Списък на научните трудове на доц. д-р Татяна Табакова, представени за участие в конкурс за професор (ДВ бр 22/ )

Similar documents
Aspects of Physical Chemistry, A. Antić-Jovanović (Ed.), Belgrade, Serbia, (2006)

Applied Catalysis B: Environmental

EFFECT OF MORPHOLOGY OF NANOSTRUCTURED CERIA-BASED CATALYSTS OVER CO, SOOT AND NO OXIDATIONS

Inmaculada Rodríguez Ramos Nanostructured catalysts for sustainable chemical processes

PCCP PERSPECTIVE. Water gas shift on gold catalysts: catalyst systems and fundamental studies. 1. Introduction. Franklin (Feng) Tao* a and Zhen Ma* b

, Iran (Received 18 July 2017, Accepted 3 August 2018)

Applied Catalysis B: Environmental

Supplementary Figure 1. (a-b) EDX of Mo 2 and Mo 2

Theodore E. Madey. Department of Physics and Astronomy, and Laboratory for Surface Modification

Special Properties of Au Nanoparticles

Efficient Synthesis of Ethanol from CH 4 and Syngas on

Curriculum Vitae. Research and Scientific Activity. Dr George Avgouropoulos

Design of catalysts and photocatalysts: fascinating strategies playing with structures at the nanoscale. Paolo FORNASIERO

Expérimentation haut-débit Science ou loterie? David FARRUSSENG

Kasetsart University, Bangkok 10900, Thailand

Supporting Information. Bi-functional Catalyst with Enhanced Activity and Cycle Stability for. Rechargeable Lithium Oxygen Batteries

PROJECT 20: SUPPORTED METALS NANOPARTICLES AS CATALYST FOR THE PROX REACTION

Pyrolytic Temperature Dependent and Ash Catalyzed Formation of Sludge Char. Xiao-Qing Liu, Hong-Sheng Ding, Yuan-Ying Wang, Wu-Jun Liu, Hong Jiang*

Gold Catalyst in PROX: The Role of Dopant and Reaction Exothermicity Fang WANG

supports Lenka Matejova 1, Satu Pitkäaho 2 *, Satu Ojala 2, Tomas Cajthaml 3, Riitta L. Keiski 2 and Olga Solcova 1

The unusual properties supported gold: size, charging, support effects

Hydrogen Peroxide Direct Synthesis: from Catalyst Preparation to Continuous Reactors

Catalysts Applied in Low-Temperature Methane Oxidation

Selective CO oxidation over Fe 5 (PO 4 ) 3 (OH) 5 supported Pt catalyst: Kinetic and mechanistic studies

Sciences at Ca Foscari

Supporting Information for

The Curious Case of Au Nanoparticles

NANOSTRUCTURED GOLD SUPPORTED CATALYSTS: RELATION BETWEEN STRUCTURE AND HYDROGEN CATALYTIC ACTIVITY *

Degradation of Bisphenol A by Peroxymonosulfate Catalytically Activated with. Gui-Xiang Huang, Chu-Ya Wang, Chuan-Wang Yang, Pu-Can Guo, Han-Qing Yu*

Computational Materials Design and Discovery Energy and Electronic Applications Synthesis Structure Properties

09/ /1981 Primary school, AnHui, P.R.China. 09/ /1986 Middle school, AnHui, P.R.China

SUPPLEMENTARY INFORMATION

TPR, TPO and TPD Examination of Cu 0.15 Ce 0.85 O 2-y Mixed Oxide Catalyst Prepared by Co-precipitation Synthesis

Enhancement of catalytic activity of Au/TiO 2 by thermal and plasma treatment

1. INTRDUCTION Methanol (MeOH) production from synthesis gas has been used successfully for several decades. The lowpressure

Au-C Au-Au. g(r) r/a. Supplementary Figures

NANOSTRUCTURED OXIDES: NEW MATERIALS FOR ENERGY AND ENVIRONMENT

Catalysis by supported metal clusters and model systems

Supporting Information. Mechanistic Insight to Selective Catalytic Reduction. A DFT Study

Proceeding of ICNM st International Conference on Nanostructured Materials and Nanocomposites (6 8 April 2009, Kottayam, India)

Modern Alchemy : Catalysis by Gold Nano-particles: Part 1

NANOCATALYSIS ON NOVEL SUPPORTS GRAPHENE SHEETS AND HIGHLY POROUS COORDINATION POLYMERS

Nanotechnology for the Environment: Challenges, Risks and Research Directions

CSIC-Ins1tute for Catalysis, Madrid Materials Ontology Workshop DG RTD, CDMA-SDR-1, Brussels Miguel A. Bañares. Miguel A.

Supporting information

Supporting Information. Electronic Modulation of Electrocatalytically Active. Highly Efficient Oxygen Evolution Reaction

INORGANIC SUPPORTED POLYMERIC CATALYSTS INORGANIC SUPPORTED POLYMERIC CATALYSTS PDF ELENA GROPPO UNIVERSITY OF TORINO - ACADEMIA.

Metal free and Nonprecious Metal Materials for Energy relevant Electrocatalytic Processes. Shizhang Qiao ( 乔世璋 )

International Journal of Pure and Applied Sciences and Technology

Modeling of Electrochemical Cells: HYD Lecture 08. Composite Membranes

University of Oulu, Dept. Process and Environmental Engineering, FI University of Oulu, P.O.Box 4300

Supports, Zeolites, Mesoporous Materials - Chapter 9

Revelation of the Excellent Intrinsic Activity. Evolution Reaction in Alkaline Medium

Mechanistic Study of Selective Catalytic Reduction of NOx with C2H5OH and CH3OCH3 over Ag/Al2O3 by in Situ DRIFTS

Structure-Function Studies. in Heterogeneous Catalysis

IV.D.2 Hydrogen Storage Materials for Fuel Cell-Powered Vehicles

Supplementary Figure 1 Morpholigical properties of TiO 2-x SCs. The statistical particle size distribution (a) of the defective {001}-TiO 2-x SCs and

Catalytic Oxidation of Toluene over LaBO 3 (B=Fe, Mn and Co) and LaCo 0.7 B 0.3 O 3 (B =Fe and Mn) Perovskite-type

Preliminaries and Objectives. Experimental methods

CHAPTER Describing Chemical Reactions Reactants Products. New substances produced The arrow means yields TYPES OF EQUATIONS.

Catalysis. Catalytic nanoparticles have been used for centuries to facilitate desirable chemical reactions and to suppress unwanted byproducts.

Heterogeneous catalysis: the fundamentals Kinetics

ISISS related publications

Application Challenges for Nanostructured Porous Materials

Supporting Information

CHEM Chemical Kinetics

A mini review on the chemistry and catalysis of the water gas shift reaction

Supporting Information for. Highly active catalyst derived from a 3D foam of Fe(PO 3 ) 2 /Ni 2 P for extremely efficient water oxidation

The metal-support interaction in the oxide supported nickel nanoparticles synthesized by radiolysis

Size-dependent catalytic activity of monodispersed nickel nanoparticles for the hydrolytic dehydrogenation of ammonia borane

Tuning the Properties of Iron Nanoparticles: Doping Effects on Reactivity and Aging

Supporting Information

Rate-spectroscopic characterization of adsorption properties of carbon nanotubes

have also been successfully tested in low temperature NH 3 Noble metals, especially platinum, have been reported to be active catalysts in NH 3

Electrochemically Synthesized Multi-block

Conversion of Methane and Light Alkanes to Chemicals over Heterogeneous Catalysts Lessons Learned from Experiment and Theory

Supplementary Figures

Strategies to Synthesize Supported Bimetallic Catalysts

Synthesis gas production via the biogas reforming reaction over Ni/MgO-Al 2 O 3 and Ni/CaO-Al 2 O 3 catalysts

Self-Growth-Templating Synthesis of 3D N,P,Co-Doped. Mesoporous Carbon Frameworks for Efficient Bifunctional

Supporting Information

The Route to Better Catalysts: From Surface Science to Nanotechnology

1.11 Electrochemistry

Supplementary data Methanolysis of Ammonia Borane by Shape-Controlled Mesoporous Copper Nanostructures for Hydrogen Generation

Design of a new family of catalytic support based on thiol containing plasma polymer films

Experimental analysis of removal of SO 2 and NOx for nano Mg-Al composite oxides

Supporting Information. Cobalt Molybdenum Oxide Derived High-Performance Electrocatalyst

In Situ Nanoscale Characterization of Redox Processes in Ceria Zirconia. Introduction

Chemical Physics Letters

Supplementary Information

CHARACTERIZATION OF SILVER NANOPARTICLES PREPARED BY LASER ABLATION IN DISTILLED WATER

Environmental and Energy Catalysis by Nanostructures

Ab Initio Study of Hydrogen Storage on CNT

Selective oxidation of methane to carbon monoxide on supported palladium catalyst

High Salt Removal Capacity of Metal-Organic Gel Derived. Porous Carbon for Capacitive Deionization

Published in: Journal of Catalysis

Lotus root-like porous carbon nanofiber anchored with CoP nanoparticles as all-ph hydrogen evolution electrocatalysts

Supporting Information (SI) for

Rate of reaction refers to the amount of reactant used up or product created, per unit time. We can therefore define the rate of a reaction as:

driving agent and study of photocatalytic activity Mohammad Salehi Department of Chemistry, Iran University of Science and Technology, Narmak, Tehran

Transcription:

Списък на научните трудове на доц. д-р Татяна Табакова, представени за участие в конкурс за професор (ДВ бр 22/16.03.2012) 1. V. Idakiev, Z.-Y. Yuan, T. Tabakova, B.-L. Su, Titanium oxide nanotubes as supports of nano-sized gold catalysts for low temperature water-gas shift reaction, Appl. Catal. A:Gen., 281 (2005) 149-155. 2. T. Tabakova, F. Boccuzzi, M. Manzoli, A. Chiorino, D. Andreeva, Characterization of nanosized gold, silver and copper catalysts supported on ceria, Stud. Surf. Sci. Catal., Oxide based materials: new sources, novel phases, new applications v. 155 (2005) 493-500. 3. T. Tabakova, V. Idakiev, K. Tenchev, F. Boccuzzi, M. Manzoli, A. Chiorino, Pure hydrogen production on a new gold-thoria catalyst for fuel cell applications, Appl. Catal. B, 63 (1-2) (2006) 94-103. 4. T. Tabakova, F. Boccuzzi, M. Manzoli, J. W. Sobczak, V. Idakiev, D. Andreeva, A comparative study of nanosized I B/ceria catalysts for low-temperature water-gas shift reaction Appl. Catаl. A, 298 (2006) 127-143. 5. V. Idakiev, T. Tabakova, A. Naydenov, Z.-Y. Yuan, B.-L. Su, Gold catalysts supported on mesoporous zirconia for low-temperature water-gas shift reaction, Appl. Catal. B, 63 (3-4) (2006) 178-186. 6. F. Menegazzo, M. Manzoli, A. Chiorino, F. Boccuzzi, T. Tabakova, M. Signoretto, F. Pinna, N. Pernicone, Quantitative determination of gold active sites by chemisorption and by infrared measurements of adsorbed CO, J. Catal., 237 (2006) 431-434. 7. V. Idakiev, T. Tabakova, Z.-Y. Yuan, T-Z. Ren, X-D. Zou, B-L. Su, Gold catalysts supported on mixed oxides for hydrogen production, Stud. Surf. Sci. Catal., 162 (2006) 1017-1024. 8. G. Avgouropoulos, J. Papavasiliou, T. Tabakova, V. Idakiev, T. Ioannides, A comparative study of ceria-supported gold and copper oxide catalysts for preferential CO oxidation reaction, Chem. Eng. J., 124 (2006) 41-45. 9. F. Vindigni, M. Manzoli, A. Chiorino, T. Tabakova, F. Boccuzzi, CO adsorption on gold clusters stabilised on ceria-titania mixed oxides: Comparison with reference catalysts, J. Phys. Chem. B, 110 (2006) 23329-23336. 1

10. T. Tabakova, V. Idakiev, J. Papavasiliou, G. Avgouropoulos, T. Ioannides, Effect of additives on the WGS activity of combustion synthesized CuO/CeO 2 catalysts, Catal. Commun., 8 (2007) 101-106. 11. M. Manzoli, F. Vindigni, A. Chiorino, T. Tabakova, V. Idakiev, F. Boccuzzi, New gold catalysts supported on mixed ceria-titania oxides for water-gas shift and preferential CO oxidation reaction, React. Kin. Catal. Lett., 91 (2) (2007) 213-221. 12. G. Avgouropoulos, J. Papavasiliou, T. Tabakova, M. Manzoli, V. Idakiev, F. Boccuzzi, T. Ioannides, High purity hydrogen production over nanostructured Au/doped ceria catalysts, in Nanoscience & Nanotechnology E. Balabanova, I. Dragieva (Eds.), Issue 7, Heron Press Sci. Ser., Sofia, 2007, p. 191-194. 13. D. Andreeva, I. Ivanov, L. Ilieva, J.W. Sobczak, G. Avdeev, T. Tabakova, Nanosized gold catalysts supported on ceria and ceria-alumina for WGS reaction: influence of the preparation method, Appl. Catal. A, 333 (2007) 153 160. 14. V. Idakiev, T. Tabakova, K. Tenchev, Z.-Yong Yuan, T.-Zhen Ren, B.-Lian Su, Gold nanoparticles supported on ceria-modified mesoporous titania as highly active catalysts for low-temperature water-gas shift reaction, Catal. Today, 128 (2007) 223-229. 15. Z.-Yong Yuan, V. Idakiev, A. Vantomme, T. Tabakova, T.-Zhen Ren, B.-Lian Su, Mesoporous and nanostructured CeO 2 as supports of nano-sized gold catalysts for low-temperature water-gas shift reaction, Catal. Today, 131 (2008) 203-210. 16. T. Tabakova, V. Idakiev, J. Papavasiliou, G. Avgouropoulos, T. Ioannides, Impact of the preparation method on the water-gas shift activity of CuO/doped-ceria catalysts, Bulg. Chem. Commun., 40 (1) (2008) 42-47. 17. T. Tabakova, M. Manzoli, F. Boccuzzi, G. Avgouropoulos, J. Papavasiliou, T. Ioannides, V. Idakiev, Selective CO oxidation over nanostructured Au/Zn-CeO 2 catalyst, in Nanoscience & Nanotechnology, E. Balabanova, I. Dragieva (Eds.), Issue 8, Аcad. M. Drinov Publ. House., Sofia, 2008, p. 190-193. 18. V. Idakiev, T. Tabakova, J.-L. Cao, K. Tenchev, Z.-Y. Yuan, Nanosized gold catalysts supported on high-surface-area mesoporous Ce 0.8 Zr 0.2 O 2 support for Water-Gas Shift Reaction, in Nanoscience & Nanotechnology, E. Balabanova, I. Dragieva (Eds.), Issue 8, Аcad. M. Drinov Publ. House, Sofia, 2008, p. 199-203. 19. G. Avgouropoulos, M. Manzoli, F. Boccuzzi, T. Tabakova, J. Papavasiliou, T. Ioannides, V. Idakiev, Catalytic performance and characterization of Au/dopedceria catalysts for the preferential CO oxidation reaction, J. Catal., 256 (2008) 237-247. 2

20. T. Tabakova, V. Idakiev, G. Avgouropoulos, J. Papavasiliou, T. Ioannides, Role of the preparation method on the activity of Cu-Mn spinel oxide catalysts for LT- WGSR, Proc. 9 th Int. Conf. on Fundamental and Applied Aspects of Physical Chemistry, Ed. A. Antic-Jovanovic, Belgrade, 24-26 September 2008, vol. 1 (2008) p. 160-162. 21. M. Manzoli, G. Avgouropoulos, T. Tabakova, J. Papavasiliou, T. Ioannides, F. Boccuzzi, Preferential CO oxidation in H 2 -rich gas mixtures over Au/doped ceria catalysts, Catal. Today, 138 (2008) 238-243. 22. V. Idakiev, T. Tabakova, K. Tenchev, Z. Y. Yuan, T. Z. Ren, A. Vantomme and B. L. Su, Gold Nanoparticles Supported on Ceria-Modified Mesoporous-Macroporous Binary Metal Oxides as Highly Active Catalysts for Low-Temperature Water-Gas Shift Reaction, J. Mat. Sci., 44 (2009) 6637-6643. 23. C. Gennequin, M. Lamallem, R. Cousin, S. Siffert, V. Idakiev, T. Tabakova, A. Aboukais, B. L. Su, Total oxidation of volatile organic compounds on Au/Ce Ti O and Au/Ce Ti Zr O mesoporous catalysts, J. Mat. Sci., 44 (2009) 6654-6662. 24. S. Todorova, J.-L. Cao, T. Tabakova, K. Tenchev, G. Kadinov, Z.-Y. Yuan, V. Idakiev, Effect of preparation method on catalytic activity of CuO/Ce 0.8 Zr 0.2 O 2 catalysts in the reaction of complete n-hexane oxidation, in Nanoscience & Nanotechnology, E. Balabanova, I. Dragieva (Eds.), Аcad. M. Drinov Publ. House, Sofia, Issue 9, (2009) p.147-150. 25. T. Tabakova, M. Manzoli, F. Vindigni, V. Idakiev, F. Boccuzzi, CO-free hydrogen production for fuel cell applications over Au/CeO 2 catalysts: FTIR insight into the role of dopant J. Phys. Chem. A, 114 (2010) 3909-3915. 26. H.L. Tidahy, S. SIffert, V. Idakiev, T. Tabakova, Z.Y. Yuan, R. Cousin, A. Aboukaïs, B.L. Su, Titanium oxide nanotubes as supports of Au and/or Pd nano-sized catalysts for total oxidation of VOCs, Stud. Surf. Sci. Catal., 175 (2010) 743-746. 27. T. Tabakova, G. Avgouropoulos, J. Papavasiliou, M. Manzoli, F. Boccuzzi, K. Tenchev, F. Vindigni, T. Ioannides, CO-free hydrogen production over Au/CeO 2 - Fe 2 O 3 catalysts: Part 1. Impact of the support composition on the performance for the preferential CO oxidation reaction, Appl. Catal. B, 101 (2011) 256-265. 28. T. Tabakova, M. Manzoli, D. Paneva, F. Boccuzzi, V. Idakiev, I. Mitov, CO-free hydrogen production over Au/CeO 2 -Fe 2 O 3 catalysts: Part 2. Impact of the support composition on the performance in the water-gas shift reaction, Appl. Catal. B, 101 (2011) 266-274. 3

29. F. Vindigni, M. Manzoli, A. Damin, T. Tabakova, A. Zecchina, Surface and inner defects in Au/CeO 2 WGS catalyst: relation between Raman properties, reactivity and morphology, Chemistry - A European Journal, 17 (2011) 4356-4361. 30. T. Tabakova, Q.-F. Deng, K. Tenchev, I. Ivanov, Z.-Y. Yuan and V. Idakiev, Hydrogen production by water-gas shift reaction over gold nanoparticles supported on mesoporous Ce-Fe mixed oxides, in Nanoscience & Nanotechnology, E. Balabanova, I. Dragieva (Eds.), 11 (2011) 155-159. 31. V. Idakiev, T. Tabakova, K. Tenchev, G.-S. Shao and Z.-Y. Yuan, Gold catalysts supported on hierarchically mesoporous metal oxides (Me - Ce, Fe, Ni, V) doped titanium oxides for water-gas shift reaction, in Nanoscience & Nanotechnology, E. Balabanova, I. Dragieva (Eds.), 11 (2011) 150-154. 32. L. Ilieva, G. Munteanu, P. Petrova, T. Tabakova, J.W. Sobczak, W. Lisowski, M. Krawczyk, M.V. Abrashev, D. Andreeva, Reduction behavior of nanosized gold catalysts supported on ceria doped with CoOx, in Nanoscience and Nanotechnology, E. Balabanova, I. Dragieva (Eds.), 11 (2011) 59-63. 33. V. Idakiev, T. Tabakova, K. Tenchev, Z. Y. Yuan, T. Z. Ren, B. L. Su, Gold catalysts supported on ceria-modified mesoporous zirconia for low-temperature water-gas shift reaction, J. Porous Mat., 19 (2012) 25-30. 34. L. Ilieva, P. Petrova, T. Tabakova, R. Zanella, Z. Kaszkur, Gold catalysts on ceria doped with MeO x (Me = Fe, Mn, Co and Sn) for complete benzene oxidation: effect of composition and structure of the mixed supports, React. Kin. Mech. Catal., 105 (2012) 23-37. 35. L. Ilieva, G. Munteanu, P. Petrova, T. Tabakova, N. Velinov, I. Mitov, Effect of preparation method on the reduction behaviour of gold catalysts supported on ceria doped with FeOx: assignment and kinetic parameters of the individual reduction processes, React. Kin. Mech. Catal., 105 (2012) 39-52. 36. D. Andreeva, T. Tabakova, L. Ilieva, Ceria-based gold catalysts: synthesis, properties and catalytic performance for the WGS and PROX processes in Catalysis by ceria and related materials A. Trovarelli and P. Fornasiero (Eds), Imperial College Press, London, UK, 2012, приета за печат 37. T. Tabakova, D. Dimitrov, K. Ivanov, V. Idakiev, Role of the preparation method on catalytic activity of Ag/CeO 2 for oxidation of CO, CH 3 OH and (CH 3 ) 2 O, Научни трудове на ПУ П. Хилендарски - Химия, 38 (5) (2011) 123-135. 4

38. T. Tabakova, D. Dimitrov, K. Ivanov, M. Manzoli, F. Boccuzzi, Oxidation of CH 3 OH, (CH 3 ) 2 O and CO over nanosized gold catalysts: effect of support, in Nanoscience & Nanotechnology, E. Balabanova, I. Dragieva (Eds.), (2012) приета за печат. 39. T. Tabakova, D. Dimitrov, K. Ivanov, M. Manzoli, F. Boccuzzi, Nanosized gold and silver catalysts supported on ceria for abatement of air pollutants CH 3 OH, (CH 3 ) 2 O and CO, in Nanoscience & Nanotechnology, E. Balabanova, I. Dragieva (Eds.), (2012) приета за печат. 40. L. Ilieva, P. Petrova, T. Tabakova, R. Zanella, M.V. Abrashev, J.W. Sobczak, W. Lisowski, Z. Kaszkur, D. Andreeva, Relationship between structural properties and activity in complete benzene oxidation of Au/CeO 2 -CoO x catalysts, Catal. Today (2012) doi:10.1016/j.cattod.2012.03.006. 5