Publications

Alexander Lichtblau, Wolfgang Kaim, Andreas Schulz, and Thomas. Stahl. Organoboron substituent effects in EPR/ENDOR spectroscopy. Radical ions with boron-carbon and boron-nitrogen bonds. Journal of the Chemical Society, Perkin Transactions 2: Physical Organic Chemistry, 9:1497--1501, 1992. [PUMA: ESR ion radical bond organoboron ENDOR ion;ESR ENDOR;carbon effect organoboron;nitrogen boron organo substituent]

Alexander Lichtblau, Wolfgang Kaim, Andreas Schulz, and Thomas. Stahl. Organoboron substituent effects in EPR/ENDOR spectroscopy. Radical ions with boron-carbon and boron-nitrogen bonds. Journal of the Chemical Society, Perkin Transactions 2: Physical Organic Chemistry, 9:1497--1501, 1992. [PUMA: ESR ion radical bond organoboron ENDOR ion;ESR ENDOR;carbon effect organoboron;nitrogen boron organo substituent]

Dadalau A. Hafla A. Verl A. Mottahedi, M.. Numerical analysis of relaxation test based on Prony series material model: Numerical analysis of relaxation test based on Prony series material model. --, 2010. [PUMA: modeling ∙ test Prony Boundary FEM ISW Hypoviscoelastic Relaxation condition material effect series]

T. Zhang, Y. Z. Fang, M. Dressel, X. P. Wang, and Q. F. Fang. Nanometer size effect on the structure and magnetic properites of hige oxygen content ferromagnetic PrMnO3+δ nanoparticles. Journal of Applied Physics, (108)11:113901, December 2010. [PUMA: nanoparticles ferromagnetic nanometer size effect]

Sudipta Mondal, Vasileios Filippou, Martina Bubrin, Brigitte Schwederski, Jan Fiedler, and Wolfgang. Kaim. Metalloradical Compounds with 1,2-Dipivaloylhydrazido Ligands: Electron Transfer and Alkylation/Protonation Effects. European Journal of Inorganic Chemistry, (2019)21:2639--2647, 2019. [PUMA: complex;spectroelectrochem protonation dipivaloylhydrazido crystal osmium mol complex structure;electron structure ruthenium transfer effect calcn alkylation prepn]

Sudipta Mondal, Vasileios Filippou, Martina Bubrin, Brigitte Schwederski, Jan Fiedler, and Wolfgang. Kaim. Metalloradical Compounds with 1,2-Dipivaloylhydrazido Ligands: Electron Transfer and Alkylation/Protonation Effects. European Journal of Inorganic Chemistry, (2019)21:2639--2647, 2019. [PUMA: complex;spectroelectrochem protonation dipivaloylhydrazido crystal osmium mol complex structure;electron structure ruthenium transfer effect calcn alkylation prepn]

F. Albert Cotton, William H. Ilsley, and Wolfgang. Kaim. Homologous chromium, molybdenum, and tungsten derivatives of 6-chloro-2-hydroxypyridine. Inductive effects on the metal-metal bond length. Inorganic Chemistry, (19)6:1453--1457, 1980. [PUMA: chromium bond;molybdenum binuclear bond;structure effect chlorohydroxypyridine bond;inductive metal binuclear;tungsten bond transition]

F. Albert Cotton, William H. Ilsley, and Wolfgang. Kaim. Homologous chromium, molybdenum, and tungsten derivatives of 6-chloro-2-hydroxypyridine. Inductive effects on the metal-metal bond length. Inorganic Chemistry, (19)6:1453--1457, 1980. [PUMA: chromium bond;molybdenum binuclear bond;structure effect chlorohydroxypyridine bond;inductive metal binuclear;tungsten bond transition]

Y. Umeda, T. Enoki, K. Osafune, H. Ito, and Y. Ishii. High-yield design technologies for InAlAs/InGaAs/InP-HEMT analog-digital ICs. IEEE Transactions on Microwave Theory and Techniques, (44)12:2361-2368, December 1996. [PUMA: noise;Circuit compounds;aluminium yield;load 4.49 amplifiers;Indium gallium analysis semiconductors;design gate;recess-etch phosphide;HEMTs;Fabrication;Design semiconductors;high-yield effect micron;4.11 dB;11.55 to compounds;gallium MIMIC;millimetre amplifiers;frequency arsenide;Frequency circuit frequency resistance;circuit gain;fabrication dB;InAlAs-InGaAs-InP;Indium technologies;HEMT yield;integrated wave dividers;T-shaped design GHz;0.1 compounds;Indium static simulation;60 conversion;Low-noise circuits;field computing;indium analog-digital 12.05 stopper;III-V arsenide;III-V design;HEMT ICs;low-noise integrated circuits;mixed analogue-digital dividers;circuit amplifiers;SCFL optimization;Circuit stability]

B. Korin-Hamzic, E. Tafra, M. Basletic, A. Hamzic, L.-K. Montgomery, and M. Dressel. Hall effect in the normal phase of the organic conductors: (TMTSF) 2ReO 4 vs. (TMTTF) 2AsF 6. J. Phys. IV France 114: 73, (114):73-76, 2004. [PUMA: effect Hall TMTSF]

E. Tafra, B. Korin-Hamzic, M. Basletic, A. Hamzic, M. Dressel, and J. Akimitsu. Hall effect in Sr14-xCaxCu24O41. Physica B: Condensed Matter, (404)3-4:385-388, Elsevier BV, March 2009. [PUMA: effect Hall] URL

Jan Knippers, Mohamed Hwash, and F. Saad. Friction effect on the tensile strength of deviated CFRP-Strips. In Department of Structural Engineering Ain Shams University Faculty of Engineering (Eds.), 13th International Conference on Structural and Geotechnical Engineering, Cairo – Egypt, 27-29 Dec. 2009. [PUMA: saad strength knippers engineering friction cfrp strips 2009 effect hwash deviated bridge tensile]

Jan Knippers, Mohamed Hwash, and F. Saad. Friction effect on the tensile strength of deviated CFRP-Strips. In Department of Structural Engineering Ain Shams University Faculty of Engineering (Eds.), 13th International Conference on Structural and Geotechnical Engineering, Cairo – Egypt, 27-29 Dec. 2009. [PUMA: saad strength knippers engineering friction cfrp strips 2009 from:petraheim effect hwash deviated bridge tensile]

M. H. Samimi, Stefan Tenbohlen, A. A. Shayegani-Akmal, and H. Mohseni. Effect of terminating and shunt resistors on the FRA method sensitivity. 2015. [PUMA: Resistors Terminating Sensitivity FRA Shunt Method Effect]

Lucio Blandini, Guido Nieri, and Werner Sobek. Das Schalentragwerk des Kuwait International Airport Terminal 2 - Bemessung und Ausführung einer komplexen Megastruktur in Zeiten der Digitalisierung. Stahlbau, (88)3:194--202, 2019. [PUMA: design, sobek Entwerfen, Digitalisierung, parametrisches Verbundwirkung, shell compound structure, effect Schalentragwerk, parametric BIM, digitalization,]

B. Korin-Hamzić, E. Tafra, M. Basletić, A. Hamzić, G. Untereiner, and M. Dressel. Conduction anisotropy, Hall effect and magnetoresistance of (TMTSF)2ReO4 at high temperatures. Synthetic Metals, (137)1-3:1323-1324, Elsevier BV, April 2003. [PUMA: magnetoresistance effect Hall TMTSF] URL

Bojana Korin-Hamzić, Emil Tafra, Mario Basletić, Amir Hamzić, and Martin Dressel. Conduction anisotropy and Hall effect in the organic conductor (TMTTF)2AsF6: Evidence for Luttinger liquid behavior and charge ordering. Phys. Rev. B, (73)11:115102, American Physical Society, March 2006. [PUMA: anisotropy effect Hall Luttinger TMTTF] URL

Narayan S. Hosmane, Ying Wang, Hongming Zhang, Kai-Juan Lu, John A. Maguire, Thomas G. Gray, Karen A. Brooks, Eberhard Waldhoer, Wolfgang Kaim, and Reinhard K. Kremer. Chemistry of C-Trimethylsilyl-Substituted Heterocarboranes. 21. Syntheses, Structures, EPR Spectra, and Reactivities of Bent-Sandwich and Half-Sandwich Titanacarboranes. Full Analysis of Spin-Spin Coupling in Two Structurally Characterized Titanium(III)-Carborane Dimers. Organometallics, (16)7:1365--1377, 1997. [PUMA: voltammetry susceptibility crystal dimer;electrochem titanium dimer;cyclic sandwich dimer;titanacarborane structure coupling spin effect dimer;EPR dimer;mol dimer;magnetic carborane dimer;substituent prepn]

Narayan S. Hosmane, Ying Wang, Hongming Zhang, Kai-Juan Lu, John A. Maguire, Thomas G. Gray, Karen A. Brooks, Eberhard Waldhoer, Wolfgang Kaim, and Reinhard K. Kremer. Chemistry of C-Trimethylsilyl-Substituted Heterocarboranes. 21. Syntheses, Structures, EPR Spectra, and Reactivities of Bent-Sandwich and Half-Sandwich Titanacarboranes. Full Analysis of Spin-Spin Coupling in Two Structurally Characterized Titanium(III)-Carborane Dimers. Organometallics, (16)7:1365--1377, 1997. [PUMA: voltammetry susceptibility crystal dimer;electrochem titanium dimer;cyclic sandwich dimer;titanacarborane structure coupling spin effect dimer;EPR dimer;mol dimer;magnetic carborane dimer;substituent prepn]

Konrad Kowalski, Michael Linseis, Rainer F. Winter, Manfred Zabel, Stanislav Zalis, Harald Kelm, Hans-Jorg Kruger, Biprajit Sarkar, and Wolfgang. Kaim. Charge delocalization in a heterobimetallic ferrocene-(vinyl)Ru(CO)Cl(PiPr3)2 system. Organometallics, (28)14:4196--4209, 2009. [PUMA: sigma electrooxidn;mol crystal orbital complex mixed conjugation valence complex;solvent complex;frontier spectra structure ruthenium complex;vinylferrocene ethenylruthenium ferrocenyl effect calcn complex;mixed oxidn electronic communication prepn]