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31篇 您的检索式:作者名="Su Dangsheng"
    题名 作者 年代 出处 被引量
1Synthesis, Characterization, and Catalytic Application of Highly Ordered Mesoporous Alumina-Carbon Nanocomposites显示文摘高度订的 mesoporous 碳氧化铝 nanocomposites (OMCA ) 被热分解在高温度跟随的一个多部件合作集会方法第一次综合了。在这合成, resol 酚甲醛树脂(PF 树脂) 和氧化铝大音阶的第五音分别地作为模板被用作碳和氧化铝先锋和 triblock 共聚物 Pluronic F127。N2 吸附大小, X 光检查衍射,和传播电子显微镜学揭示了那,随在从 11 ~ 48 wt.% 的 nanocomposite 的氧化铝内容的增加,当订的 mesoporous 结构被保留时,毛孔尺寸从 2.9 ~ 5.0 nm 增加了。进一步增加氧化铝内容到 53 wt.% 导致了像虫孔的结构,尽管毛孔尺寸分发仍然是狭窄的。nanocomposite 墙由连续的碳和非结晶的氧化铝组成,它允许订的 mesostructure 被 HF 在空中由锻烧蚀刻或碳的移动很好甚至在氧化铝的移动以后保存。OMCA nanocomposites 低于 1000 展出了好Jinming Xu Aiqin Wang Xiaodong Wang Dangsheng Su Tao Zhang 2011Nano Research2011,4,1:5
2A Novel Ion-exchange Method for the Synthesis of Nano-SnO/micro-C Hybrid Structure as High Capacity Anode Material in Lithium Ion Batteries显示文摘A novel and simple ion-exchange method was developed for the synthesis of nano-SnO/micro-C hybrid structure. The structure of the as prepared nano-SnO/micro-C was directly revealed by scanning electron microscopy(SEM) and transmission electron microscopy(TEM).SnO particles with the size about 25 nm were well confined in amorphous carbon microparticles.Carbon matrix in micrometer scale not only acts as a protective buffer for the SnO nanoparticles during the battery cycling processes,but also avoids the shortcomings of nanostructures, such as low tap density and potential safety threats.Electrochemical behaviors of the nano-SnO/micro-C were tested as anode material in lithium ion batteries.The initial reversible capacity is 508 mA h g^(-1),and the reversible capacity after 60 cycles is 511 mA h g^(-1),indicating good capacity retention ability.Zhi Tan Zhenhua Sun Qi Guo Haihua Wang Dangsheng Su 2013Journal of Materials Science & Technology2013,29,7:3
3Palladium nanoclusters immobilized on defective nanodiamond-graphene core-shell supports for semihydrogenation of phenylacetylene显示文摘We report a nanocarbon material with nanodiamond(ND) core and graphene shell(ND@G) as a support for Pd nanocatalysts. The designed catalyst performed good selectivity of styrene(85.2%) at full conversion of phenylacetylene and superior stability under mild conditions. Supported Pd catalysts are characterized by means of high resolution transmission electron microscopy(HRTEM), Raman, X-ray diffraction(XRD), X-ray photoelectron spectroscopy(XPS) and H2 temperature-programmed reduction(H2-TPR).The results clearly show that formation of the strong metal-support interaction(SMSI) between Pd nanoclusters and the defective graphene shell helpfully modifies the selectivity and stability of the Pd-based catalysts.Fei Huang Zhimin Jia Jiangyong Diao Hua Yuan Dangsheng Su Hongyang Liu 2019Journal of Energy Chemistry2019,28,6:2
4Surface Chemis- try and Catalytic Reactivity of a Nanodiamond in the Steam- Free Dehydrogenation of Ethylbenzene显示文摘ZhangJian Su Dangsheng Blume R 2010Angew Chem Int Ed2010,49,46:1
5Nanocarbon as Robust Catalyst: Mechanistic Insight into Carbon-Mediated Catal- ysis显示文摘ZhangJian Su Dangsheng Zhang Aihua 2007Angew Chem2007,46,38:1
6Pd and Pt catalysts modified by alloying with Au in the selective oxidation of alcohols显示文摘Nikolaos Dimitratos Alberto Villa Di Wang Francesca Porta Dangsheng Su Laura Prati 2006Journal of Catalysis2006,,1:1
7Facile-fabricated iron oxide nanorods as a catalyst for hydrogenation of nitrobenzene显示文摘b-FeOOH nanorods were prepared by a poly ethylene glycol(PEG) assisted precipitation of FeCl_3·6 H_2O aqueous solution with urea. Na_2CO_3 aqueous solution was introduced to maintain their shapes under annealing. The one-dimensional porous iron oxide nanorods were synthesized successfully. The asprepared catalysts were characterized by X-ray diffraction, transmission electron microscopy, N_2 adsorption-desorption isotherms and X-ray photoelectron spectroscopy. The hydrogenation of nitrobenzene to aniline was taken as probe reaction to evaluate their catalytic performance. FeOOH(iron oxides hydroxide) nanorods, fabricated by annealing b-FeOOH nanorods at 250℃ in Ar atmosphere for 4h, exhibited high catalytic activity for the transfer hydrogenation of nitrobenzene to aniline with hydrazine hydrate as hydrogen donors.Yanshuang Ma Liyun Zhang Wen Shi Yiming Niu Bingsen Zhang Dangsheng Su 2019Chinese Chemical Letters2019,30,1:1
8Nanocarbons for the development of advanced catalysts 显示文摘Su Dangsheng Perathoner Siglinda Centi Gabriele 2013Chemical Reviews2013,113,8:1
9Metal-free I heterogeneous catalysis for sustainable chemistry 显示文摘Su Dangsheng Zhang Jian Frank Benjamin Thomas Arne Wang Xinchen Paraknowitsch Jens Schlogl Robert 2010ChemSusChem2010,3,2:1
10Surface chemistry and catalytic reactivity of a nanodiamond in the steam-free dehydrogenation of ethylbenzene 显示文摘Zhang Jian Su Dangsheng Blume Raoul Schlfgl Robert Wang Rui Yang Xiangguang Gajovi6 Andreja 2010Angewandte Chemie International Edition2010,49,46:1
1120 years of carbon nanotubes 显示文摘Su Dangsheng 2011Chem Sus Chem2011,,4:1
12Carbon-catalyzed oxidative dehydrogenation of n-butane: selective site formation during sp(3)-to-sp(2) lattice rearrangement 显示文摘Liu Xi Frank Benjamin Zhang Wei Cotter Thomas P Schl6gl Robert Su Dangsheng 2011Angewandte Chemic International Edition2011,50,14:1
1320 years of carbon nanotubes显示文摘Su Dangsheng 2011Chem SusChem2011,4,7:1
14Surface chemistry and catalytic reactivity of a nanodiamond in the steam-free dehydrogenation of ethylbenzene 显示文摘Zhang Jian Su Dangsheng Blume Raoul 2010Angew Chem lnt Ed2010,49,:1
15Nanocarbon as robust catalyst: mechanistic insight into carbon-mediated catalysis 显示文摘Zhang Jian Su Dangsheng Zhang Aihua 2007Angew Chem2007,119,:1
16Simple Preparation of Honeycomb-Like Macrostructured and Microporous Carbons with High Performance in Oxidative Dehydrogenation of Ethylbenzene 显示文摘Wang Lifang Zhang Jian Su Dangsheng 2007Chem Mater2007,19,11:1
17Nitrogen functionalized carbon nanostructures supported Pd and Au–Pd NPs as catalyst for alcohols oxidation显示文摘Alberto Villa Di Wang Paolo Spontoni Rosa Arrigo Dangsheng Su Laura Prati 2010Catalysis Today2010,,1:1
18Nitrogen-dopedsp2-hybridized carbon as a superior catalyst for selective oxidation 显示文摘Gao Yongjun Hu Gang Zhong Jun Shi Zujin Zhu Yuanshuai Su Dangsheng Wang Jianguo Bao Xinhe Ma Ding 2013Angewandte Chemic International Edition2013,52,7:1
19Phosphate modified carbon nanotubes for oxidative dehydrogenation of n-butane显示文摘Catalytic performance of phosphate-modified carbon nanotube(PoCNT) catalysts for oxidative dehydrogenation(ODH) of n-butane has been systematically investigated. The Po CNT catalysts are characterized by SEM, TEM, XPS and TG techniques. We set the products selectivity as a function of butane conversion over various phosphate loading, and it is found that the PoCNT catalyst with the 0.8% phosphate weight loading(0.8PoCNT) exhibits the best catalytic performance. When the phosphate loading is higher than 0.8 wt%, the difference of catalytic activity among the PoCNT catalysts is neglectable. Consequently, the ODH of n-butane over the 0.8PoCNT catalyst is particularly discussed via changing the reaction conditions including reaction temperatures, residence time and n-butane/O_2 ratios. The interacting mechanism of phosphate with the oxygen functional groups on the CNT surface is also proposed.Yajie Zhang Rui Huang Zhenbao Feng Hongyang Liu Chunfeng Shi Junfeng Rong Baoning Zong Dangsheng Su 2016Journal of Energy Chemistry2016,25,3:1
20Synthesis of TiO2 Thin Films: Relationship Between Preparation Conditions and Nanostructure显示文摘C. Ampelli Rosalba Passalacqua Siglinda Perathoner Gabriele Centi Dangsheng S. Su Gisela Weinberg 2008Topics in Catalysis (-)2008,,1:1
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