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Inserting phenylethynyl linker into triphenylamine-based hyperbranched polyimide for effectively tuning memory performance
In this paper, a novel triamine monomer, tris(4-(2-(4-aminophenyl) ethynyl) phenyl) amine) (TAEPA) had been designed and synthesized through Sonogashira coupling reaction. The phenylethynyl of TAEPA was inserted as aπ bridge into the D-A structure of hyperbranched polyimide (HBPI). This structure could tune the memory performance of HBPI based devices. The memory devices had been fabricated fro...
http://www.polymer.cnt//ss/guanshaowei/publicationsshow_12948.html
 
Nitrogen-Doped Hierarchical Porous Carbon Nanowhisker Ensembles on Carbon Nanofiber for High-Performance Supercapacitors
Controlled synthesis of carbon nanomaterials with particular shape, composition, architecture, and doping is very important, yet still a great challenge, forenhancing supercapacitor performance with high energy and power densities and long lifetime. Herein, we demonstrate an interesting process combining surfactantless and templateless wet chemical and post-high-temperature carbonization strateg...
http://www.polymer.cnt//ss/jiananzhang/publicationsshow_12925.html
 
One-Step Carbonization Synthesis of Hollow Carbon Nanococoons with Multimodal Pores and Their Enhanced Electrochemical Performance for Supercapacitors
Hollow carbon capsules with multimodal pores are highly promising for developing novel electrode materials for high-performance electrochemical devices due to their more active sites for ion and electron transfer. However, at present, most of the previous efforts are focused on the multistep process for the synthesis of hollow carbon nanostructures with individual pores. Herein, hollow carbon na...
http://www.polymer.cnt//ss/jiananzhang/publicationsshow_12924.html
 
A Dual Templating Route to Three-Dimensionally Ordered Mesoporous Carbon Nanonetworks: Tuning the Mesopore Type for Electrochemical Performance Optimization
To well understand the effect of the mesopore type of ordered mesoporous carbons (OMCs) on enhancing energy storage and conversion is still a great challenge because of the extreme difficulties in exploring new methods to create OMCs with different types of mesopores. Herein, we develop an intriguing dual-templating co-assembly/hydrothermal approach to realize nanostructure engineering in OMCs w...
http://www.polymer.cnt//ss/jiananzhang/publicationsshow_12920.html
 
Effects of GO oxidation degree on GO/BuMgClsupported Ti-based Ziegler–Natta catalyst performance and nanocomposite properties
In the present research, three graphene oxide (GO)/n-butyl-magnesium chloride (BuMgCl)-supported Tibased Ziegler–Natta catalysts were synthesized by the reaction of Grignard reagent with GO at various oxidation degrees, followed by anchoring of TiCl4. The effects of GO oxidation degree and of the reaction conditions on in situ ethylene polymerization were investigated. The obtained PE/reduced G...
http://www.polymer.cnt//ss/polyhx/publicationsshow_12741.html
 
Rapid Preparation of Crosslinked N-doped Graphene by Burning Method for High-Performance Electrochemical Capacitors
We demonstrated here the crosslinked N-doped graphene (NG) can be rapidly prepared through a onestep burning process of graphene oxide. The doping process completed within 3 minutes and the N content in the obtained NG reached to 5.6%. The obtained crosslinked NG shows mesoporous structure with relatively high specific area, large pore volume and various N types. As a supercapacitor, the resulta...
http://www.polymer.cnt//ss/polyhx/publicationsshow_12737.html
 
[Journal of Alloys and Compounds]Ternary system of ZnO nanorods/Reduced Graphene Oxide/CuInS2 Quantum Dots for Enhanced Photocatalytic Performance[ 2018]
Tingting Xu*, Jinglu Hu, Yawei Yang, Wenxiu Que*, Xingtian Yin, Hongjing Wu, and Lixin Chen. “Ternary system of ZnO nanorods/Reduced Graphene Oxide/CuInS2 Quantum Dots for Enhanced Photocatalytic Performance”. Journal of Alloys and Compounds, 2018, 734, 196-203.
http://www.polymer.cnt//ss/tingtingxu/publicationsshow_12700.html
 
Inverted organic solar cells using a solution-processed TiO2/CdSe electron transport layer to improve performance
In the present work, cadmium selenide (CdSe) nanoparticles are deposited directly on TiO2 film to fabricate the TiO2/CdSe interlayer by a chemical bath deposition method. The inverted organic solar cells using poly(3-hexylthiophene) (P3HT) and [6,6]-phenyl C61 butyric acid methyl ester (PCBM) bulk heterojunction as an active layer and TiO2/CdSe interlayer as an electron transport layer (ETL) are...
http://www.polymer.cnt//ss/Luxubing/publicationsshow_12679.html
 
Enhanced performance of CH3NH3PbI3-xClx perovskite solar cells by CH3NH3I modification of TiO2-perovskite layer interface
In this work, perovskite solar cells (PSCs) with CH3NH3PbI3-x Cl x as active layer and spiro-OMeTAD as hole-transport media have been fabricated by one-step method. The methylammonium iodide (CH3NH3I) solution with different concentrations is used to modify the interface between mesoporous TiO2 (meso-TiO2) film and CH3NH3PbI3?x Cl x perovskite layer. Several techniques including X-ray diffraction,...
http://www.polymer.cnt//ss/Luxubing/publicationsshow_12674.html
 
A room temperature strategy towards enhanced performance and bias stability of oxide thin film transistor with a sandwich structure channel layer
Thermal annealing is a conventional and effective way to improve the bias stress stability of oxide thin film transistors(TFT) on solid substrates. However, it is still a challenge for enhancing the bias stress stability of oxide TFTs on flexible substrates by high-temperature post-treatment due to the thermal sensitivity of flexible substrates. Here, a room temperature strategy is presented tow...
http://www.polymer.cnt//ss/Luxubing/publicationsshow_12607.html
 
 
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