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Professorship of Chemical Technology
Publication

Publications / Patents

 

2023

[124]

Reichert, D., Stöwe, K.,
Sol-Gel-Syntheses and Structural as well as Electrical Characterizations of Anatase- and Rutile-Type Solid Solutions in the System IrO2-TiO2,
Chemistry Open 2023, 12, e202300032,
doi: doi.org/10.1002/open.202300032

[123]

Stöwe, K.
Buchkapitel: 7.2 Heterogeneous catalysts, 364 - 278
in: Applied Inorganic Chemistry, Vol. 2, From energy storage to photofunctional materials
Chapter doi: doi.org/10.1515/9783110798890-017
Pöttgen, R., Jüstel, T., Strassert, C. A., (eds);
De Gruyter GmbH, 2023, ISBN: 978-3-11-079878-4

 

2022

[122]

Engelhardt, T.B., Schmitz-Stöwe, S., Schwarz, T., Stöwe, K.
Investigation of Photocatalyst Composites for Pollutant Degradation in a Microslit Reactor Utilizing High Throughput Screening Techniques
ChemistryOpen 2022, 11, 11
doi: doi.org/10.1002/open.202200180

[121]

Sabrina Christina Hebert, S.C. & Stöwe, K.
Preparation of Cerium-Bismuth Oxide Catalysts for Diesel Soot Oxidation Including Evaluation of an Automated Soot-Catalyst Contact Mode
ChemistryOpen 2022, 11, e202100282 (1 of 12);
doi: doi.org/10.1002/open.202100282

[120]

Weber, M., Rodriguez, R., Zahn, D., Stöwe, K., Mehring, M.
Polymorphism and visible-light-driven photocatalysis of doped Bi2O3:M (M = S, Se, Re)
Inorganic Chemistry(2022), 61(3), 1571,
doi: doi.org/10.1021/acs.inorgchem.1c03330

 

2021

[119]

Engelhardt, T. B., Zhu M., Heilmann C., Schmitz-Stöwe S., Schwarz T., Stöwe, K.
Development of a novel microgap reactor system for the photocatalytic degradation of micropollutants from aqueous solutions with TiO2-based photocatalysts immobilized by spray coating
Catalysts (2021), 11(11), 1351
doi: 10.3390/catal11111351

[118]

Pfeifer, M., Schwarz, T., Cao, P., Stöwe, K.
Reaction analyses based on quaternary metal/metal oxide catalyst testing in micro-structured reactors using combinatorial high-throughput methods for power-to-gas applications
Catalysts (2021), 11(1), 6
doi: 10.3390/catal11010006

[117]

Poddig, H., Gebauer, P., Finzel, K., Stöwe, K., Doert, T.
Structural Variations and Bonding Analysis of the Rare-Earth Metal Tellurides RETe (RE = Ce, Pr, Sm, Gd; 0.004 ≤ δ ≤ 0.025)
Inorganic Chemistry (2021), 60(15), 11231-11241
doi: 10.1021/acs.inorgchem.1c01230

[116]

Stöwe, K., Schmitz-Stöwe, S.
Teilautomatisiertes Photokatalysatoren Design - HTE-Photokatalysatoren-Entwicklung für den Abbau von Hormonen.
GIT Labor-Fachzeitschrift 1-2 (2021), 65, 37-39

 

2020

[115]

Stöwe, K., & Armbrüster, M.
Rare earth metals in heterogeneous catalysis - an overview.
in: Rare Earth Chemistry (2020)
De Gruyter STEM, Ed. Pöttgen, R., Jüstel, T., Strassert, C. A.
ISBN: 978-3-11-065372-4
doi: 10.1515/978311

[114]

Engelhardt, T. B., Schmitz-Stöwe, S., Schwarz, T., & Stöwe, K.
Development of a novel high throughput photocatalyst screening procedure: UV-A degradation of 17α-ethinylestradiol with doped TiO2-based photo-catalysts.
Materials (Basel)(2020) 13(6); 1365
doi: 10.3390/ma13061365

[113]

Hebert, S. C., & Stöwe, K.
Synthesis and characterization bismuth-cerium oxides for the catalytic oxidation of Diesel soot.
Materials (Basel)(2020) 13(6); 1369
doi: 10.3390/ma13061369

[112a]

Stöwe, K., & Weber, M.
Niobium, tantalum, and tungsten doped tin dioxides as potential support materials for fuel cell catalyst applications.
Zeitschrift für Anorganische und Allgemeine Chemie (2020), 646, 1-12,
doi.org/10.1002/zaac.201900345

[112b]

Stöwe, K., & Weber, M.
Supporting Information: Niobium, tantalum, and tungsten doped tin dioxides as potential support materials for fuel cell catalyst applications.
Zeitschrift für Anorganische und Allgemeine Chemie (2020), 646, 1-12,
doi.org/10.1002/zaac.201900345

[111]

Lenk, T., Gärtner, A., Stöwe, K., Schwarz, T., Breuer, C., Kiemel, R., & Casu, S.
A high-throughput screening approach to identify new active and long-term stable catalysts for total oxidation of methane from gas-fueled lean-burn engines.
Catalysts (2020) 10(2), 159 (31p.).
doi.org/10.3390/catal10020159

 

2019

[110]

Beierlein, D., Häussermann, D., Pfeifer, M., Schwarz, T., Stöwe, K., Traa, Y., & Klemm, E.
Is the CO2 methanation on highly loaded Ni-Al2O3 catalysts really structure-sensitive?
Applied Catalysis B: Environmental (2019) 247, 200-219,
doi.org/10.1016/j.apcatb.2018.12.064

[109]

Hiemer, J., Clausing, A., Schwarz, T., & Stöwe, K.,
MicroJet reactor technology: An automated, continuous approach for nanoparticle syntheses.
Chemical Engineering & Technology (2019) 42(10), 2018-2027,
doi.org/10.1002/ceat.201900083

 

2018

[108]

Pfeifer, M., Schwarz, T., & Stöwe, K.
Quaternary metal/metal oxide catalysts as wall catalysts in microreactors for power-to-gas applications through combinatorial high-throughput screening.
Chemie Ingenieur Technik (2019) 91(5), 607-613.
doi.org/10.1002/cite.201800126

 

2016

[107]

Pfeifer, M., Schwarz, T., & Stöwe, K.
Kombinatorisches Hochdurchsatz-Screening von quaternären Katalysatorsystemen als mikrostrukturierte Wandkatalysatoren.
Chemie Ingenieur Technik (2018) 90(9), 1156-1157.
doi.org/10.1002/cite.201855053

[106]

Gärtner, A., Lenk, T., Kiemel, R., Casu, S., Breuer, C., & Stöwe, K.
High-throughput screening approach to identify new catalysts for total oxidation of methane from gas fueled lean burn engines.
Topics in Catalysis (2016) 59(10-12), 1071-1075.
doi.org/10.1007/s11244-016-0593-z

[105]

Reichert, D., Schwarz, T., & Stöwe, K.
Pressure loss calculation of concentric porous hollow cylinder filters based on dimensional equations and experimental data.
Chemie Ingenieur Technik (2016) 88(5), 648-655.
doi.org/10.1002/cite.201500029

[104]

PATENT
Hensgen, L., Schermanz, K., Stöwe, K., & Wolf, V.
Noble metal-free catalyst compositions.
PCT Int. Appl. (2016) WO 2016016127 A1. Treibacher Industrie AG, Austria .

 

2015

[103]

Swislocki, S., Stöwe, K., & Maier, W. F.
Chromia on anatase: A catalyst for selective hydrocarbon combustion in the presence of CO.
ChemCatChem (2015) 7(2), 261-270.
doi.org/10.1002/cctc.201402769

[102]

Dogan, C., Stöwe, K., & Maier, W. F.
Optical high-throughput screening for activity and electrochemical stability of oxygen reducing electrode catalysts for fuel cell applications.
ACS Combinatorial Science (2015) 17(3), 164-175.
doi.org/10.1021/co500128m

 

2014

[101]

Swislocki, S., Stöwe, K., & Maier, W. F.
Catalysts for selective propane oxidation in the presence of carbon monoxide: Mechanistic aspects.
Journal of Catalysis (2014) 316, 219-230.
doi.org/10.1016/j.jcat.2014.05.008

[100]

Valtchev, M., Hammes, M., Richter, R., Höltzen, H., Stöwe, K., & Maier, W. F.
Corrosion-resistant parallel fixed-bed reactors for high-throughput screening of new Deacon reaction catalysts.
Chemical Engineering & Technology (2014) 37(7), 1251-1260.
doi.org/10.1002/ceat.201300617

[99]

Hammes, M., Soerijanto, H., Schomäcker, R., Valtchev, M., Stöwe, K., & Maier, W. F.
Niobium: Activator and stabilizer for a copper-based Deacon Catalyst.
ChemCatChem (2014) 6(1), 245-254.
doi.org/10.1002/cctc.201300697

[98]

Stöwe, K., Hammes, M., Valtchev, M., Roth, M., & Maier, W. F.
Parallel fixed bed microreactors for high-throughput screening with special focus on high corrosion resistance and new Deacon catalysts for chlorine production.
in: Modern Applications of High Throughput R & D in Heterogeneous Catalysis (2014)
E-book-Chapter 3, S. 118-172, Bentham Science, Ed. A. Hagemeyer, A. Volpe.
ISBN: 978-1-60805-873-0

 

2013

[97]

Stöwe, K., Dogan, C., Welsch, F., & Maier, W. F.
High-throughput optical screening of electrocatalysts for fuel cell applications - Review and present developments.
Zeitschrift für Physikalische Chemie (2013) 227(5), 561-593.
doi.org/10.1524/zpch.2013.0322

[96]

Loskyll, J., Stöwe, K., & Maier, W. F.
Search for new catalysts for the oxidation of SO2.
ACS Combinatorial Science (2013) 15(9), 464-474.
doi.org/10.1021/co400023j

[95]

Stöwe, K., & Ausfelder, F.
A practical modular course of combinatorial and high-throughput methods for use in academic teaching laboratories.
Chemie Ingenieur Technik (2013) 85(6), 919-925.
doi.org/10.1002/cite.201200229

[94]

Hammes, M., Valtchev, M., Roth, M. B., Stöwe, K., & Maier, W. F.
A search for alternative Deacon catalysts.
Applied Catalysis B: Environmental (2013) 132-133, 389-400.
doi.org/10.1016/j.apcatb.2012.11.034

 

2012

[93]

Loskyll, J., Maier, W. F., & Stöwe, K.
Application of a simultaneous TGA-DSC thermal analysis system for high-throughput screening of catalytic activity.
ACS Combinatorial Science (2012) 14(11), 600-604.
doi.org/10.1021/co3000659

[92]

Lippach, A. K. W., Kramer, R., Hansen, M. R., Roos, S., Stöwe, K., Stommel, M., Wenz, G., & Maier, W. F.
Synthesis and mechanical properties of organic-inorganic hybrid materials from lignin and polysiloxanes.
ChemSusChem (2012) 5(9), 1778-1786.
doi.org/10.1002/cssc.201200095

[91]

Merten, G. J., Neis, C., Stucky, S., Huch, V., Rentschler, E., Natter, H., Hempelmann, R., Stöwe, K., & Hegetschweiler, K.
The interplay of hydrogen bonding and multiple metal binding - A new cyclic polyaminopolyalcohol ligand as building block for the construction of microporous, supramolecular networks.
European Journal of Inorganic Chemistry (2012) 2012(1), 31-35.
doi.org/10.1002/ejic.201100914

[90]

Reiser, M., Stöwe, K., & Maier, W. F.
Combinatorial development of novel Pd based mixed oxide catalysts for the CO hydrogenation to methanol.
ACS Combinatorial Science (2012), 14(6), 378-387.
doi.org/10.1021/co200191a

[89]

Hammes, M., Stöwe, K., & Maier, W. F.
Cobalt based emission control catalysts with high resistance towards halide poisoning.
Applied Catalysis B: Environmental (2012) 117-118, 397-405.
doi.org/10.1016/j.apcatb.2012.01.032

[88]

Loskyll, J., Stöwe, K., & Maier, W. F.
Infrared thermography as a high-throughput tool in catalysis research.
ACS Combinatorial Science (2012) 14(5), 295-303.
doi.org/10.1021/co200168s

[87]

Stöwe, K., Maier, W. F., & Weidenhof, B.
High-throughput materials discovery by ink-jet-printing of composition spread libraries.
MRS Online Proceedings Library (2012) 1425, No pp. given.
doi.org/10.1557/opl.2012.203

 

2011

[86]

Loskyll, J., Stöwe, K., & Maier, W. F.
High-throughput technology for novel SO2 oxidation catalysts.
Science and Technology of Advanced Materials (2011) 12(5), 054101/1-054101/9.
doi.org/10.1088/1468-6996/12/5/054101

[85]

Potyrailo, R., Rajan, K., Stöwe, K., Takeuchi, I., Chisholm, B., & Lam, H.
Combinatorial and high-throughput screening of materials libraries: Review of state of the art.
ACS Combinatorial Science (2011) 13(6), 579-633.
doi.org/10.1021/co200007w

[84]

Welsch, F. G., Stöwe, K., & Maier, W. F.
Fluorescence-based high throughput screening for noble metal-free and platinum-poor anode catalysts for the direct methanol fuel cell.
ACS Combinatorial Science (2011) 13(5), 518-529.
doi.org/10.1021/co2000967

[83]

Laine, R. M., Kim, M., Azurdia, J., Weidenhof, B. B., Reiser, M., Stöwe, K., & Maier, W. F.
Use of liquid-feed flame spray pyrolysis (LF-FSP) in the synthesis of mixed-metal oxide nanopowder catalysts and their characterization.
In Abstracts of Papers, 242nd ACS National Meeting & Exposition, Denver, CO, United States, August 28-September 1, (2011) (p. FUEL-77). American Chemical Society.

[82]

Laine, R. M., Kim, M., Weidenhof, J. Azurdia. B., Reiser, M., Stöwe, K., & Maier, W. F.
The use of liquid-feed flame spray pyrolysis (LF-FSP) in the synthesis of mixed-metal oxide nanopowder catalysts and their characterization.
Preprints of Symposia - American Chemical Society, Div. of Fuel Chemistry (2011) 56(2), 36-37.
Retriev. f. pubs.acs.org/cgi-bin/preprints/display?div=fuel&meet=242&page=018_ 104656.pdf

[81]

Hensgen, L., & Stöwe, K.
Soot-catalyst contact studies in combustion processes using nano-scaled ceria as test material.
Catalysis Today (2011) 159(1), 100-107.
doi.org/10.1016/j.cattod.2010.03.070

[80]

Welsch, F. G., Stöwe, K., & Maier, W. F.
Rapid optical screening technology for direct methanol fuel cell (DMFC) anode and related electrocatalysts.
Catalysis Today (2011) 159(1), 108-119.
doi.org/10.1016/j.cattod.2010.03.006

[79]

Kolb, M. A., Maier, W. F., & Stöwe, K.
High-throughput syntheses of nano-scaled mixed metal sulphides.
Catalysis Today (2011) 159(1), 64-73.
doi.org/10.1016/j.cattod.2010.07.010

 

2010

[78]

Chen, R., Trieu, V., Natter, H., Stöwe, K., Maier, W. F., Hempelmann, R., Bulan, A., Kintrup, J., & Weber, R.
In situ supported nanoscale RuxTi1-xO2 on anatase TiO2 with improved electroactivity.
Chemistry of Materials (2010) 22(23), 6215-6217.
doi.org/10.1021/cm102414n

[77]

PATENT
Bachmann, M., Volpp, H.-R., Weidenhof, B., Zueco, S. C., Kröll, M., Gorski, A., Stöwe, K., Hensgen, L., & Jayavel, S. (2010).
Catalytic diesel particulate filter and method for its production.
Ger. Offen. (2010) DE 102009002182 A1 20100916., Evonik Degussa G.m.b.H., Germany; J. Eberspächer G.m.b.H. & Co. K.-G.; Ruprecht-Karls-Universität Heidelberg; Universität des Saarlandes; Volkswagen A.-G. .

[76]

Rajagopalan, P., Stöwe, K., & Maier, W. F.
Contribution of components in Ce-Ti-Cr-Ox catalysts for selective propane-combustion in the presence of CO.
Catalysis Communications (2010) 11(13), 1041-1044.
doi.org/10.1016/j.catcom.2010.05.008

[75]

Rajagopalan, P., Stöwe, K., & Maier, W. F.
Catalysts for selective hydrocarbon combustion in the presence of CO.
Topics in Catalysis (2010) 53(1-2), 19-27.
doi.org/10.1007/s11244-009-9438-3

[74]

Ferkel, H., Bachmann, M., Volpp, H.-R., Stöwe, K., & Hensgen, L.
Edelmetallfreie Nanokatalysatoren für Dieselpartikelfilter
Motortechnische Zeitschrift MTZ (2010) 71(2), 128-133.

 

2009

[73]

PATENT
Rende, D., Maier, W., Stöwe, K., Rabe, U., & Walter, A.
Piezoelectric materials on the basis of barium-oxide-based mixture oxides.
Ger. Offen. (2009) DE 102008007875 A1 20091112., Universität des Saarlandes, Germany.

[72]

Krämer, M., Stöwe, K., Duisberg, M., Mueller, F., Reiser, M., Sticher, S., & Maier, W. F.
The impact of dopants on the activity and selectivity of a Ni-based methanation catalyst.
Applied Catalysis A: General (2009) 369(1-2), 42-52.
doi.org/10.1016/j.apcata.2009.08.027

[71]

Kohlmann, H., Mueller, F., Stöwe, K., Zalga, A., & Beck, H. P.
Hydride formation in the intermetallic compounds CePd3 and CeRh3.
Zeitschrift für Anorganische und Allgemeine Chemie (2009), 635(9-10), 1407-1411.
doi.org/10.1002/zaac.200801356

[70]

Weidenhof, B., Reiser, M., Stöwe, K., Maier, W. F., Kim, M., Azurdia, J., Gulari, E.; Seker, E.; Barks, A., & Laine, R. M.
High-throughput screening of nanoparticle catalysts made by flame spray pyrolysis as hydrocarbon/NO oxidation catalysts.
Journal of the American Chemical Society (2009) 131(26), 9207-9219.
doi.org/10.1021/ja809134s

[69]

Stöwe, K.
Buchbesprechung: High-Throughput Screening in Chemical Catalysis.
Editors: A. Hagemeyer, P. Strasser, A. F. Volpe (jr), P. Ungerer, B. Tavitian, A. Boutin.
Chemie Ingenieur Technik (2009) 81(4), 506-507.
doi.org/10.1002/cite.200990029

 

2008

[68]

Maier, W. F., Krämer, M., Olong, N., Rajagopalan, P., & Stöwe, K.
New selective catalysts for methanation and oxidation reactions.
In Abstracts of Papers, 236th ACS National Meeting, Philadelphia, PA, United States, August 17-21, 2008 (p. ORGN-542). American Chemical Society.

[67]

Olong, N. E., Stöwe, K., & Maier, W. F.
HT-search for alkaline- and noble-metal-free mixed oxide catalysts for soot oxidation.
Catalysis Today (2008), 137(1), 110-118.
doi.org/10.1016/j.cattod.2007.12.142

 

2007

[66]

Seyler, M., Stöwe, K., & Maier, W. F.
New hydrogen-producing photocatalysts-A combinatorial search.
Applied Catalysis B: Environmental (2007) 76(1-2), 146-157.
doi.org/10.1016/j.apcatb.2007.05.020

[65]

Krämer, M., Duisberg, M., Stöwe, K., & Maier, W. F.
Highly selective CO methanation catalysts for the purification of hydrogen-rich gas mixtures.
Journal of Catalysis (2007) 251(2), 410-422.
doi.org/10.1016/j.jcat.2007.07.030

[64]

Maier, W. F., Stöwe, K., & Sieg, S.
Combinatorial and high-throughput materials science.
Angewandte Chemie, International Edition (2007) 46(32), 6016-6067, S6016/1-S6016/4.
doi.org/10.1002/anie.200603675

[63]

Olong, N. E., Stöwe, K., & Maier, W. F.
A combinatorial approach for the discovery of low temperature soot oxidation catalysts.
Applied Catalysis B: Environmental (2007) 74(1-2), 19-25.
doi.org/10.1016/j.apcatb.2007.01.010

[62]

Kim, D. K., Stöwe, K., Mueller, F., & Maier, W. F.
Mechanistic study of the unusual catalytic properties of a new Ni-Ce mixed oxide for the CO2 reforming of methane.
Journal of Catalysis (2007) 247(1), 101-111.
doi.org/10.1016/j.jcat.2007.01.011

 

2006

[61b]

Krämer, M., Schmidt, T., Stöwe, K., Mueller, F., Natter, H., & Maier, W. F.
Structural and catalytic aspects of sol-gel derived copper manganese oxides as low-temperature CO oxidation catalyst. [Erratum to document cited in CA144:491766].
Applied Catalysis A: General (2007) 313(1), 112.
doi.org/10.1016/j.apcata.2006.06.004

[61a]

Krämer, M., Schmidt, T., Stöwe, K., & Maier, W. F.
Structural and catalytic aspects of sol-gel derived copper manganese oxides as low-temperature CO oxidation catalyst.
Applied Catalysis A: General (2007) 302(2), 257-263.
doi.org/10.1016/j.apcata.2006.01.018

 

2005

[60]

Mueller, F., Stöwe, K., & Sachdev, H.
Symmetry versus commensurability: Epitaxial growth of hexagonal boron nitride on Pt(111) from B-trichloroborazine (ClBNH)3.
Chemistry of Materials (2005) 17(13), 3464-3467.
doi.org/10.1021/cm048629e

[59]

K. Stöwe
High-pressure crystal structure investigations on K2Te in DACs of modified Merrill-Bassett type.
Deutsches Elektronen Synchrotron (DESY), Speicherring DORIS, Hamburger Synchrotronstrahlungslabor, Hasylab-Jahresbericht 2005, 359-360.

[58]

Stöwe, K., Maier, W. F., Wolter, T., Seyler, M., Krage, R., Enderlein, D., & Maurer, W.
Ex-sensors in silicon technology.
Sensor 2005, Proceedings of the 12th International Conference, Nürnberg (2005) 369-375.

 

2004

[57]

Stöwe, K.
YbGaGe: Zero thermal expansion as a result of an electronic valence transition?.
Angewandte Chemie, International Edition (2004) 43(38), 4982-4984.
doi.org/10.1002/anie.200401757

[56]

Stöwe, K.
Polymorphic forms of Rb2Te: In-situ high-pressure DAC x-ray diffraction investigations and structure modelling with CASTEP.
Zeitschrift für Kristallographie (2004) 219(6), 359-369.
doi.org/10.1524/zkri.219.6.359.34644

[55]

Stöwe, K., & Monzel, H.
Polymorphiebeziehungen in Alkali- und Interalkalimetalltelluriden.
Zeitschrift für Kristallographie / Supplemente (2004) 21, 184.

[54]

Stöwe, K.
Strukturchemie und Eigenschaften von SmTe1,87.
Zeitschrift für Kristallographie / Supplemente (2004) 21, 184.

[53]

Stöwe, K., & Monzel, H. & Appel, S.
Polymorphiebeziehungen in Rb2Te: in-situ Hochdruckuntersuchungen und theoretische Modellierung mit CASTEP.
Zeitschrift für Kristallographie / Supplemente (2004) 21, 39.

 

2003

[52]

Stöwe, K.
Electronic band structures and physical properties of ALnTe4 and ALn3Te8 compounds (A = alkali metal; Ln = lanthanoid).
Journal of Solid State Chemistry (2003) 176(2), 594-608.
doi.org/10.1016/S0022-4596(03)00345-1

[51]

Stöwe, K., Napoli, C., & Appel, S.
Syntheses and crystal structures of new alkali metal rare-earth tellurides of the compositions KLnTe2 (Ln = La, Pr, Nd, Gd), RbLnTe2 (Ln = Ce, Nd) and CsLnTe2 (Ln = Nd).
Zeitschrift für Anorganische und Allgemeine Chemie (2003) 629(11), 1925-1928.
doi.org/10.1002/zaac.200300167

[50]

Mueller, F., & Stöwe, K.
Surface core level shifts of Yb films in the multilayer, monolayer and submonolayer range.
Zeitschrift für Anorganische und Allgemeine Chemie (2003) 629(10), 1805-1811.
doi.org/10.1002/zaac.200300132

[49]

Stöwe, K.
Syntheses and crystal structures of KPrTe4, KGdTe4 and RbGdTe4.
Solid State Sciences (2003) 5(5), 765-769.
doi.org/10.1016/S1293-2558(03)00095-5

[48]

Stöwe, K.
Crystal structure of KPr3Te8.
Zeitschrift für Anorganische und Allgemeine Chemie (2003) 629(3), 403-409.

[47]

Stöwe, K., Napoli, C., & Appel, S.
Crystal structures of KNdTe4, RbPrTe4, and RbNdTe4. Investigations concerning the thermal stability of KNdTe4 as well as some remarks concerning additional representatives of the composition ALnTe4 (A = K, Rb, Cs and Ln = rare earth metal).
Zeitschrift für Anorganische und Allgemeine Chemie (2003), 629(2), 321-326.

 

2002

[46]

Stöwe, K.
Nichtstöchiometrische Seltenerd-Chalkogenide nahe der Zusammensetzung LnQ2 (Q= Se, Te): Struktur und Eigenschaften.
Zeitschrift für Anorganische und Allgemeine Chemie (2002) 628(9-10), 2146.

[45]

Muller, F., de Masi, R., Reinicke, D., Steiner, P., Hüfner, S., & Stöwe, K.
Epitaxial growth of MnO/Ag(0 0 1) films.
Surface Science (2002) 520(3), 158-172.
doi.org/10.1016/S0039-6028(02)02268-9

[44]

Stöwe, K., & Appel, S.
Polymorphic forms of rubidium telluride Rb2Te.
Angewandte Chemie, International Edition (2002) 41(15), 2725-2730.
doi.org/10.1002/1521-3773(20020802)41:15<2725::AID-ANIE2725>3.0.CO;2-G

[43]

Stöwe, K., & Appel, S.
Polymorphe Formen des Rubidiumtellurids Rb2Te.
Angewandte Chemie (2002) 114(15), 2849 -2854.

[42]

Stöwe, K., & Schröder, M.
Trendbericht: Festkörperchemie 2001.
Nachrichten aus der Chemie (2002) 50(3), 278,280,282-287.
doi.org/10.1002/nadc.20020500307

[41]

Stöwe, K.
Strukturchemie polytyper Varianten von CsNd3Te8.
Zeitschrift für Kristallographie / Supplemente (2002) 19, 125.

[40]

Stöwe, K., & Appel, St. (2002)
Die Kristallstrukturen polymorpher Formen von Rb2Te.
Zeitschrift für Kristallographie / Supplemente (2002) 19, 125.

 

2001

[39]

Stöwe, K.
Crystal structure, magnetic properties and band gap measurements of NdTe2-x (x = 0.11(1)).
Zeitschrift für Kristallographie (2001) 216(4), 215-224.
doi.org/10.1524/zkri.216.4.215.23262

[38]

Wagner, F. R., & Stöwe, K.
Electronic band structure of TlTe.
Journal of Solid State Chemistry (2001) 157(1), 193-205.
doi.org/10.1006/jssc.2000.9075

[37]

Stöwe, K., & Appel-Colbus, S.
Alkalimetallurantelluride des Typs AU2Te6.
Zeitschrift für Kristallographie / Supplemente (2001) 18, 134

[36]

Stöwe, K., Napoli, Ch., & Appel-Colbus, S.
Strukturchemie von Alkalimetall-Seltenerd-Telluriden.
Zeitschrift für Kristallographie / Supplemente (2001) 18, 109

[35]

Colbus, V., & Stöwe, K.
Reaktionskinetische und photoelektronenspektroskopische Untersuchungen dünner Filme und Volumenmaterialien im System Yb-Al-O.
Zeitschrift für Kristallographie / Supplemente (2001) 18, 105

[34]

Stöwe, K.
Polytypic modifications of the compound U0.9Te3.
Deutsches Elektronen Synchrotron (DESY), Speicherring DORIS, Hamburger Synchrotronstrahlungslabor, Hasylab-Jahresbericht 2001

 

2000

[33]

Stöwe, K.
Crystal structure and magnetic properties of CeTe2.
Journal of Alloys and Compounds (2000) 307(1-2), 101-110.
doi.org/10.1016/S0925-8388(00)00799-4

[32]

Stöwe, K.
Die Kristallstruktur von PrTe2.
Zeitschrift für Anorganische und Allgemeine Chemie (2000) 626(3), 803-811.

[31]

Monzel, H., Schramm, M., Stöwe, K., & Beck, H. P.
Zur Neuuntersuchung des Phasendiagramms RbCl/PbCl2.
Zeitschrift für Anorganische und Allgemeine Chemie (2000) 626(2), 408-411.

[30]

Stöwe, K.
Crystal structure and electronic band structure of LaTe2.
Journal of Solid State Chemistry (2000) 149(1), 155-166.
doi.org/10.1006/jssc.1999.8514

[29]

Stöwe, K.
The phase transition of TlTe: Crystal structure.
Journal of Solid State Chemistry (2000) 149(1), 123-132.
doi.org/10.1006/jssc.1999.8509

[28]

Stöwe, K.
Die Kristallstrukturen von CeTe2 und PrTe2.
Zeitschrift für Kristallographie / Supplemente (2000) 17, 114.

[27]

Stöwe, K., & Appel-Colbus, S.
Die Kristallstrukturen zweier Modifikationen von Rb2Te.
Zeitschrift für Kristallographie / Supplemente (2000) 17, 114.

 

1999

[26]

Stöwe, K., & Appel-Colbus, S.
Synthese und Kristallstruktur von K2UTe3.
Zeitschrift für Anorganische und Allgemeine Chemie (1999) 625(10), 1647-1651.

[25]

Beck, H. P., Tratzky, H., Kallmayer, V., & Stöwe, K.
The InSnCl3-type arrangement. I. A new ABX3 structure type with close cation-cation contacts.
Journal of Solid State Chemistry (1999) 146(2), 344-350.
doi.org/10.1006/jssc.1999.8360

[24]

Stöwe, K.
Kristall und Bandstruktur von TlTe.
Zeitschrift für Kristallographie / Supplemente (1999) 16, 117.

[23]

Stöwe, K.
Kristall und Bandstruktur von LaTe2.
Zeitschrift für Kristallographie / Supplemente (1999) 16, 98.

[22]

Stöwe, K.
Kristall und Bandstruktur von NdTe2-x.
Zeitschrift für Kristallographie / Supplemente (1999) 16, 97.

 

1998

[21]

Stöwe, K.
Nonstoichiometry in Er-Te binary and Er-Te-I ternary systems.
Journal of Solid State Chemistry (1998) 139(1), 57-65.
doi.org/10.1006/jssc.1998.7807

[20]

Stöwe, K., & Wagner, F. R.
Crystal structure and calculated electronic band structure of ZrTe3.
Journal of Solid State Chemistry(1998) 138(1), 160-168.
doi.org/10.1006/jssc.1998.7769

[19]

Stöwe, K.
Kristallstruktur, Leitfähigkeit und magnetische Suszeptibilität von Er2Te3.
Zeitschrift für Anorganische und Allgemeine Chemie (1998) 624(5), 872-876.

 

1997

[18]

Stöwe, K.
Crystal chemical and spectroscopical investigations of homonuclear interactions in uranium tellurides.
Zeitschrift für Kristallographie / Supplemente (1997) 15, 162.

[17]

Stöwe, K.
Polytype Modifikationen der Verbindung U0,9Te3.
Zeitschrift für Kristallographie / Supplemente (1997) 15, 137.

[16]

Stöwe, K.
Photoelektronenspektroskopische Untersuchungen an Urantrichalkogeniden
Zeitschrift für Kristallographie / Supplemente (1997) 15, 129.

[15]

Stöwe, K.
Die Kristallstrukturen von ErSeI und NaErSe2. Zeitschrift für Anorganische und Allgemeine Chemie(1997) 623(10), 1639-1643.

[14]

Kohlmann, H., Stöwe, K., & Beck, H. P.
Darstellung und Kristallstruktur von FeU8S17.
Zeitschrift für Anorganische und Allgemeine Chemie (1997) 623(6), 897-900.

[13]

Stöwe, K.
Beiträge zur Kristallchemie der Urantelluride. IV [1, 2, 3]. Die Kristallstruktur von U0.9Te3.
Zeitschrift für Anorganische und Allgemeine Chemie(1997) 623(5), 749-754.

[12]

Stöwe, K.
Uncommon valence states in the metallic lanthanide and actinide diiodides MI2 (M = La, Ce, Nd, Gd and Th) and in the uranium tellurides UTe2, U2Te5 and UTe3.
Part 2. The uranium tellurides UTe2, U2Te5 and α-UTe3.
Journal of Alloys and Compounds (1997) 246(1-2), 111-123.
doi.org/10.1016/S0925-8388(96)02939-8

[11]

Stöwe, K., Tratzky, S., Beck, H. P., Jungmann, A., Claessen, R., Zimmermann, R., Meng, G.; Steiner, P., & Huefner, S.
Uncommon valence states in the metallic lanthanide and actinide diiodides MI2 (M = La, Ce, Nd, Gd and Th) and in the uranium tellurides UTe2, U2Te5 and UTe3.
Part 1. The rare earth diiodides LnI2 (Ln = La, Ce, Nd, Gd) and ThI2.
Journal of Alloys and Compounds (1997) 246(1-2), 101-110.
doi.org/10.1016/S0925-8388(96)02469-3

 

1996

[10]

Stöwe, K.
Contributions to the crystal chemistry of uranium tellurides. III. Temperature-dependent structural investigations on uranium ditelluride.
Journal of Solid State Chemistry (1996) 127(2), 202-210.
doi.org/10.1006/jssc.1996.0376

[9]

Stöwe, K.
Beiträge zur Kristallchemie der Urantelluride. II. Die Kristallstruktur des Diuranpentatellurids U2Te5.
Zeitschrift für Anorganische und Allgemeine Chemie (1996) 622(8), 1423-1427.

[8]

Stöwe, K.
Beiträge zur Kristallchemie der Urantelluride. I. Die Kristallstruktur des α-Urantritellurids.
Zeitschrift für Anorganische und Allgemeine Chemie (1996) 622(8), 1419-1422.

[7]

Stöwe, K.
Kristallchemische und spektroskopische Untersuchungen zu homonuklearen Wechselwirkungen in ausgewählten Lanthanoiden- und Actinoiden-chalkogeniden und -chalkogenohalogeniden.
Habilitationsschrift (1996) Institut für Anorganische und Analytische Chemie und Radiochemie, Universität des Saarlandes, Saarbrücken

 

1995

[6]

Jungmann, A., Claessen, R., Zimmermann, R., Meng, G., Steiner, P., Huefner, S., Tratzky, S., Stöwe, K., & Beck, H. P.
Photoemission of LaI2 and CeI2.
Zeitschrift für Physik B: Condensed Matter (1995) 97(1), 25-34.
doi.org/10.1007/BF01317584

 

1994

[5]

Stöwe, K., & Beck, H. P.
Low temperature polymorphs of the compound In3SnI5.
Zeitschrift für Kristallographie (1994) 209(1), 36-42.
doi.org/10.1524/zkri.1994.209.1.36

[4]

Stöwe, K.
Zur Struktur und Dotierung von Selenosilikaten: die Kristallstruktur von Er2SeSiO4 und Er3.75Ca0.25Se2.75Cl0.25Si2O7.
Zeitschrift für Naturforschung B: Chemical Sciences (1994) 49(6), 733-740.
doi.org/10.1515/znb-1994-0603

 

1992

[3]

Stöwe, K., & Beck, H. P.
Zur Neuuntersuchung des Phasendiagramms TlI-SnI2.
Zeitschrift für Anorganische und Allgemeine Chemie (1992) 608, 119-122.

[2]

Stöwe, K., & Beck, H. P. Zur Neuuntersuchung des Phasendiagramms InI-SnI2.
Zeitschrift für Anorganische und Allgemeine Chemie (1992) 608, 115-118.

 

1990

[1]

Stöwe, K.
Differenzthermoanalytische, kristallchemische und 119Sn-Mößbauer-spektroskopische Untersuchung von Verbindungen des Typs AaSnbXx (A=K, In, Tl und X=Cl, Br, I) und Aspekte zur Theorie und Praxis der Dynamischen Wärmestrom-Differenzkalorimetrie.
Dissertation (1990) Anorganische Chemie, Friedrich-Alexander-Universität Erlangen-Nürnberg