25 results on '"Spielvogel, Kyle D."'
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2. Synthesis and investigation into explosive sensitivity for a series of new picramide explosives.
3. Investigation of the Synthesis and Energetic Properties of an ANTA-Based Energetic Plasticizer.
4. An Integrated Experimental and Modeling Approach for Assessing High-Temperature Decomposition Kinetics of Explosives.
5. Modulation of Fe–Fe distance and spin in diiron complexes using tetradentate ligands with different flanking donors.
6. Large-Scale Analysis on Accelerated Aging of Pentaerythritol Tetranitrate (PETN) Powders in Detonators.
7. An updated technique to obtain explosive kinetics data on microsecond timescales.
8. Thermal effects of long-term aging on TriPEON stabilized pentaerythritol tetranitrate (PETN) over 18 months at 50, 60, and 75 °C.
9. Development and modeling for a small-scale, rapidly heated high explosives initiation time (HEIT) experiment.
10. Halogenated PETN Derivatives: Interplay Between Physical and Chemical Factors in Explosive Sensitivity
11. Configurational Flexibility of a Triaryl-Supported SBS Ligand with Rh and Ir: Structural Investigations and Olefin Isomerization Catalysis
12. Quantifying Variations in Metal–Ligand Cooperative Binding Strength with Cyclic Voltammetry and Redox-Active Ligands
13. Correction to “Ru(II) Complexes with a Chemical and Redox-Active S2N2 Ligand: Structures, Electrochemistry, and Metal–Ligand Cooperativity”
14. Influence of Multisite Metal–Ligand Cooperativity on the Redox Activity of Noninnocent N2S2 Ligands
15. The Influence of Redox-Innocent Donor Groups in Tetradentate Ligands Derived from o-Phenylenediamine: Electronic Structure Investigations with Nickel
16. Quantifying the Interdependence of Metal–Ligand Covalency and Bond Distance Using Ligand K‐edge XAS
17. Validating the Biphilic Hypothesis of Nontrigonal Phosphorus(III) Compounds
18. Influence of Multisite Metal–Ligand Cooperativity on the Redox Activity of Noninnocent N2S2 Ligands.
19. Ru(II) Complexes with a Chemical and Redox-Active S2N2 Ligand: Structures, Electrochemistry, and Metal–Ligand Cooperativity
20. Ru(II) Complexes with a Chemical and Redox-Active S2N2Ligand: Structures, Electrochemistry, and Metal–Ligand Cooperativity
21. Ru(II) Complexes with a Chemical and Redox-Active S2N2 Ligand: Structures, Electrochemistry, and Metal-Ligand Cooperativity.
22. Design and synthesis of multifunctional noninnocent ligands
23. Correction to "Ru(II) Complexes with a Chemical and Redox-Active S2N2 Ligand: Structures, Electrochemistry, and Metal–Ligand Cooperativity".
24. Correction to “Ru(II) Complexes with a Chemical and Redox-Active S2N2Ligand: Structures, Electrochemistry, and Metal–Ligand Cooperativity”
25. Influence of Multisite Metal-Ligand Cooperativity on the Redox Activity of Noninnocent N 2 S 2 Ligands.
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