aoguang Xi
Zhejiang Sci-Tech University
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Publication
Featured researches published by aoguang Xi.
Journal of Materials Chemistry | 2013
Guohua Jiang; Xiaohong Wang; Zhen Wei; Xia Li; Xiaoguang Xi; Ruanbing Hu; Bolin Tang; Rijing Wang; Sheng Wang; Tao Wang; Wenxing Chen
Fe-doped BiOBr hollow microspheres were successfully prepared by a simple solvothermal method. The as-prepared samples exhibit excellent photocatalytic activity and electrochemical behaviour, attributed to the unique hollow structure and Fe doping, which is favorable for transfer of photogenerated carriers and enhancement of photoadsorption.
Journal of The Textile Institute | 2013
Jun Liang; Yang Zhou; Guohua Jiang; Rijing Wang; Xiaohong Wang; Ruanbing Hu; Xiaoguang Xi
In the present study, silica hydrosols were firstly prepared by water-based sol-gel method with the surfactant emulsification, using tetraethoxysilane as the precursor and ammonium hydroxide as the catalyst. Then, the silica hydrosols were applied to the cotton fabrics by dipping process, followed by the modification with (heptadecafluoro-1,1,2,2-tetradecyl) trimethoxysilane and heat treatment to prepare superhydrophobic cotton fabrics. The process resulted in SiO2 nanoparticles covalently attached to the cellulose surface and fluorine-containing siloxane coupling agent which brought about an inherent microscale roughness and the superhydrophobic character. The investigation of oil/water mixture has been carried out using the as-prepared superhydrophobic cellulose fabric-based materials.
Advances in Materials Science and Engineering | 2012
Rijing Wang; Xiaohong Wang; Xiaoguang Xi; Ruanbing Hu; Guohua Jiang
A simple sol-gel method was used to prepare magnetic Fe3O4/SiO2/TiO2 composites with core-shell structure. Fourier transform infrared spectroscopy (FT-IR), X-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM), and transmission electron microscopy (TEM) have been applied to investigate the structure and morphology of the resultant composites. The obtained composites showed excellent magnetism and higher photodegradation ability than pure TiO2. The photocatalytic mechanism was also discussed. The magnetic composites should be extended to various potential applications, such as photodegradation, catalysis, separation, and purification processes.
Journal of The Textile Institute | 2013
Guohua Jiang; Ruanbing Hu; Xiaohong Wang; Xiaoguang Xi; Rijing Wang; Zhen Wei; Xia Li; Bolin Tang
A novel type of fiber material for the separation of oil/water mixed liquids has been prepared by the chemical vapor deposition of hydrophobic silanes on commercially available polypropylene (PP) fiber. To achieve this, the PP fiber materials were first etched by concentrated H2SO4. Then, the as-prepared PP fiber materials were immersed in highly concentrated suspension of graphene oxide modified by amine-functionalized SiO2 nanoparticles (SiO2–GO). Finally, the as-prepared PP fiber materials were treated by the chemical vapor deposition of hydrophobic silane (octyltrichlorosilane) to form a superhydrophobic surface with a water contact angle more than 156o. The hydrophobic lightweight PP fiber materials are almost instantly filled with the oil phase when selectively absorbing oil from water. The oil can also be drained from the absorbed PP fiber materials. Moreover, the PP fiber material shows the good performance for repeated use.
Journal of Macromolecular Science, Part A | 2013
Xiaohong Wang; Guohua Jiang; Yin Wang; Rijing Wang; Xinke Sun; Ruanbing Hu; Xiaoguang Xi; Yang Zhou; Sheng Wang; Tao Wang
Biomimetic core cross-linked nanocarriers (CCL-NCs) with zwitterionic shell was constructed from an amphiphilic block copolymer poly(2-(dimethylamino) ethyl methacrylate-co-carboxybetaine)-b-polystyrene ((PDMAEMA-co-PCB)-b-PS) via mini-emulsion RAFT polymerization. CCL-NCs present in this report possess properties of redox-sensitivity, limited unspecific protein adsorptions and low cytotoxicity, which highly enhance their potential application in drug delivery. Morphology of CCL-NCs was characterized by transmission electron microscopy (TEM) and dynamic light scattering (DLS) measurements. The control release process has also been investigated under three different conditions with or without dithiothreitol (DTT) at pH 5.4, 6.5 and 7.4.
Bulletin of Materials Science | 2013
Ruanbing Hu; Guohua Jiang; Xiaohong Wang; Xiaoguang Xi; Rijing Wang
Glass substrates modified by carbon/silica composites are fabricated through a two-step process for the preparation of a superhydrophobic surface (water contact angle ≥ 150°). Carbon nanoparticles were first prepared through a deposition process on glass using a hydrothermal synthesis route, then the glass was modified by SiO2 using the hydrolysis reaction of tetraethylorthosilicate at room temperature. It is not only a facile method to create a superhydrophobic surface, but also helps to form a multi-functional surface with high adhesive forces.
Polymers from Renewable Resources | 2013
Xiaoguang Xi; Guohua Jiang; Xiaohong Wang; Ruanbing Hu; Rijing Wang
Degradable materials based on poly(α-angelica lactone-co-∊-caprolactone) (PAL-co-PCL) copolymers were successfully synthesized via ring-opening polymerization (ROP) of α-angelica lactone (AL) and ∊-caprolactone (CL). The chemical structures of the PAL-co-PCL were confirmed by 1H NMR and FT-IR measurements. The crystallization behaviour of copolymers was analyzed by XRD patterns, the thermal properties were investigated by DSC and TGA curves. The degradation rate of PAL-co-PCL could be controlled through adjusting the ratio of PAL to PCL in the copolymer as well as the pH values of media.
ACS Applied Materials & Interfaces | 2012
Guohua Jiang; Rijing Wang; Xiaohong Wang; Xiaoguang Xi; Ruanbing Hu; Yang Zhou; Sheng Wang; Tao Wang; Wenxing Chen
Powder Technology | 2012
Rijing Wang; Guohua Jiang; Xiaohong Wang; Ruanbing Hu; Xiaoguang Xi; Shiyong Bao; Yang Zhou; Tian Tong; Sheng Wang; Tao Wang; Wenxing Chen
Journal of Materials Research | 2013
Guohua Jiang; Ruanbing Hu; Xiaoguang Xi; Xiaohong Wang; Rijing Wang