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Publications 

Limedion - veroeffentlichungenA wide range of expert knowledge, competence and researches build up the fundaments of our work.

Find below a compendium of past scientific researches and projects of our team members. 





 

Corrosion studies of steels coated by means of PVD with Zn and Zn/Mn. Wolf, G. K.; Muenz, R. Steinbeis Transferzentrum fuer Oberflaechentechnik und Analytik, Universitaet Heidelberg, Heidelberg, Germany. Materialwissenschaft und Werkstofftechnik (2006), 37(2),  178-182.

Hydrogenation and carbonylation with mono- and bimetallic shell catalysis produced by an ion beam procedure.
Wolff, Steffen; Wolf, Gerhard K.; Hagen, Jens. Institut fuer Physikalische Chemie, Universitaet Heidelberg, Heidelberg, Germany. Chemie Ingenieur Technik (2004), 76(11), 1658-1670.

Block copolymer micelle nanolithography on non-conductive substrates. Glass, Roman; Arnold, Marco; Cavalcanti-Adam, Elisabetta Ada; Blummel, Jacques; Haferkemper, Christian; Dodd, Charlotte; Spatz, Joachim P.; Institute for Physical Chemistry, Biophysical Chemistry, University of Heidelberg, Heidelberg, Germany. New Journal of Physics (2004)
 
The corrosion properties of Al/Al2O3 multilayered coatings on CK45 steel deposited by IBAD. Xue, Jianming; Zhao, Weijiang; Wolf, G. K.; Institute of Heavy Ion Physics,  Peking University, Beijing, Peop. Rep. China. Surface and Coatings Technology (2004), 187(2-3), 194-198. 

Zinc/manganese multilayer coatings for corrosion protection. Muenz, R.; Wolf, G. K.; Guzman, L.; Adami, M. Physikalisch-Chemisches Institut, Universität Heidelberg,  Heidelberg,  Germany. Thin Solid Films  (2004), 459(1-2), 297-302.

Activation of integrin function by nanopatterned adhesive interfaces. Arnold, Marco; Cavalcanti-Adam, Elisabetta Ada; Glass, Roman; Bluemmel, Jacques; Eck, Wolfgang; Kantlehner, Martin; Kessler, Horst; Spatz, Joachim P.; Institute for Physical Chemistry Biophysical Chemistry, University of Heidelberg, Heidelberg, Germany. ChemPhysChem (2004), 5(3), 383-388. 

PVD-IBAD zinc coating development for automotive application. Guzman, L.; Wolf, G. K.; Davies, G. M. INFM and Department of Physics, University of Trento, Trento, Italy. Surface and Coatings Technology (2003), 174-175 665-670.

Block copolymer micelle nanolithography. Glass, Roman; Moeller, Martin; Spatz, Joachim P.; Biophysical Chemistry, Institute for Physical Chemistry,  University of Heidelberg, Heidelberg, Germany. Nanotechnology (2003), 14(10), 1153-1160.

Vapour deposition of corrosion resistant Zn-alloy coatings in the coil coating mode. Wolf, G. K.; Preiss, G.; Munz, R.; Guzman, L.; Miotello, A.; Adami, M.; Physikalisch-Chemisches Institut, Universitaet Heidelberg, Heidelberg, Germany. Editor(s): Lamberights, Marcel. Galvatech 2001, International Conference on Zinc and Zinc Alloy Coated Steel Sheet, 5th, Brussels, Belgium, June 26-28, 2001 (2001), 27-34.

Micro-nanostructure interfaces fabricated by the use of inorganic block copolymer micellar monolayers as negative resist for electron-beam lithography. Glass, Roman; Arnold, Marco; Bluemmel, Jacques; Kueller, Alexander; Moeller, Martin; Spatz, Joachim P.; Institute for Physical Chemistry, Biophysical Chemistry, University of Heidelberg, Heidelberg, Germany. Advanced Functional Materials (2003), 13(7), 569-575.

Nanoporous gold films created using templates formed from self-assembled structures of inorganic-block copolymer micelles. Haupt, Michael; Miller, Stephan; Glass, Roman; Arnold, Marco; Sauer, Rolf; Thonke, Klaus; Moller, Martin; Spatz, Joachim P.; Universität Ulm, Abteilung Halbleiterphysik Albert-Einstein-Allee 45, Germany. Advanced Materials (Weinheim, Germany) (2003), 15(10), 829-831.

Ultraviolet-emitting ZnO nanowhiskers prepared by a vapor transport process on prestructured surfaces with self-assembled polymers. Haupt, M.; Ladenburger, A.; Sauer, R.; Thonke, K.; Glass, R.; Roos, W.; Spatz, J. P.; Rauscher, H.; Riethmuller, S.; Moller, M.; Abteilung Halbleiterphysik, Universität Ulm, Ulm, Germany. Journal of Applied Physics (2003), 93(10, Pt. 1), 6252-6257.

Phase transformation and corrosion behavior of stainless steel bombarded by pulsed energetic ion beams. Muller, D.; Wolf, G. K.; Stahl, B.; Amaral, L.; Behar, M.; da Cunha, J. B. M. Ruprecht-Karls-University Heidelberg, Physical-Chemistry Institute (Radiochemistry), Heidelberg, Germany. Surface and Coatings Technology (2002), 158-159 604-608.  

Ion beam assisted deposition of superconducting MgB2 thin films. Schiestel, S.; Carosella, C. A.; Horwitz, J. S.; Osofsky, M.; Kendziora, C.; Qadri, S. B.; Knies, D. L. George Washington University, Washington, DC, USA. Surface and Coatings Technology (2002), 158-159 203-207.

Elastomer surface modification by means of SIAD of metal-based layers. Tashlykov, I. S.; Kasperovich, A. V.; Wolf, G. K.; Belorussian State Technological University, Minsk, Belarus. Surface and Coatings Technology (2002), 158-159 498-502.

Nano-cluster engineering: A combined ion implantation/co-deposition and ionizing radiation. Ila, D.; Zimmerman, R. L.; Muntele, C. I.; Thevenard, P.; Orucevic, F.; Santamaria, C. L.; Guichard, P. S.; Schiestel, S.; Carosella, C. A.; Hubler, G. K.; Poker, D. B.; Hensley, D. K.; Center for Irradiation of Materials, Alabama A&M University, Normal, AL, USA. Nuclear Instruments & Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms (2002), 191 416-421.

IBAD-multilayers on steel prepared by coil coating. Wolf, G. K.; Preiss, G.; Munz, R.; Guzman, L. Radiochemie, Physikalisch-Chemisches Institut, Universitat Heidelberg, Heidelberg, Germany. Surface and Coatings Technology  (2002), 158-159 125-130. 

Efficacy of a standardized extract of fresh Crataegus berries on exercise tolerance and quality of life in patients with congestive heart failure (NYHA II). Rietbrock, Norbert; Hamel, Markus; Hempel, Bernd; Mitrovic, Veselin; Schmidt, Tanja; Wolf, Gerhard K.; Institut für Klinische Pharmakologie der Johann Wolfgang Goethe-Universitat Frankfurt, Frankfurt/Main, Germany. Arzneimittel-Forschung (2001), 51(10), 793-798. 

Surface elevation and strain in ion implanted GaN. Molnar, B.; Qadri, S. B.; Schiestel, S.; Stroud, R. M.; Carosella, C. A.; Naval Research Laboratory, Washington, DC, USA. Materials Research Society Symposium Proceedings  (2001), 639(GaN and Related Alloys--2000), G11.53/1-G11.53/6.

The control of gold nanocluster sizes in dielectric thin films via ion beam assisted deposition. Schiestel, S.; Carosella, C. A.; Hubler, G. K.; Qadri, S. B.; Knies, D.; Stroud, R. M.; George Washington University, Washington, DC, USA. Materials Research Society Symposium Proceedings (2001), 647 (Ion Beam Synthesis and Processing of Advanced Materials), 11.22/1-11.22/6.

Surface properties of silver doped titanium oxide films. Zhang, Feng; Wolf, G. K.; Wang, Xianghui; Liu, Xianghuai. University Heidelberg, Physikalisch-Chemisches Institut/Radiochemie,  Heidelberg,  Germany. Surface and Coatings Technology (2001), 148(1), 65-70.

Large area IBAD deposition of Zn-alloys in the coil coating mode. Wolf, G. K.; Preiss, G.; Munz, R.; Guzman, L.Physikalisch-Chemisches Institut, Universitat Heidelberg,  Heidelberg,  Germany. Nuclear Instruments & Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms (2001), 175-177 756-761.

The control of gold nanocluster sizes and volume fraction in dielectric thin films via ion-beam assisted deposition. Schiestel, S.; Qadri, S. B.; Carosella, C. A.; Hubler, G. K.; Knies, D.; George Washington University, Naval Research Laboratory, Washington, DC, USA. Nuclear Instruments & Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms (2001), 175-177 314-318.

Patterning of GaN by ion implantation-dependent etching. Schiestel, S.; Molnar, B.; Carosella, C. A.; Knies, D.; Stroud, R. M.; Edinger, K.; George Washington University, Washington DC, USA. Materials Science & Engineering, B: Solid-State Materials for Advanced Technology (2001), B82(1-3), 111-113.

Modification of stainless steel and aluminium with pulsed energetic ion beams in the millisecond regime. Heyden, D.; Muller, D.; Wolf, G. K.; Amaral, L.; Behar, M.; Physikalisch-Chemisches Institut, Universität Heidelberg, Heidelberg,  Germany. Nuclear Instruments & Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms (2001), 175-177 403-409.

Ion beam assisted deposition of corrosion resistant coatings in the coil coating mode. Wolf, G. K.; Preiss, G.; Guzman, L. Physikalisch Chemisch Institut, Universität Heidelberg,  Heidelberg,  Germany. Surface and Coatings Technology (2000), 128-129 28-35.

Ultrafast third order nonlinear optical response of germanium nanoparticles embedded in a silica matrix. Melinger, J. S.; Kleiman, V. D.; McMorrow, D.; Carosella, C. A.; Schiestel, S.; Naval Research laboratory, Washington DC, USA. Trends in Optics and Photonics (2000), 46 (Nonlinear Optics: Materials, Fundamentals, and Applications), 102-104.

Modification and structuring of conducting polymer films on insulating substrates by ion beam treatment. Asmus, T.; Wolf, G. K.; Institut fur Physikalische Chemie, Universität Heidelberg, Heidelberg, Germany. Nuclear Instruments & Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms (2000), 166-167 732-736.

Plasma and ion beam assisted metallization of polymers and their application. Kupfer, H.; Wolf, G. K.; Institut fur Physik, Technische Universität Chemnitz, Chemnitz, Germany. Nuclear Instruments & Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms  (2000), 166-167 722-731.

Wet etching of ion-implanted gallium nitride crystals by AZ-400K photoresist. Carosella, C. A.; Molnar, B.; Schiestel, S.; Sprague, J. A.; Naval Research Laboratory, Washington DC, USA. MRS Internet Journal of Nitride Semiconductor Research [Electronic Publication] (2000), 5S1 No pp. given.

Deposition of c-BN by ion beam assisted CVD. Schwarz, G.; Friess, F.; Wolf, G. K.; Physikalisch-Chemisches Institut, Universität Heidelberg, Heidelberg, Germany. Surface and Coatings Technology (2000), 125(1-3), 106-110.

 


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Science and Practice: A good combination

If light technology, battery science or customer analyses, at Limedion you put yourself in reliable and experienced hands. At Limedion you benefit from our scientific know-how as well as from our practical experience collected over the years beiing active in surface science. Lots of big and middle sized company are already our clients – you too, soon ?

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Our Branches:

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Your advantage with Limedion

Due to the spacial closeness of coating facilities and analysis, all located at Limedion Laboratories in Mannheim, we achieve ultra fast feed back between our branches. This short loop enables us fasten our research and to shorten the time needed for product developments and product improvements significantly.

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Science and Practice: A good combination

If light technology, battery science or customer analyses, at Limedion you put yourself in reliable and experienced hands. At Limedion you benefit from our scientific know-how as well as from our practical experience collected over the years beiing active in surface science. Lots of big and middle sized company are already our clients – you too, soon ?

Newsbox bottom
Newsbox top

Our Branches:

Newsbox bottom
Newsbox top

Your advantage with Limedion

Due to the spacial closeness of coating facilities and analysis, all located at Limedion Laboratories in Mannheim, we achieve ultra fast feed back between our branches. This short loop enables us fasten our research and to shorten the time needed for product developments and product improvements significantly.

Newsbox bottom
Newsbox top

Science and Practice: A good combination

If light technology, battery science or customer analyses, at Limedion you put yourself in reliable and experienced hands. At Limedion you benefit from our scientific know-how as well as from our practical experience collected over the years beiing active in surface science. Lots of big and middle sized company are already our clients – you too, soon ?

Newsbox bottom
Newsbox top

Our Branches:

Newsbox bottom
Newsbox top

Your advantage with Limedion

Due to the spacial closeness of coating facilities and analysis, all located at Limedion Laboratories in Mannheim, we achieve ultra fast feed back between our branches. This short loop enables us fasten our research and to shorten the time needed for product developments and product improvements significantly.

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