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11篇 您的检索式:作者名="Han Qiaofeng"
    题名 作者 年代 出处 被引量
1A Template-free route to Sb2S3 crystals with hollow olivary architectures 显示文摘Han Qiaofeng Lu Juan Yang Xujie 2008Crystal Growth & Design2008,8,2:1
2A Controllable Synthetic Route for Preparing Graphene-Cu and Graphene-Cu_2O Nanocomposites Using Graphene Oxide-CuO as a Precursor显示文摘The development of convenient method to obtain graphene-based nanocomposites is a key issue for their application. Herein, we described a facile route for synthesizing graphene-Cu and graphene-Cu2 O nanocomposites using graphene oxide-Cu O as a precursor. Remarkably, the different nanocomposites could be formed just by varying the reaction temperature and time. This work provides a feasible route for the preparation of graphene-based nanocomposites with various constituents.陈丽 朱俊武 BI Huiping MENG Xiaoqian YAO Pengcheng HAN Qiaofeng 2015Journal of Wuhan University of Technology(Materials Science)2015,30,5:1
3Microwave-assisted synthesis and characterization of 3D flower-like Bi 2 S 3 superstructures显示文摘Juan Lu Qiaofeng Han Xujie Yang Lude Lu Xin Wang 2007Materials Letters2007,,:1
4Synthesis andcharacterization of polyurethane-coated palygorskite显示文摘Shi Jianshe Yang Xujie Han Qiaofeng 2009Ap-plied Clay Science2009,46,:1
5Preparation of lamellar magnesium hydroxide nanoparti - cles via precipitation method 显示文摘Wenjun Jiang Xiao Hua Qiaofeng Han 2009Powder Technology2009,191,:1
6Preparation of lamellar magnesium hydroxide nanoparticles via precipitation method 显示文摘WENJUN JIANG XIAO HUA QIAOFENG HAN et al 2009Powder Technology2009,191,:1
7Preparation of uniform Bi2S3 nanoribbons at a low temperature显示文摘Yan Sun Qiaofeng Han Juan Lu 2008Materials Letters2008,62,2122:1
8显示文摘Lu Juan Han Qiaofeng Yang Xujie 2007Materials Let- ters2007,61,1415:1
9Preparation of uniform Bi2S3 nanoribbons at a low temperature 显示文摘SUN Yah HAN Qiaofeng WANG Xin 2008Mater Lett2008,62,:1
10Grinding-assisted heterogeneous nucleation of BiOAc on MoS_(2) nanoflowers to heterojunction with good visible-light photocatalytic performance显示文摘Bismuth oxide subacetate(CH3COO(BiO);BiOAc)with a large band gap energy(Eg)was first applied as an ultraviolet-light-driven photocatalyst in our group.MoS_(2)nanoflowers have been used to improve the visible-light photocatalytic activity of bismuth-based semiconductors with wide Eg because of their good visible-light response.Herein,the grinding-assisted solid-state reaction method was used to prepare a MoS_(2)/BiOAc composite to improve the visible-light photoreactivity of BiOAc.As compared with commonly used wet chemical and hydrothermal routes,the grinding-assisted synthesis facilitated heterogeneous nucleation,which was beneficial to achieving close contact and subsequent charge transfer and separation at the interfaces,resulting in enhanced photocatalytic activity for malachite green,methylene blue,and antibiotic tetracycline degradation under visible-light irradiation.Notably,the dispersion in the mixing solution of ethanol and water(v/v=1)of MoS_(2)nanosheets induced self-assembly into flower-like nanostructures,thus enhancing the photocatalytic activity of MoS_(2)/BiOAc.A possible mechanism for visible-light photocatalysis of MoS_(2)/BiOAc was proposed.Huanzhen Liu Qiaofeng Han Xuemei Jia Zichen Shen 2021Particuology2021,19,3:0
11Synthesis of CdS multipods from cadmium xanthate in ethylenediamine solution显示文摘CdS nanocrystals of various shapes were synthesized by using cadmium ethyldithiocarbonatio(xanthate)as a single precursor under solvothermal condition.The reaction temperature,cadmium concentration,and solvents determine the CdS morphology.Multipodal CdS structures of different fractions of all particles were obtained at temperatures ranging from 100 to 180 ℃ with the corresponding precursor concentrations in ethylenediamine(EDA) solution.This approach is different from that reported in the literature,where EDA is regarded as a solvent favorable to the formation of CdS nanorods instead of pods.Uniform CdS multipods were prepared at 160℃ with 1.0g of cadmium xanthate.The formation of CdS multipods in EDA solution may be attributed to a synergistic effect between the reaction temperature and Cd concentration,i.e.,thermodynamicaily and kinetically controlled growth of the CdS wurtzite(WZ)and zinc blende(ZB) phases,as confirmed by the structural characterization of the component CdS crystals.EDA and xanthate ligands act as co-assisted capping agents in the growth of CdS multipods.When using N,N-dimethylformamide(DMF) and ethylene glycol(EG) as solvents,the CdS appears as triangular particles and flower-like microspheres assembled by polyhedrons,respectively.Qiaofeng Han Jin Zhao Lei Wu Junwu Zhu Xin Wang 2015Particuology2015,13,2:0
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