4. Nov. 2004 ... List of Publications / Uwe Schröder. Books. Co-Editor of: Bioelectrochemical
Systems: from Extracellular Electron Transfer to Biotechnological.
Publikationen
Bücher Co‐Editor of: Bioelectrochemical Systems: from Extracellular Electron Transfer to Biotechnological Application, Editors K. Rabaey, L. Angenent, U. Schröder, J. Keller; IWA Publishing., 2010; ISBN: 9781843392330
The Electrochemistry of Immobilized Particles and Droplets – Experiments with Three‐Phase Electrodes (2nd Edition) F. Scholz, U. Schröder, R. Gulaboski, Antonio Doménech‐Carbo Springer –Verlag Berlin Heidelberg, 2014, ISBN: 978‐3‐319‐10842‐1
The Electrochemistry of Immobilized Particles and Droplets F. Scholz, U. Schröder, R. Gulaboski Springer –Verlag Berlin Heidelberg, 2005, ISBN: 3‐540‐22005‐4 Praktikum der Elektroanalytik U. Schröder und H. Kahlert Metrohm Monographien, Metrohm AG, Herisau, Schweiz, 2002
Bucheinträge, Kapitel, sonstige Beiträge „Electrofuels“ –Elektrochemie als Werkzeug für nachhaltige Kraftstoffsynthesen, Uwe Schröder, Tatiane dos Santos, Peter Nilges, Falk Harnisch; in: Kraftstoffe für die Mobilität von morgen, Edited by Jürgen Krahl, Axel Munack, Peter Eilts, Jürgen Bünger (1. Tagung der Fuels Joint Research Group); Cuvillier Verlag Göttingen, 2014, ISBN: 978‐3‐95404‐802‐1, eISBN: 978‐3‐7369‐4802‐0 Biofilms, electroactive, Uwe Schröder & Falk Harnisch; in: Encyclopedia of Applied Electrochemistry, Edited by Gerhard Kreysa, Kenichiro Ota, Robert F. Savinell; Springer Verlag, 2014, ISBN: 978‐1‐4419‐ 6995‐8 (Print) 978‐1‐4419‐6996‐5 (Online)
From Microbial Bioelectrocatalysis to Microbial Bioelectrochemical Systems, Uwe Schröder, Falk Harnisch; in: Advances in Electrochemical Sciences and Engineering, Volume 14: Electrocatalysis, Edited by: Richard C. Alkire, Dieter M. Kolb, Ludwig A. Kibler, Jacek Lipkowski, Wiley VCH, 2014, Print ISBN: 9783527332274
Bioelectrochemical Systems for a Sustainable Future, Uwe Schröder; in: Chemical Process Technology for a Sustainable Future, Edited by: Trevor Letcher, Janet Scott and Darrell Patterson, RSC, 2014
„Mikroben elektrifiziert: Von der Abwasserreinigung zur Bioelektrotechnologie“, Miriam A. Rosenbaum, Uwe Schröder, Falk Harnisch, Biologie in unserer Zeit 2 (2013) 96‐103
„Mikrobielle Brennstoffzellen und ihr Weg in die Anwendung“, Uwe Schröder & Falk Harnisch, Laborpraxis, 35, 7‐8, 2011, 20‐22
Autor des Themenschwerpunktes Bioelektrochemie des RÖMPP Online (Bioelektrochemie, Bioelektrochemische Zellen, Biobrennstoffzellen), Georg Thieme Verlag
Book Review on “Biomass to Biofuels: Strategies for Global Industries; Vertes (ed), Qureshi (ed), Yukawa (ed) & Blaschek (ed), John‐Wiley & Sons, 2010) in Clean 39 (2011) 1022
“Microbial fuel cells and bioelectrochemical systems: industrial and environmental biotechnologies based on extracellular electron transfer” F. Harnisch, F. Aulenta & U. Schröder; in: Comprehensive Biotechnology, Edited by: A. Spiros, M. Butler, Z. Cui, B. Grodzinski, A. Moreira, C. Webb, Elsevier, Amsterdam, 2011, Volume 6: Environmental Biotechnology and Safety, Pages 643–659
"Electrochemical Losses in Bioelectrochemical Systems" U. Schröder & F. Harnisch; in: Bioelectrochemical Systems: from Extracellular Electron Transfer to Biotechnological Application, Editors K. Rabaey, L. Angenent, U. Schröder, J. Keller; IWA Publishing, 2010
"Chemically catalyzed cathodes in bio‐electrochemical systems" R.A. Rozendal, F. Harnisch, A.W. Jeremiasse, and U. Schröder; in: Bioelectrochemical Systems: from Extracellular Electron Transfer to Biotechnological Application, Editors K. Rabaey, L. Angenent, U. Schröder, J. Keller; IWA Publishing, 2010
"Outlook: Research Directions and New Applications in BES " J. Keller, R.A. Rozendal, L.T. Angenent, U. Schröder, P. Lens, K. Rabaey in: Bioelectrochemical Systems: from Extracellular Electron Transfer to Biotechnological Application, Editors K. Rabaey, L. Angenent, U. Schröder, J. Keller; IWA Publishing, 2010
"Advanced Fuel Cells ‐ Biological Fuels and Concepts" Uwe Schröder in: Encyclopedia of Electrochemical Power Sources, Editor J. Garche Elsevier B.V., 2009
Einträge im "Dictionary of Electrochemical Science", Editors A. Bard, G. Inzelt, F. Scholz, Springer Verlag, 2008 sowie im "Dictionary of Electrochemical Science", Editors A. Bard, G. Inzelt, F. Scholz, Springer Verlag, 2nd Edition, 2012 (in press)
"Concepts and perspectives with microbial fuel cells" in: Stuttgarter Berichte zur Siedlungswasserwirtschaft (2007), 191 (Innovative Energiekonzepte fuer Klaeranlagen), 113‐120
"Biologische Brennstoffzellen ‐ Strom aus mikrobiellen Kraftwerken? Konzepte und Perspektiven mikrobieller Brennstoffzellen" In: Aktuelle Wochenschau der GDCh‐Fachgruppe Angewandte Elektrochemie, 2006
Book Review on “Elektrochemie“, 3rd edn & „Electrochemistry“; Hamann, Hemnett, Vielstich in J. Solid State Electrochem (2000) 4: 473 (U. Schröder)
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Patente Falk Harnisch, Uwe Schröder, Martin Bröring Redox electrolyte with redox‐active substance for redox flow batteries Patent Nummer: DE 102012015176, Publikation: 6.2.2014
Zeitschriftenbeiträge 1. D. Hass, H. Holfter, U. Schröder Zum Reaktionsverhalten funktionalisierter Fluorolefine J. Fluorine Chem. 69 (1994) 89‐95
2. A. Dostal, B. Meyer, F. Scholz, U. Schröder, A. M. Bond, F. Marken, Sh. J. Shaw Electrochemical study of microcrystalline solid Prussian Blue particles mechanically attached to graphite and gold electrodes: Electrochemically induced lattice construction J. Phys. Chem. 99 (1995) 2096‐2103
3. A. Dostal, U. Schröder, F. Scholz Electrochemistry of chromium(II) hexacyanochromate(III) and electrochemically induced isomerization of solid iron(II) hexacyanochromate(III) mechanically immobilized on the surface of a graphite electrode Inorg. Chem. 34 (1995) 1711‐1717
4. F. Scholz, U. Schröder, S. Meyer, Kh. Z. Brainina, N. F. Zakharchuk, N. V. Sobolev, O. A. Kozmenko The electrochemical response of radiation defects of non‐conducting materials. An electro‐chemical access to age determinations Journal of Electroanal. Chem. 385 (1995) 139‐142
5. U. Schröder, B. Meyer, F. Scholz A cell for in situ incident‐light microscopy for the study of solid state electrochemical reactions Fresenius` Journal of Analytical Chemistry 356 (1996) 295‐298
6. U. Schröder, F. Scholz Microscopic in situ diffuse reflectance spectroelectrochemistry of solid state electrochemical reactions of particles immobilized on electrodes Journal of Solid State Electrochemistry 1 (1997) 62‐67
7. N. F. Zakharchuk, N. Naumov, R. Stösser, U. Schröder, F. Scholz, H. Mehner Solid state electrochemistry, X‐ray powder diffraction, magnetic susceptibility, ESR, Mössbauer and diffuse reflectance spectroscopy of mixed iron(III)‐cadmium(II) hexacyanoferrates Journal of Solid State Electrochemistry 3 (1999) 264‐276
8. U. Schröder, K. B. Oldham, J. C. Myland, P. J. Mahon, F. Scholz Modelling of solid state voltammetry of immobilized microcrystals assuming an initiation of the electrochemical reaction at a three‐phase junction Journal of Solid State Electrochemistry 4 (2000) 314‐324
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9. U. Schröder, F. Scholz The Solid‐State Electrochemistry of Metal Octacyanomolybdates, Octacyano‐tungstates, and Hexacyanoferrates Explained on the Basis of Dissolution and Reprecipitation Reactions, Lattice Structures, and Crystallinities Inorganic Chemistry 39(5) (2000) 1006‐1015.
10. J. C. Ball, F. Marken, Q. Fulian, J. D. Wadhawan, A. N. Blythe, U. Schröder, R. G. Compton, S. D. Bull, S. G. Davies Voltammetry of electroactive oil droplets. Part II: comparison of experimental and simulation data for coupled ion and electron insertion processes and evidence for microscale convection Electroanalysis 12(13) (2000) 1017‐1025.
11. J. D. Wadhawan, U. Schröder, A. Neudeck, S. J. Wilkins, R. G. Compton, F. Marken, C. S. Consorti, R. F. de Souza, J. Dupont Ionic liquid modified electrodes. Unusual partitioning and diffusion effects of Fe(CN)64‐/3‐ in droplet and thin layer deposits of 1‐methyl‐3‐(2,6‐(S)‐dimethylocten‐ 2‐yl)‐imidazolium tetra‐fluoroborate Journal of Electroanalytical Chemistry 493 (2000) 75‐83.
12. U. Schröder*, J. D. Wadhawan, R. G. Compton, F. Marken, P. A. Z. Suarez, C. S. Consorti, R. F. de Souza, J. Dupont Water‐induced accelerated ion diffusion: voltammetric studies in 1‐methyl‐3‐[2,6‐(S)‐di‐methylocten‐ 2‐yl]imidazolium tetrafluoroborate, 1‐butyl‐3‐methylimidazolium tetrafluoro‐borate and hexafluorophosphate ionic liquids New Journal of Chemistry 24 (2000) 1009‐1015.
13. U. Schröder*, R. G. Compton, F. Marken, S. D. Bull, S. G. Davies,S. Gilmour Electrochemically Driven Ion Insertion Processes across Liquid|Liquid Boundaries: Neutral versus Ionic Redox Liquids Journal of Physical Chemistry B 105 (2001) 1344‐1350.
14. T. Grygar, F. Marken, U. Schröder, F. Scholz The Electrochemical Analysis of Solids Coll. Czech. Chem. Commun. 67 (2002) 163‐208.
15. Uwe Schröder*, Jay Wadhawan, Russell G. Evans, Richard G. Compton, Bill Wood, David J. Walton, Robert R. France, Frank Marken, Philip C. Bulman Page, Colin M. Hayman Probing Thermodynamic Aspects of Electrochemically Driven Ion‐Transfer Processes Across Liquid|Liquid Interfaces: Pure versus Diluted Redox Liquids Journal of Physical Chemistry B 106 (2002) 8697‐8704
16. Jay Wadhawan, Russell G. Evans, CE Banks, SJ Wilkins, RR France, NJ Oldham, AJ Fairbanks, B Wood, DJ Walton, Uwe Schröder, Richard G Compton Voltammetry of electroactive oil droplets: Electrochemically‐induced ion insertion, expulsion and reaction processes at microdroplets of N,N,N ',N '‐tetraalkyl‐para‐phenylenediamines (TRPD, R = n‐ butyl, n‐hexyl, n‐heptyl‐and n‐nonyl) Journal of Physical Chemistry B 106 (2002): 9619‐9632 4
17. Uwe Schröder*, Juliane Niessen, Fritz Scholz A generation of microbial fuel cells with current outputs boosted by more than one order of magnitude Angewandte Chemie 115 (2003) 2986‐2989, Angewandte Chem. int. edn 42 (2003) 2880‐2883
18. Fritz Scholz, Uwe Schröder Bacterial Batteries (News and Views) Nature Biotechnology 21 (2003) 1151‐1152
19. Juliane Niessen, Uwe Schröder*, Miriam Rosenbaum, Fritz Scholz Fluorinated Polyanilines as Superior Materials for Electrocatalytic Anodes in Bacterial Fuel Cells Electrochemistry Communications 6 (2004) 571‐575
20. Juliane Niessen, Uwe Schröder*, Fritz Scholz Exploiting complex carbohydrates for microbial electricity generation – a bacterial battery operating on starch Electrochemistry Communications 6 (2004) 955‐958
21. Juliane Niessen, Uwe Schröder*, Falk Harnisch, Fritz Scholz Gaining electricity from in situ oxidation of hydrogen produced by fermentative cellulose degradation Letters in Applied Microbiology 41 (2005) 286–290
22. Miriam Rosenbaum, Uwe Schröder*, Fritz Scholz Utilizing the Green Alga Chlamydomonas reinhardtii for Microbial Electricity Generation: A Living Solar Cell Applied Microbiology & Biotechnology 68 (2005) 753‐756
23. Miriam Rosenbaum, Uwe Schröder*, and Fritz Scholz In Situ Electrooxidation of Photobiological Hydrogen in a Photobioelectrochemical Fuel Cell Based on Rhodobacter sphaeroides Environmental Science & Technology, 39 (2005) 6328 ‐6333
24. Uwe Schröder*, Miriam Rosenbaum, Juliane Niessen, Falk Harnisch, Fritz Scholz Biological fuel cells exploiting the in situ oxidation of hydrogen synthesized via heterotrophic, photoheterotrophic and photosynthetic microbiological activity Preprints of Symposia ‐ American Chemical Society, Division of Fuel Chemistry 50 (2005) 713‐714
25. Feng Zhao, Falk Harnisch, Uwe Schröder*, Fritz Scholz, Peter Bogdanoff, Iris Herrmann Application of pyrolysed iron(II) phthalocyanine and CoTMPP based oxygen reduction catalysts as cathode materials in microbial fuel cells Electrochemistry Communications 7 (2005) 1405–1410
25. Miriam Rosenbaum, Uwe Schröder*, Fritz Scholz Investigation of the electrocatalytic oxidation of formate and ethanol at platinum black under microbial fuel cell conditions 5
Journal of Solid State Electrochemistry 10 (2006) 872 ‐ 878
27. Juliane Niessen, Falk Harnisch, Miriam Rosenbaum, Uwe Schröder*, Fritz Scholz Heat Treated Soil as Convenient and Versatile Source of Bacterial Communities for Microbial Electricity Generation Electrochemistry Communications 8 (2006) 869‐873
28. Feng Zhao, Falk Harnisch, Uwe Schröder*, Fritz Scholz, Peter Bogdanoff, Iris Herrmann Challenges and Constraints of Using Oxygen Cathodes in Microbial Fuel Cells Environmental Science & Technology 40 (2006) 5191‐5199
29. Bruce Logan*, Bert Hamelers, René Rozendal, Uwe Schröder, Jurg Keller, Stefano Freguia, Peter Aelterman, Willy Verstraete, Korneel Rabaey Microbial Fuel Cells: Methodology and Technology Environmental Science & Technology 40 (2006) 5181‐5191
30. Miriam Rosenbaum, Feng Zhao, Uwe Schröder*, Fritz Scholz Interfacing Electrocatalysis and Biocatalysis with Tungsten Carbide: A High Performance Noble‐Metal‐ Free Microbial Fuel Cell Angewandte Chemie 118 (2006) 6810‐6813, Angewandte Chem. int. edn. 45 (2006) 6658‐6661
31. Miriam Rosenbaum, Feng Zhao, Marion Quaas, Harm Wulff, Uwe Schröder*, Fritz Scholz Evaluation of Catalytic Properties of Tungsten Carbide for the Anode of Microbial Fuel Cells Applied Catalysis B – Environmental 74 (2007) 262‐270
32. Uwe Schröder Anodic Electron Transfer Mechanisms in Microbial Fuel Cells and their Energy Efficiency Physical Chemistry Chemical Physics (Invited Article) 9 (2007) 2619 ‐ 2629
33. Falk Harnisch, Uwe Schröder*, Fritz Scholz The Suitability of Monopolar and Bipolar Ion Exchange Membranes as Separators for Biological Fuel Cells Environmental Science & Technology 42 (2008) 1740‐1746
34. Uwe Schröder From Wastewater to Hydrogen ‐ Biorefineries based on Microbial Fuel Cell Technology? (Highlight) ChemSusChem 1 (2008) 281‐282
35. Katja Fricke, Falk Harnisch, Uwe Schröder* On the Use of Cyclic Voltammetry for the Study of the Anodic Electron Transfer in Microbial Fuel Cells Energy and Environmental Science 1 (2008) 144‐147
36. Ying Liu, Falk Harnisch, Katja Fricke, Rabea Sietmann, Uwe Schröder* Improvement of the Anodic Bioelectrocatalytic Activity of Mixed Culture Biofilms by a Simple Consecutive Electrochemical Selection Procedure Biosensors and Bioelectronics 24 (2008) 1006‐1011
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37. Falk Harnisch, Uwe Schröder*, Marion Quaas, Fritz Scholz Electrocatalytic and Corrosion Behaviour of Tungsten Carbide in near‐neutral pH Electrolytes Applied Catalysis B – Environmental 87 (2009) 63‐69
38. Olivier Schaetzle, Frédéric Barrière, Uwe Schröder An improved microbial fuel cell with laccase as the oxygen reduction catalyst Energy and Environmental Science 2 (2009) 96‐99
39. Falk Harnisch, Natalie Savastenko, Feng Zhao, Hartmut Steffen, Volker Brüser, Uwe Schröder Comparative study on the performance of pyrolyzed and plasma ‐ treated iron(II) phthalocyanine ‐ based catalysts for oxygen reduction in pH neutral electrolyte solutions Journal of Power Sources 193 (2009) 86‐92
40. Falk Harnisch, Gustav Sievers, Uwe Schröder* Tungsten Carbide as Electrocatalyst for the Hydrogen Evolution Reaction in pH neutral Electrolyte Solutions Applied Catalysis B – Environmental 89 (2009) 455‐458
41. Falk Harnisch, Robert Warmbier, Ralf Schneider, Uwe Schröder* Modeling the ion transfer and polarization of ion exchange membranes in bioelectrochemical systems Bioelectrochemistry 75 (2009) 136‐141
42. Falk Harnisch, Uwe Schröder Selectivity versus mobility: How to separate anode and cathode in microbial bioelectrochemical systems? ChemSusChem 2 (2009) 921‐926
43. Falk Harnisch, Sebastian Wirth, Uwe Schröder Effects of substrate and metabolite crossover on the cathodic oxygen reduction reaction in microbial fuel cells: Platinum versus iron(II) phthalocyanine based electrodes Electrochemistry Communications 11 (2009) 2253‐2256
44. Miriam Rosenbaum & Uwe Schröder* Photomicrobial solar and fuel cells Electroanalysis, 22 (2010) 844‐855
45. Y. Liu, F. Harnisch, U. Schröder, K. Fricke, V. Climent, J. M. Feliu The study of electrochemically active mixed culture microbial biofilms on different carbon‐based anode materials Biosensors & Bioelectronics 25 (2010) 2167‐2171
46. Sunil Patil, Falk Harnisch, Uwe Schröder Toxicity response of electroactive microbial biofilms ‐ a decisive feature for potential biosensor and power source applications ChemPhysChem 11 (2010) 2834‐2837
47. Sunil Patil, Falk Harnisch, Balasaheb Kapadnis, Uwe Schröder 7
Electroactive mixed culture biofilms in microbial bioelectrochemical systems: The role of temperature for biofilm formation and performance Biosensors & Bioelectronics 26 (2010) 803‐808
48. Falk Harnisch & Uwe Schröder Keeping intermediates on the track: Towards tailored metabolons for bioelectrocatalysis Biofuels (Key Paper Evaluation) 1(5) (2010) 677‐680
49. Falk Harnisch & Uwe Schröder From MFC to MXC: Chemical and biological cathodes and their potential for microbial bioelectrochemical systems Chemical Society Reviews 39 (2010) 4433–4448
50. Maria Möller, Peter Nilges, Falk Harnisch, Uwe Schröder Subcritical water as reaction environment: Fundamentals of hydrothermal biomass transformation ChemSusChem 4 (2011), 566‐579
51. Diego Millo*, Falk Harnisch*, Sunil A. Patil, Hoang K. Ly, Uwe Schröder & Peter Hildebrandt In Situ Spectroelectrochemical Investigation of Electrocatalytic Microbial Biofilms by Surface‐ Enhanced Resonance Raman Spectroscopy Angewandte Chemie Int. Ed. 50 (2011) 2625‐2627 Spektroelektrochemische In‐situ‐Untersuchung von elektrokatalytischen mikrobiellen Biofilmen mit oberflächenverstärkter Resonanz‐Raman‐Spektroskopie Angewandte Chemie 123 (2011) 2673‐2675
52. Shuiliang Chen, Haoqing Hou, Falk Harnisch, Sunil A. Patil, Alessandro A. Carmona‐Martinez, Seema Agarwal, Yiyun Zhang, Suman Sinha‐Ray, Alexander L. Yarin*, Andreas Greiner*, Uwe Schröder* Electrospun and solution blown three‐dimensional carbon fiber nonwovens for application as electrodes in microbial fuel cells Energy and Environmental Science 4 (2011) 1417‐1421
53. Falk Harnisch*, Christin Koch, Sunil A. Patil, Thomas Hübschmann, Susann Müller, Uwe Schröder Revealing the electrochemically driven selection in natural community derived microbial biofilms using flow–cytometry Energy and Environmental Science 4 (2011) 1265‐1267
54. Largus T. Angenent, Miriam Rosenbaum, Bruce E. Logan, Korneel Rabaey, Rene A. Rozendal, Uwe Schröder Comments on “Electricity generation by Enterobacter cloacae SU‐1 in mediator less microbial fuel cell” by Samrot et al., Int. J. Hydrogen Energy, 35 (15) 2010, 7723‐7729 International Journal of Hydrogen Energy 36 (2011) 9396‐9397
55. Alessandro A. Carmona‐Martinez, Falk Harnisch, Lisa A. Fitzgerald, Justin C. Biffinger, Bradley R. Ringeisen, Uwe Schröder Cyclic voltammetric analysis of the electron transfer of Shewanella oneidensis MR‐1 and nanofilament and cytochrome knock‐out mutants Bioelectrochemistry 81 (2011) 74‐80 8
56. Uwe Schröder Discover the possibilities: Microbial Bioelectrochemical Systems and the Revival of a 100 year‐old discovery Journal of Solid State Electrochemistry 15 (2011) 1481‐1486 (Invited Article)
57. Sebastian Wirth, Falk Harnisch*, Antje Quade, Manuela Brüser, Volker Brüser, Uwe Schröder, Natalie A. Savastenko* Enhanced activity of non‐noble metal electrocatalysts for the oxygen reduction reaction using low temperature plasma treatment Plasma Processes and Polymers 8 (2011) 914‐922
58. Shuiliang Chen*, Guanghua He, Alessandro A. Carmona‐Martinez, Seema Agarwal, Andreas Greiner, Haoqing Hou, Uwe Schröder Electrospun carbon fiber mat with layered architecture for anode in microbial fuel cells Electrochemistry Communications 13 (2011) 1026‐1029
59. Sunil A. Patil, Falk Harnisch*, Christin Koch, Thomas Hübschmann, Ingo Fetzer, Alessandro A. Carmona‐Martinez, Susann Müller*, Uwe Schröder Electroactive mixed culture derived biofilms in microbial bioelectrochemical systems: The role of pH on biofilm formation, performance and composition Bioresource Technology 102 (2011), 9683–9690
60. Guanghua He, Yanli Gu, Shuijian He, Uwe Schröder, Shuiliang Chen*, Haoqing Hou Effect of fiber diameter on the behavior of biofilm and anodic performance of fiber electrodes in microbial fuel cells Bioresource Technology 105 (2011) 10763‐10766
61. Peter Nilges, Tatiane dos Santos, Falk Harnisch, Uwe Schröder Electrochemistry for biofuel generation: Electrochemical conversion of levulinic acid to octane Energy and Environmental Science 5 (2012) 5231‐5235
62. Shuiliang Chen, Yu Chen, Guanghua He, Shuijian He, Uwe Schröder, Haoqing Hou Stainless steel mesh supported nitrogen doped carbon nanofibers for binder‐free cathode in microbial fuel cells Biosensors & Bioelectronics 34 (2012) 282‐285
63. Maria Möller, Falk Harnisch, Uwe Schröder Microwave‐assisted hydrothermal degradation of fructose and glucose in subcritical water Biomass & Bioenergy 39 (2012) 389‐398
64. Shuiliang Chen, Guanghua He, Xiaowu Hu, Mingyun Xie, Suqin Wang, Daojie Zeng, Haoqing Hou, Uwe Schröder A Three‐Dimensionally Ordered Macroporous Carbon Derived From a Natural Resource as Anode for Microbial Bioelectrochemical Systems ChemSusChem 5 (2012) 1059‐1063
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65. Uwe Schröder Microbial Fuel Cells and Microbial Electrochemistry: Into the Next Century! ChemSusChem 5 (2012) 959‐961 (Editorial)
66. Alessandro A. Carmona‐Martinez, Falk Harnisch, Ute Kuhlicke, Thomas Neu, Uwe Schröder Electron transfer and biofilm formation of Shewanella putrefaciens as function of anode potential Bioelectrochemistry 93 (2013) 23‐29
67. Uwe Schröder "From in vitro to in vivo ‐ biofuel cells are maturing" Angewandte Chemie Int. Ed. 51 (2012) 7370‐7372 „Von in vitro zu in vivo – Biobrennstoffzellen werden erwachsen“ Angewandte Chemie 124 (2012) 7484‐7486 68. Sebastian Wirth, Falk Harnisch, Markus Weinmann, Uwe Schröder* Comparative Study of IVB‐VIB Transition Metal Compound Based Electrocatalysts on for the Hydrogen Evolution Reaction Applied Catalysis B – Environmental 126 (2012) 225‐230
69. Shuiliang Chen, Guanghua He, Qin Liu, Falk Harnisch, Yan Zhou, Yu Chen, Hanif Muddasir, Suqin Wang, Xinwen Peng, Haoqing Hou, Uwe Schröder Layered corrugated electrode macrostructures boost microbial bioelectrocatalysis Energy and Environmental Science 5 (2012) 9769‐9772
70. Falk Harnisch, Carla Gimkiewicz, Birthe Bogunovic, Robert Kreuzig, Uwe Schröder On the removal of sulfonamides using microbial bioelectrochemical systems Electrochemistry Communications 26 (2013) 77‐80 71. Hoang K. Ly, Falk Harnisch, Siang‐Fu Hong, Uwe Schröder, Peter Hildebrandt, Diego Millo Unraveling the interfacial electron transfer dynamics of electroactive microbial biofilms by surface‐ enhanced Raman spectroscopy ChemSusChem 6 (2013) 487‐492 72. Uwe Schröder (Highlight) "Self‐Assembling enzyme networks – a new path towards multi‐step bioelectrocatalytic systems" Angewandte Chemie Int. Ed. 52 (2013) 3568‐3569 „Selbstorganisierende Enzymnetzwerke – ein neuer Weg für komplexe bioelektrokatalytische Systeme“ Angewandte Chemie 125 (2013) 3652‐3653 73. S. Rudolph, U. Schröder, I.M. Bayanov, K. Blenke, D. Hage High resolution state of charge monitoring of vanadium electrolytes with IR optical sensor Journal of Electroanalytical Chemistry 694 (2013) 17‐22 10
74. Falk Harnisch, Ingo Blei, Tatiane Regina dos Santos, Maria Möller, Peter Nilges, Peter Eilts, Uwe Schröder From the test‐tube to the test‐engine: Assessing the suitability of prospective liquid biofuel compounds RCS Advances 3 (2013) 9594‐9605 75. Maria Möller, Falk Harnisch, Uwe Schröder Hydrothermal liquefaction of cellulose in subcritical water ‐ the role of crystallinity on the cellulose reactivity RCS Advances 3 (2013) 11035 ‐ 11044 76. S. Rudolph, U. Schröder, I.M. Bayanov On‐line controlled state of charge rebalancing in vanadium redox flow battery Journal of Electroanalytical Chemistry 703 (2013) 29‐37
77. C. Santoro, A. Stadlhofer, V. Hacker, G. Squadrito, U. Schröder, B. Li Activated Carbon Nanofibers (ACNF) as cathode for Single Chamber Microbial fuel cells (SCMFCs) Journal of Power Sources 243 (2013) 499‐507
78. Peter Nilges, Uwe Schröder Electrochemistry for biofuel generation: Production of furans by electrocatalytic hydrogenation of furfurals Energy and Environmental Science 6 (2013) 2925‐2931
79. Maria Möller, Uwe Schröder Hydrothermal production of furfural from xylose and xylan as model compounds for hemicelluloses RCS Advances 3 (2013) 22253 ‐ 22260 80. S. Rudolph, U. Schröder, I.M. Bayanov, G. Pfeiffer Corrosion prevention of graphite collector in vanadium redox flow battery Journal of Electroanalytical Chemistry 709 (2013) 93‐98
81. J. Bosch, K.‐Y. Lee, S.‐F. Hong, F. Harnisch, U. Schröder, R. Meckenstock Metabolic efficiency of Geobacter sulfurreducens growing on anodes with different redox potentials Current Microbiology 68 (2014) 763‐768 82. Robert Keith Brown, Falk Harnisch, Sebastian Wirth, Helge Wahlandt, Thomas Dockhorn, Norbert Dichtl, Uwe Schröder Evaluating the effects of scaling up on the performance of bioelectrochemical systems using a technical scale microbial electrolysis cell Bioresource Technology 163 (2014) 206‐213 83. Christin Koch, Falk Harnisch, Uwe Schröder, Susann Müller Cytometric fingerprints: evaluation of new tools for analyzing microbial community dynamics Frontiers in Microbiology (2014) doi: 10.3389/fmicb.2014.00273 11
84. S. Rudolph, U. Schröder, I.M. Bayanov, G. Pfeiffer Measurement, simulation and in‐situ regeneration of energy efficiency in vanadium redox flow battery Journal of Electroanalytical Chemistry 728 (2014) 72‐80
85. André Baudler, Sebastian Riedl, Uwe Schröder Long‐term performance of primary and secondary electroactive biofilms using layered corrugated carbon electrodes Frontiers in Energy Research, section Bioenergy and Biofuels (2014) doi: 10.3389/fenrg.2014.00030
86. Thomas Krieg, Anne Sydow, Uwe Schröder, Jens Schrader, Dirk Holtmann Reactor concepts for bioelectrochemical syntheses and energy conversion Trends in Biotechnology 32 (2014) 645‐655.
87. Plamen Atanassov, Mohamed Y. El‐Naggar, Serge Cosnier, Uwe Schröder Biological Fuel Cells: Cardinal Advances and Critical Challenges ChemElectroChem 1 (2014) 1702‐1704.
88. S. Rudolph, U. Schröder, R.I. Bayanov, K. Blenke, I.M. Bayanov Optimal electrolyte flow distribution in hydrodynamic circuit of vanadium redox flow battery Journal of Electroanalytical Chemistry 736 (2015) 117‐126
89. Uwe Schröder, Falk Harnisch, Lars Angenent Microbial electrochemistry and technology: terminology and classification Energy and Environmental Science 8 (2015), 513‐519
90. Tatiane R. dos Santos, Peter Nilges, Uwe Schröder Electrochemistry for biofuel generation: Transformation of fatty acids and triglycerides to "diesel ‐ like" olefin/ether mixture and olefins ChemSusChem 8 (2015) 886‐893
91. Yoomin Ahn, Uwe Schröder Microfabricated, continuous‐flow, microbial three‐electrode cell for potential toxicity detection BioChip Journal 9 (2015) 27‐34
92. Suqi Zheng, Fangfang Yang, Shuiliang Chen, Lang Liu, Qi Xiong, Ting Yu, Feng Zhao, Uwe Schröder, Haoqing Hou Binder‐free carbon black/stainless steel mesh composite electrode for high‐performance anode in microbial fuel cells Journal of Power Sources 284 (2015) 252‐257
93. Tatiane R. dos Santos, Peter Nilges, Waldemar Sauter, Falk Harnisch, Uwe Schröder Electrochemistry for generation of renewable chemicals: Electrochemical conversion of levulinic acid RSC Advances 5 (2015) 26634 – 26643 12
94. André Baudler, Igor Schmidt, Markus Langner, Andreas Greiner, Uwe Schröder Does it have to be Carbon? Metal Anodes in Microbial Fuel Cells and related Bioelectrochemical Systems Energy and Environmental Science 8 (2015) 2048‐2055 95. Markus Langner, Seema Agarwal, André Baudler, Uwe Schröder, Andreas Greiner and Andreas GreinerLarge multipurpose exceptionally conductive polymer sponges obtained by efficient wet chemical metallization Advanced Functional Materials (2015) DOI: adfm201502636(201502636) 96. Robert Keith Brown, Falk Harnisch, Thomas Dockhorn, Uwe Schröder Examining sludge production in bioelectrochemical systems treating domestic wastewater Bioresource Technology in press
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