, 32, 66-70(SCI).
[11].Influence of Electrochemical Actuations on Mechanical Properties of PPy Actuators in Electrolyte Solutions Mixed with 2-propanol or Methanol.Molecular Crystals and Liquid Crystals, 2012, 566, 165-169 (SCI).
[10]. Characterization of pyrrole copolymer soft actuators prepared by electrochemical polymerization pyrrole and diethyl 3,4-pyrroledicarboxylate.Molecular Crystals and Liquid Crystals, 2012, 566, 158-154 (SCI).
[9].Flexible Transistors with Low Temperature Curable Polyimide Gate Insulator,Journal of Photopolymer Science and Technology,2012, 25, 381-384 (SCI).
[8].Gamma-ray Irradiated Organic Thin Film Transistors Based on Perfluoropentacene with Polyimide Gate Insulator,Journal of Photopolymer Science and Technology,2012, 25, 493-496 (SCI).
[7].Dynamic behaviors of polypyrrole actuators in electrolyte solution mixed with 2-propanol.Molecular Crystals and Liquid Crystals, 2011, 539, 166-173 (SCI).
[6].Effect of 2-propanol concentration in electrolyte solution on polypyrrole actuator performance.Japanese Journal of Applied Physics,2011, 50, 01BG10(1-4) (SCI).
[5].Comparison of polypyrrole organic thin film actuators with or without silicon microspring.Molecular Crystals and Liquid Crystals, 2011, 539, 148-155 (SCI).
[4]. Influences of oxygen exposure on instabilities of perfluoropentacene transistor characteristics with different gate insulators.Progress in Natural science: Materials International, 2011, 21, 12-16 (SCI).
[3]. Diffuser micropump structured with extremely flexible diaphragm of 2-μm-thick polyimide film.Japanese Journal of Applied Physics, 2011, 50, 04DK15(1-5) (SCI).
[2].Characteristics of gamma-ray irradiated pentacene organic thin film field effect transistors.Advanced Materials Research, 2011, 306-307, 185-192 (EI).
[1].60Co gamma-ray irradiation effects on pentacene-based organic thin-film transistors.Materials Science Forum, 2011, 687, 576-579 (EI).