Investigating the effect of varying ZnO deposition on SiO2 spheres and its effective photo energy applications
暂无分享,去创建一个
[1] D. Bao,et al. Magnetically retrievable Fe3O4@SiO2@ZnO piezo-photocatalyst: Synthesis and multiple catalytic properties. , 2023, Journal of colloid and interface science.
[2] Jianwei Ren,et al. In-situ structuring a robust cellulose hydrogel with ZnO/SiO2 heterojunctions for efficient photocatalytic degradation. , 2022, Carbohydrate polymers.
[3] P. Sivolapov,et al. Synthesis of Stober silica nanoparticles in solvent environments with different Hansen solubility parameters , 2022, Inorganic Chemistry Communications.
[4] A. Howell,et al. Impact of hole scavengers on photocatalytic reduction of nitrobenzene using cadmium sulfide quantum dots , 2022, Cell Reports Physical Science.
[5] Pandian Senthil Kumar,et al. Modified Stöber synthesis of SiO2@Ag nanocomposites and their enhanced refractive index sensing applications , 2022, Physica B: Condensed Matter.
[6] J. Prakash,et al. An insight into the green synthesis of SiO2 nanostructures as a novel adsorbent for removal of toxic water pollutants. , 2022, Environmental research.
[7] Zhenzhong Yang,et al. Recent advances in scalable synthesis and performance of Janus polymer/inorganic nanocomposites , 2021, Progress in Materials Science.
[8] M. Amami,et al. Modification in Structural, Optical, Morphological, and Electrical Properties of Zinc Oxide (ZnO) Nanoparticles (NPs) by Metal (Ni, Co) Dopants for Electronic Device Applications , 2021, Arabian Journal of Chemistry.
[9] M. Abbas,et al. Ultrathin TiO2-coated SiO2 nanoparticles as light scattering centers for quantum dot-sensitized solar cells , 2020 .
[10] M. Basit,et al. Rapid conjunction of 1D carbon nanotubes and 2D graphitic carbon nitride with ZnO for improved optoelectronic properties , 2020, Applied Nanoscience.
[11] Nur Alia Sheh Omar,et al. Optical studies of crystalline ZnO–SiO2 developed from pyrolysis of coconut husk , 2020, Materials Research Express.
[12] M. Basit,et al. ZnO-based mutable Ag2S/Ag2O multilayered architectures for organic dye degradation and inhibition of E. coli and B. subtilis , 2020 .
[13] S. Winardi,et al. Fabrication of ZnO-SiO2 Nanocomposite Materials Prepared by a Spray Pyrolysis for the Photocatalytic Activity under UV and Sunlight Irradiations , 2020, IOP Conference Series: Materials Science and Engineering.
[14] M. Basit,et al. Comparative investigation of ZnO morphologies for optimal CdS quantum-dot deposition via pseudo-SILAR method , 2020 .
[15] T. Jiang,et al. Effect of SiO2 aerogels loading on photocatalytic degradation of nitrobenzene using composites with tetrapod-like ZnO , 2020 .
[16] M. Yasir,et al. Tactical modification of pseudo-SILAR process for enhanced quantum-dot deposition on TiO2 and ZnO nanoparticles for solar energy applications , 2019 .
[17] Y. Zhai,et al. Synthesis and photocatalytic degradation ability evaluation for rhodamine B of ZnO@SiO2 composite with flower-like structure. , 2019, Water science and technology : a journal of the International Association on Water Pollution Research.
[18] Jong-Ryul Jeong,et al. Preparation of Monodisperse Silica Nanoparticles via Controlling the Interphase of Two-Phase Synthesis for Optical Anticounterfeiting Materials , 2019, Electronic Materials Letters.
[19] Young Min Park,et al. Atomic layer deposition with rotary reactor for uniform hetero-junction photocatalyst, g-C3N4@TiO2 core–shell structures , 2019, RSC advances.
[20] S. Sultana,et al. Ag2S-Sensitized NiO–ZnO Heterostructures with Enhanced Visible Light Photocatalytic Activity and Acetone Sensing Property , 2019, ACS omega.
[21] Y. V. Rami Reddy,et al. Hydrothermal synthesis of flower-like ZnO-SiO2 nanocomposites for solar light–induced photocatalysis and anti-bacterial applications , 2019, Materials Research Express.
[22] M. Tahir,et al. Evolution of photovoltaic and photocatalytic activity in anatase-TiO2 under visible light via simplistic deposition of CdS and PbS quantum-dots , 2019, Materials Chemistry and Physics.
[23] Tsunghsueh Wu,et al. Salicylic acid‐sensitised titanium dioxide for photocatalytic degradation of fast green FCF under visible light irradiation , 2019, Micro & Nano Letters.
[24] M. Basit,et al. Multiple energy applications of quantum-dot sensitized TiO2/PbS/CdS and TiO2/CdS/PbS hierarchical nanocomposites synthesized via p-SILAR technique , 2019, Chemical Physics Letters.
[25] M. Einarsrud,et al. In Situ Synthesis of Hybrid Inorganic–Polymer Nanocomposites , 2018, Polymers.
[26] Guan-Ting Pan,et al. Assembly of ZnO Nanoparticles on SiO2@α-Fe2O3 Nanocomposites for an Efficient Photo-Fenton Reaction , 2018, Inorganics.
[27] Xingzhong Zhao,et al. Enhanced visible light photodegradation activity of RhB/MB from aqueous solution using nanosized novel Fe-Cd co-modified ZnO , 2018, Scientific Reports.
[28] E. Rani,et al. INVESTIGATION ON PHYSICAL AND ELECTRICAL PROPERTIES OF THE SiO2-ZnO NANOCOMPOSITE AT DIFFERENT COMPOSITION MIXINGS , 2017, 9-ICGT-2018.
[29] Haitao Liu,et al. Morphology controlling method for amorphous silica nanoparticles and jellyfish-like nanowires and their luminescence properties , 2016, Scientific Reports.
[30] R. Soltani,et al. The application of ZnO/SiO2 nanocomposite for the photocatalytic degradation of a textile dye in aqueous solutions in comparison with pure ZnO nanoparticles , 2015 .
[31] R. N. Malik,et al. Principles and mechanisms of photocatalytic dye degradation on TiO2 based photocatalysts: a comparative overview , 2014 .
[32] A. Ismail,et al. Sol–gel synthesis of ZnO–SiO2 thin films: impact of ZnO contents on its photonic efficiency , 2014, Journal of Sol-Gel Science and Technology.
[33] W. Shi,et al. Enhanced light scattering and photovoltaic performance for dye-sensitized solar cells by embedding submicron SiO2/TiO2 core/shell particles in photoanode , 2013 .
[34] J. Jang,et al. Designed synthesis of SiO2/TiO2 core/shell structure as light scattering material for highly efficient dye-sensitized solar cells. , 2013, ACS applied materials & interfaces.
[35] Brad W. Zeiger,et al. Sonochemical synthesis of nanomaterials. , 2013, Chemical Society reviews.
[36] Dong Ha Kim,et al. The Effect of SiO2 Shell on the Suppression of Photocatalytic Activity of TiO2 and ZnO Nanoparticles , 2012 .
[37] M. Barakat,et al. Enhancement of Photocatalytic Activity of ZnO/SiO2 by Nanosized Pt for Photocatalytic Degradation of Phenol in Wastewater , 2012 .
[38] L. Treccani,et al. Fluorescence labeling of colloidal core-shell particles with defined isoelectric points for in vitro studies. , 2012, Acta biomaterialia.
[39] Askarinejad Azadeh,et al. SONOCHEMICALLY ASSISTED SYNTHESIS OF ZNO NANOPARTICLES: A NOVEL DIRECT METHOD , 2011 .
[40] O. Al-Harbi. Effect of different nucleation catalysts on the crystallization of Li2O–ZnO–MgO–Al2O3–SiO2 glasses , 2009 .
[41] A. Ismail. Single-step synthesis of a highly active photocatalyst for oxidation of trichloroethylene , 2008 .
[42] J. R. Botha,et al. Photoluminescence properties of SiO2 surface-passivated PbS nanoparticles , 2008 .
[43] G. Hodes. Semiconductor and ceramic nanoparticle films deposited by chemical bath deposition. , 2007, Physical chemistry chemical physics : PCCP.
[44] Chia-Hung Hsu,et al. White-light emitting ZnO–SiO2 nanocomposite thin films prepared by the target-attached sputtering method , 2006 .
[45] Haibing Xia,et al. Surface Synthesis of Zinc Oxide Nanoparticles on Silica Spheres: Preparation and Characterization , 2003 .
[46] P. Kooyman,et al. A new synthesis of mesoporous MSU-X silica controlled by a two-step pathway , 2000 .
[47] Zhiwei Wang,et al. Functional Surface Coating on Cellulosic Flexible Substrates with Improved Water-Resistant and Antimicrobial Properties by Use of ZnO Nanoparticles , 2017 .
[48] Xiuyan Li,et al. Preparation and photocatalytic properties of magnetically reusable Fe3O4@ZnO core/shell nanoparticles , 2016 .