40 results on '"Freeman, Arthur"'
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2. Refined Synthesis and Crystal Growth of Pb2P2Se6 for Hard Radiation Detectors
3. An Unusual Crystal Growth Method of the Chalcohalide Semiconductor, β-Hg3S2Cl2: A New Candidate for Hard Radiation Detection
4. Antagonism between Spin–Orbit Coupling and Steric Effects Causes Anomalous Band Gap Evolution in the Perovskite Photovoltaic Materials CH3NH3Sn1–xPbxI3
5. Crystal Growth, Structures, and Properties of the Complex Borides, LaOs2Al2B and La2Os2AlB2
6. Hybrid Germanium Iodide Perovskite Semiconductors: Active Lone Pairs, Structural Distortions, Direct and Indirect Energy Gaps, and Strong Nonlinear Optical Properties
7. Two-Dimensional Mineral [Pb2BiS3][AuTe2]: High-Mobility Charge Carriers in Single-Atom-Thick Layers
8. Cs2Hg3S4: A Low-Dimensional Direct Bandgap Semiconductor
9. Atomic-Scale Understanding of the Interaction of Poly(3-hexylthiophene) with the NiO (100) Surface: A First-Principles Study
10. Orientation-Dependent Electronic Structures and Optical Properties of the P3HT:PCBM Interface: A First-Principles GW-BSE Study
11. Ba2HgS5—A Molecular Trisulfide Salt with Dumbbell-like (HgS2)2– Ions
12. Crystal Growth of Tl4CdI6: A Wide Band Gap Semiconductor for Hard Radiation Detection
13. LiPbSb3S6: A Semiconducting Sulfosalt with Very Low Thermal Conductivity
14. Tunable Rashba Effect in Two-Dimensional LaOBiS2 Films: Ultrathin Candidates for Spin Field Effect Transistors
15. Thallium Mercury Chalcobromides, TlHg6Q4Br5 (Q = S, Se)
16. Cs2MIIMIV3Q8 (Q = S, Se, Te): An Extensive Family of Layered Semiconductors with Diverse Band Gaps
17. Photoconductivity in Tl6SI4: A Novel Semiconductor for Hard Radiation Detection
18. Crystal Growth of the Perovskite Semiconductor CsPbBr3: A New Material for High-Energy Radiation Detection
19. NaBa2Cu3S5: A Doped p-Type Degenerate Semiconductor
20. CsCdInQ3 (Q = Se, Te): New Photoconductive Compounds As Potential Materials for Hard Radiation Detection
21. Semiconducting [(Bi4Te4Br2)(Al2Cl6–xBrx)]Cl2 and [Bi2Se2Br](AlCl4): Cationic Chalcogenide Frameworks from Lewis Acidic Ionic Liquids
22. Mercury Bismuth Chalcohalides, Hg3Q2Bi2Cl8 (Q = S, Se, Te): Syntheses, Crystal Structures, Band Structures, and Optical Properties
23. CsHgInS3: a New Quaternary Semiconductor for γ-ray Detection
24. CsSnI3: Semiconductor or Metal? High Electrical Conductivity and Strong Near-Infrared Photoluminescence from a Single Material. High Hole Mobility and Phase-Transitions
25. Possible n–type carrier sources in In2O3(ZnO)k
26. Tl2Hg3Q4 (Q = S, Se, and Te): High-Density, Wide-Band-Gap Semiconductors
27. Thallium Chalcohalides for X-ray and γ-ray Detection
28. Thallium Chalcogenide-Based Wide-Band-Gap Semiconductors: TlGaSe2 for Radiation Detectors
29. Structural and Electrical Functionality of NiO Interfacial Films in Bulk Heterojunction Organic Solar Cells
30. Synthesis in Ionic Liquids: [Bi2Te2Br](AlCl4), a Direct Gap Semiconductor with a Cationic Framework
31. Soluble Semiconductors AAsSe2 (A = Li, Na) with a Direct-Band-Gap and Strong Second Harmonic Generation: A Combined Experimental and Theoretical Study
32. CaFe4As3: A Metallic Iron Arsenide with Anisotropic Magnetic and Charge-Transport Properties
33. The Tellurophosphate K4P8Te4: Phase-Change Properties, Exfoliation, Photoluminescence in Solution and Nanospheres
34. Synthesis, Structure and Charge Transport Properties of Yb5Al2Sb6: A Zintl Phase with Incomplete Electron Transfer
35. CaFe4As3: A Metallic Iron Arsenide with Anisotropic Magnetic and Charge-Transport Properties
36. Straightforward Route to the Adamantane Clusters [Sn4Q10]4− (Q = S, Se, Te) and Use in the Assembly of Open-Framework Chalcogenides (Me4N)2M[Sn4Se10] (M = MnII, FeII, CoII, ZnII) Including the First Telluride Member (Me4N)2Mn[Ge4Te10]
37. Tuning the Properties of Transparent Oxide Conductors. Dopant Ion Size and Electronic Structure Effects on CdO-Based Transparent Conducting Oxides. Ga- and In-Doped CdO Thin Films Grown by MOCVD
38. Quantum Chemical Analysis of Electronic Structure and n- and p-Type Charge Transport in Perfluoroarene-Modified Oligothiophene Semiconductors
39. CdO as the Archetypical Transparent Conducting Oxide. Systematics of Dopant Ionic Radius and Electronic Structure Effects on Charge Transport and Band Structure
40. Dopant Ion Size and Electronic Structure Effects on Transparent Conducting Oxides. Sc-Doped CdO Thin Films Grown by MOCVD
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