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Martin Hermus
Martin Hermus
Department of Chemistry, University of Houston
在 uh.edu 的电子邮件经过验证
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引用次数
引用次数
年份
Tunable Optical Properties and Increased Thermal Quenching in the Blue-Emitting Phosphor Series: Ba2(Y1–xLux)5B5O17:Ce3+ (x = 0–1)
M Hermus, PC Phan, AC Duke, J Brgoch
Chemistry of Materials 29 (12), 5267-5275, 2017
1712017
Ab Initio Structure Determination and Photoluminescent Properties of an Efficient, Thermally Stable Blue Phosphor, Ba2Y5B5O17:Ce3+
M Hermus, PC Phan, J Brgoch
Chemistry of Materials 28 (4), 1121-1127, 2016
832016
AllBoron Planar B6 Ring in the SolidState Phase Ti7Rh4Ir2B8
BPT Fokwa, M Hermus
Angewandte Chemie International Edition 7 (51), 1702-1705, 2012
712012
Drastic Change of Magnetic Interactions and Hysteresis through Site-Preferential Ru/Ir Substitution in Sc2FeRu5–xIrxB2
M Hermus, M Yang, D Grüner, FJ DiSalvo, BPT Fokwa
Chemistry of materials 26 (5), 1967-1974, 2014
332014
Complete Titanium Substitution by Boron in a Tetragonal Prism: Exploring the Complex Boride Series Ti3−xRu5−yIryB2+x (0 ≤ x ≤ 1 and 1 < y < 3) by …
BPT Fokwa, M Hermus
Inorganic Chemistry 50 (8), 3332-3341, 2011
222011
Planarer B6Ring in der Festkörperverbindung Ti7Rh4Ir2B8
BPT Fokwa, M Hermus
Angewandte Chemie 7 (124), 1734-1737, 2012
202012
Zr2Ir6B with an eightfold superstructure of the cubic perovskite-like boride ZrIr3B0. 5: Synthesis, crystal structure and bonding analysis
M Hermus, BPT Fokwa
Journal of Solid State Chemistry 183 (4), 784-788, 2010
202010
Nb3Ru5B2 – The First Fully Characterized Ternary Phase in the NbRuB System: Synthesis, Crystal Structure, and Bonding Analysis
M Hermus, D Geier, BPT Fokwa
Zeitschrift für anorganische und allgemeine Chemie 638 (1), 49-52, 2012
182012
Pressure-Stabilized Ir3– in a Superconducting Potassium Iridide
J Brgoch, M Hermus
The Journal of Physical Chemistry C 120 (36), 20033-20039, 2016
132016
Unexpected Trend Deviation in Isoelectronic Transition Metal Borides A3T5B2 (A = group 4, T = group 9): Ti3Co5B2 vs. PerovskiteType Studied by …
P Shankhari, JP Scheifers, M Hermus, K Yubuta, BPT Fokwa
Zeitschrift für anorganische und allgemeine Chemie 643 (21), 1551-1556, 2017
122017
Electronic Pseudogap-Driven Formation of New Double-Perovskite-like Borides within the Sc2Ir6–xTxB (T = Pd, Ni; x = 0–6) Series
M Hermus, JP Scheifers, R Touzani, BPT Fokwa
Inorganic Chemistry 54 (8), 4056-4063, 2015
122015
Yellow-green luminescence and extreme thermal quenching in the Sr6M2Al4O15: Eu2+ (M= Y, Lu, Sc) phosphor series
AC Duke, E Finley, M Hermus, J Brgoch
Solid State Sciences 60, 108-113, 2016
112016
Synthesis, Crystal Structure, and Ru/Ir Site Preference in the Complex Boride Series Ti2FeRu5–xIrxB2 and Zr2Fe1–δRu5–x+ δIrxB2 (x= 1–4, δ< 0.15)
M Hermus, BPT Fokwa
Zeitschrift für anorganische und allgemeine Chemie 637 (78), 947-954, 2011
112011
Searching for Missing Binary Equiatomic Phases: Complex Crystal Chemistry in the Hf− In System
AO Oliynyk, MW Gaultois, M Hermus, AJ Morris, A Mar, J Brgoch
Inorganic chemistry 57 (13), 7966-7974, 2018
102018
Discovery of γ-MnP4 and the Polymorphism of Manganese Tetraphosphide
DB Henge, M Hermus, CF Litterscheid, N Wagner, J Beck, B Albert, ...
Inorganic Chemistry 54 (17), 8761-8768, 2015
102015
Phosphors by design: approaches toward the development of advanced luminescent materials
M Hermus, J Brgoch
The Electrochemical Society Interface 24 (4), 55, 2015
92015
Experimental and FirstPrinciples Studies of the Ternary Borides Ta3Ru5B2 and M3–xRu5+xB2 (M = Zr, Hf)
M Hermus, BPT Fokwa
European Journal of Inorganic Chemistry 2014 (19), 3085-3094, 2014
82014
Determining a Structural Distortion and Anion Ordering in La2Si4N6C via Computation and Experiment
M Hermus, A Mansouri Tehrani, J Brgoch
Inorganic Chemistry 55 (18), 9454-9460, 2016
62016
Structure Transformation and Cerium-Substituted Optical Response across the Carbonitridosilicate Solid Solution (LaδY1−δ)2Si4N6C (δ = 0–0.5)
AC Duke, M Hermus, J Brgoch
Inorganic Chemistry 57 (1), 519-527, 2018
12018
Competing Electronic and Size Effects When Substituting 3d Elements for Nb in Nb3Ru5B2 En Route to the Quaternary Phases (Nb2–xScx) 4gNb2aRu5B2 (1≤ x< 2), Nb3–xMxRu5B2 (M= Ti …
M Hermus, BPT Fokwa
European Journal of Inorganic Chemistry 2012 (30), 4877-4884, 2012
12012
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