维普中文期刊产品整合服务
160篇 您的检索式:作者名="PERATHONER"
    题名 作者 年代 出处 被引量
1Electrocatalytic conversion of CO_2 to liquid fuels using nanocarbon-based electrodes显示文摘Recent advances on the use of nanocarbon-based electrodes for the electrocatalytic conversion of gaseous streams of CO2 to liquid fuels are discussed in this perspective paper. A novel gas-phase electrocatalytic cell, different from the typical electrochemical systems working in liquid phase, was developed. There are several advantages to work in gas phase, e.g. no need to recover the products from a liquid phase and no problems of CO2 solubility, etc. Operating under these conditions and using electrodes based on metal nanoparticles supported over carbon nanotube (CNT) type materials, long C-chain products (in particular isopropanol under optimized conditions, but also hydrocarbons up to C8-C9) were obtained from the reduction of CO2 . Pt-CNT are more stable and give in some cases a higher productivity, but Fe-CNT, particular using N-doped carbon nanotubes, give excellent properties and are preferable to noble-metal-based electrocatalysts for the lower cost. The control of the localization of metal particles at the inner or outer surface of CNT is an importact factor for the product distribution. The nature of the nanocarbon substrate also plays a relevant role in enhancing the productivity and tuning the selectivity towards long C-chain products. The electrodes for the electrocatalytic conversion of CO2 are part of a photoelectrocatalytic (PEC) solar cell concept, aimed to develop knowledge for the new generation artificial leaf-type solar cells which can use sunlight and water to convert CO2 to fuels and chemicals. The CO2 reduction to liquid fuels by solar energy is a good attempt to introduce renewables into the existing energy and chemical infrastructures, having a higher energy density and easier transport/storage than other competing solutions (i.e. H2 ).Chiara Genovese Claudio Ampelli Siglinda Perathoner Gabriele Centi 2013Journal of Energy Chemistry2013,22,2:4
2碳基催化剂:为开发下一代纳米工程催化材料开辟新方法(英文)显示文摘This essay analyses some of the recent development in nanocarbons (carbon materials having a defined and controlled nano-scale dimension and functional properties which strongly depend on their nano-scale features and architecture), with reference to their use as advanced catalytic materials. It is remarked how their features open new possibilities for catalysis and that they represent a new class of catalytic materials. Although carbon is used from long time in catalysis as support and electrocatalytic applications, nanocarbons offer unconventional ways for their utilization and to address some of the new challenges deriving from moving to a more sustainable future. This essay comments how nanocarbons are a key element to develop next-generation catalytic materials, but remarking that this goal requires overcoming some of the actual limits in current research. Some aspects are discussed to give a glimpse on new directions and needs for R&D to progress in this direction.Claudio Ampelli Siglinda Perathoner Gabriele Centi 2014催化学报2014,35,6:3
3Enhanced performance in the direct electrocatalytic synthesis of ammonia from N2 and H2O by an in-situ electrochemical activation of CNT-supported iron oxide nanoparticles显示文摘The direct electrocatalytic synthesis of ammonia from N2 and H2O by using renewable energy sources and ambient pressure/temperature operations is a breakthrough technology,which can reduce by over 90%the greenhouse gas emissions of this chemical and energy storage process.We report here an in-situ electrochemical activation method to prepare Fe2O3-CNT(iron oxide on carbon nanotubes)electrocatalysts for the direct ammonia synthesis from N2 and H2O.The in-situ electrochemical activation leads to a large increase of the ammonia formation rate and Faradaic efficiency which reach the surprising high values of 41.6μg mgcat^−1 h^−1 and 17%,respectively,for an in-situ activation of 3 h,among the highest values reported so far for non-precious metal catalysts that use a continuous-flow polymer-electrolytemembrane cell and gas-phase operations for the ammonia synthesis hemicell.The electrocatalyst was stable at least 12 h at the working conditions.Tests by switching N2 to Ar evidence that ammonia was formed from the gas-phase nitrogen.The analysis of the changes of reactivity and of the electrocatalyst characteristics as a function of the time of activation indicates a linear relationship between the ammonia formation rate and a specific XPS(X-ray-photoelectron spectroscopy)oxygen signal related to O2−in iron-oxide species.This results together with characterization data by TEM and XRD suggest that the iron species active in the direct and selective synthesis of ammonia is a maghemite-type iron oxide,and this transformation from the initial hematite is responsible for the in-situ enhancement of 3-4 times of the TOF(turnover frequency)and NH3 Faradaic efficiency.This transformation is likely related to the stabilization of the maghemite species at CNT defect sites,although for longer times of preactivation a sintering occurs with a loss of performances.Shiming Chen Siglinda Perathoner Claudio Ampelli Hua Wei Salvatore Abate Bingsen Zhang Gabriele Centi 2020Journal of Energy Chemistry2020,29,10:2
4显示文摘Gabriele Centi Siglinda Perathoner 2003Catalysis Today2003,7980,:2
5Review: Nature of active species in copper-based catalysts and their chemistry of transformation of nitrogen oxides 显示文摘Centi G Perathoner S 1995Applied Catalysis A: General1995,132,:2
6Role of size and pretreatment of Pd particles on their behaviour in the direct synthesis of H_2O_2显示文摘Two families of catalysts, based on Pd nanoparticles supported on ceramic asymmetric tubular alumina membranes, are studies in the direct synthesis of H_2O_2. They are prepared by depositing Pd in two ways:(i) reduction with N_2H_4 in an ultrasonic bath and(ii) by impregnation-deposition. The first preparation leads to larger particles, with average size of around 11 nm, while the second preparation leads to smaller particles, with average size around 4 nm. The catalytic membranes were tested as prepared, after thermal treatment in air and after further pre-reduction with H_2 in mild(100 ℃) conditions. Samples were characterized by TEM, CO-chemisorption monitored by DRIFTS method and TPR, while catalytic tests have been performed in a semi-batch recirculation membrane reactor. Experimental catalytic results were analysed using two kinetics models to derive the reaction constants for the parallel and consecutive reactions of the kinetic network. Smaller particles of Pd show lower selectivity due to the higher rate of parallel combustion, even if the better dispersion of Pd and thus higher metal surface area in the sample lead to a productivity in H_2O_2 similar or even higher than the sample with the larger Pd particles. Independently on the presence of smaller or larger Pd nanoparticles, an oxidation treatment leads to a significant enhancement in the productivity, although the catalyst progressively reduces during the catalytic process. The inhibition of the parallel combustion reaction(to water) induced from the calcination treatment remains after the in-situ reduction of the oxidized Pd species formed during the pre-treatment.This is likely due to the elimination of defect sites which dissociatively activate oxygen, and tentatively attributed to Pd sites able to give three- and four-fold coordination of CO.Salvatore Abate Katia Barbera Gabriele Centi Gianfranco Giorgianni Siglinda Perathoner 2016Journal of Energy Chemistry2016,25,2:2
7The energy-chemistry nexus: A vision of the future from sustainability perspective显示文摘The changing energy-chemistry nexus is discussed in this perspective paper about the future of sustainable energy and chemical production to identify the priorities and open issues on which focus research and development. Topics discussed regard(i) the new sustainable energy scenario,(ii) the role of energy storage(from smart grids to chemical storage of energy),(iii) the outlooks and role of solar(bio)refineries and solar fuels,(iv) how to integrate bio- and solar-refineries to move to new economy,(v) the role of methanol at the crossover of new energy-chemistry nexus,(vi) the role of chemistry in this new scenario,(vii) the role of nanomaterials for a sustainable energy,(viii) the use of nanocarbons to design advanced energy conversion and storage devices, and(ix) possibilities and routes to exploit solar energy and methane(shale gas). The contribution provides a glimpse of the emerging directions and routes with some elements about their possible role in the future scenario, but does not provide a detailed analysis of the state of the art in these directions.Salvatore Abate Gabriele Centi Paola Lanzafame Siglinda Perathoner 2015Journal of Energy Chemistry2015,24,5:2
8Benzene Selective Oxidation with N2O on Fe/MFI Catalysts: Role of Zeolite and Iron Sites on the Deactivation Mechanism显示文摘S. Perathoner F. Pino G. Centi G. Giordano A. Katovic J. B. Nagy 2003Topics in Catalysis (-)2003,,1:1
9显示文摘Centi G Perathoner S 2009Catalysis Today2009,148,3:1
10Catalysis: Role and Challenges for a Sustainable Energy显示文摘Gabriele Centi Siglinda Perathoner 2009Topics in Catalysis2009,,8:1
11Reaction mechanism and control of selectivity in catalysis by oxides: some challenges and open questions显示文摘CENTI G PERATHONER S 2001International Journal of Molecular Sciences2001,2,5:1
12Environmental catalysis: trends and outlook 显示文摘 Ciambelli P Perathoner S Pusso P 2002Catal today2002,75,:1
13Prognostic value of indoleamine 2,3-dioxygenase expression in colorectal cancer: effect on tumor-infiltrating T cells显示文摘Brandacher G Perathoner A Ladumer R 2006Clin Cancer Res2006,12,4:1
14The role of nanostructure in improving the performance of electrodes for energy storage and conversion显示文摘CENTI G PERATHONER S 0,,26:1
15Catalytic wet oxidation with H:O: of carboxylic acids on homogenous and heterogeneous Fenton-type catalysts 显示文摘CENTI G PERATHONER S TORRE T 2000Catalysis Today2000,55,12:1
16Role of the size and texture properties of copper-on-alumina pellets during the simultaneous removal of SOx and NOx from flue gas 显示文摘CENT1 G PERATHONER S 1997Industrial Engineering Chemical Research1997,36,:1
17Prognostic value ofindoleamine 2,3 - dioxygenase expression in colorectal cancer:Effect on tumor - infiltrating T cells 显示文摘Brandacher G Perathoner A Ladumer R 2006Clin Cancer Res2006,12,4:1
18Prognostic value of indoleamine 2, 3-dioxygenase expression in colorectal cancer: effect on tumorinfiltrating T cells 显示文摘Brandacher G Perathoner A Ladurner R 2006Clin Cancer Res2006,12,4:1
19Catalytic conversion of MTBE to biodegradable chemicals in contaminated water显示文摘CENTI G GRANDE A PERATHONER S 2002Catalysis Today2002,75,14:1
20Prognostic value of indoleamine 2,3-dioxygenase expression in colorectal cancer: effect on tumor-infiltrating T cells显示文摘Brandacher G Perathoner A Laduruer R 2006Clin Cancer Res2006,12,4:1
返回顶部 每页显示:
共8页 首页 上一页 第1页 下一页 末页 /8 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费