Joshua Melko
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Physics
Joshua Melko's Degrees
- PhD Physics Stanford University
- Masters Physics Stanford University
Why Is Joshua Melko Influential?
(Suggest an Edit or Addition)According to Wikipedia, Joshua Melko is an American scientist and chemistry professor. Melko is an associate professor of physical chemistry in the Department of Chemistry at University of North Florida. His research focuses on studying gas phase chemical reactions that are relevant to the atmospheres of Earth and Mars which provides insights into reactions critical in global warming, ground-to-space communication, and habitability of other planets. Melko is best known for his innovative online teaching methods on the popular streaming platform Twitch.
Joshua Melko's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- Activation of methane by FeO+: determining reaction pathways through temperature-dependent kinetics and statistical modeling. (2014) (44)
- Evaluation of the exothermicity of the chemi-ionization reaction Sm + O → SmO(+) + e(.). (2015) (35)
- Temperature dependence of the OH(-) + CH3I reaction kinetics. experimental and simulation studies and atomic-level dynamics. (2013) (32)
- Further insight into the reaction FeO(+) + H2 → Fe(+) + H2O: temperature dependent kinetics, isotope effects, and statistical modeling. (2014) (30)
- Iron cation catalyzed reduction of N2O by CO: gas-phase temperature dependent kinetics. (2013) (27)
- Al(n)Bi clusters: transitions between aromatic and jellium stability. (2008) (25)
- Exploring the reactions of Fe+ and FeO+ with NO and NO2. (2012) (23)
- Photoelectron imaging of small aluminum clusters: quantifying s-p hybridization. (2013) (22)
- S-P coupling induced unusual open-shell metal clusters. (2014) (19)
- Effect of charge and composition on the structural fluxionality and stability of nine atom tin-bismuth Zintl analogues. (2008) (19)
- Combined experimental and theoretical study of Al(n)X (n = 1-6; X = As, Sb) clusters: evidence of aromaticity and the Jellium model. (2010) (19)
- Spin-inversion and spin-selection in the reactions FeO(+) + H2 and Fe(+) + N2O. (2015) (18)
- Temperature dependences for the reactions of O2(-) and O(-) with N and O atoms in a selected-ion flow tube instrument. (2013) (17)
- A novel technique for measurement of thermal rate constants and temperature dependences of dissociative recombination: CO2(+), CF3(+), N2O(+), C7H8(+), C7H7(+), C6H6(+), C6H5(+), C5H6(+), C4H4(+), and C3H3(+). (2013) (17)
- Statistical modeling of the reactions Fe(+) + N2O → FeO(+) + N2 and FeO(+) + CO → Fe(+) + CO2. (2015) (16)
- The applicability of three-dimensional aromaticity in BiSn(n)- Zintl analogues. (2010) (16)
- Origins of Stability in Mixed Bismuth−Indium Clusters† (2010) (15)
- Anion Photoelectron Spectroscopy and First-Principles Study of PbxIny Clusters† (2010) (14)
- Resilient aromaticity in lead–indium clusters (2010) (13)
- Electronic structure of Bi3Gay(-) semiconductor clusters and the special stability of Bi3Ga2- – A gas phase Zintl analogue (2009) (12)
- Probing the electronic structures and relative stabilities of monomagnesium oxide clusters MgO(x)- and MgO(x) (x = 1-4): a combined photoelectron imaging and theoretical investigation. (2013) (11)
- Kinetics of CO+ and CO2+ with N and O atoms. (2018) (11)
- Electronic structure similarities in Pb(x)Sb(y)(-) and Sn(x)Bi(y)(-) clusters. (2011) (11)
- Temperature and Isotope Dependent Kinetics of Nickel-Catalyzed Oxidation of Methane by Ozone. (2018) (10)
- Evaluation of the Exothermicity of the Chemi-Ionization Reaction sm + O → SmO + + e - (2015) (10)
- Incorporating time-of-flight detection on a selected ion flow tube apparatus (2015) (9)
- Selected-ion flow tube temperature-dependent measurements for the reactions of O₂⁺ with N atoms and N₂⁺ with O atoms. (2015) (8)
- Effect of higher order solvation and temperature on SN2 and E2 reactivity (2015) (8)
- Determining Rate Constants and Mechanisms for Sequential Reactions of Fe+ with Ozone at 500 K. (2017) (8)
- Electron attachment to C7F14, thermal detachment from C7F14(-), the electron affinity of C7F14, and neutralization of C7F14(-) by Ar+. (2012) (8)
- Reactions of Fe+ and FeO+ with C2H2, C2H4, and C2H6: temperature-dependent kinetics. (2013) (7)
- Electron delocalization in a non-cyclic all-metal III–V cluster (2009) (7)
- Stability and electronic properties of isoelectronic heteroatomic analogs of Sn52 (2011) (6)
- Coupling an electrospray source and a solids probe/chemical ionization source to a selected ion flow tube apparatus. (2015) (4)
- Temperature dependences for the reactions of Ar+, O2+, and C7H7+ with toluene and ethylbenzene (2013) (3)
- Structural evolution of triniobium carbide clusters: evidence of large Cn chains (n = 3-4) in Nb3Cn- (n = 5-10) clusters. (2010) (2)
- Mechanisms of sequential ion-molecule reactions in protonated methanol (2019) (2)
- Comment on "Role of (NO)2 dimer in reactions of Fe(+) with NO and NO2 studied by ICP-SIFT mass spectrometry". (2013) (2)
- Temperature-dependent kinetics of charge transfer, hydrogen-atom transfer, and hydrogen-atom expulsion in the reaction of CO+ with CH4 and CD4. (2014) (2)
- Statistical modeling of the reactions Fe + + N 2 O-FeO + + N 2 and FeO + + COFe + + CO 2 (2015) (1)
- Further Insight into the Reaction FeO+ + H2 Yields Fe+ + H2O: Temperature Dependent Kinetics, Isotope Effects, and Statistical Modeling (Postprint) (2014) (1)
- Effect of Higher Order Solvation and Temperature on SN2 and E2 Reactivity (Postprint) (2014) (0)
- FURTHER INSIGHT INTO THE REACTION F e O + + H 2 → FE + + H 2 O : TEMPERATURE DEPENDENT KINETICS , ISOTOPE EFFECTS , AND STATISTICAL MODELING ( POSTPRINT ) (2014) (0)
- Reactions of Fe + and FeO + with C 2 H 2 , C 2 H 4 , and C 2 H 6 : Temperature-Dependent Kinetics (2013) (0)
- Photoelectron Spectroscopy Investigations on the Stability, Energetics, and Dynamics of Gas-phase p-block Clusters (2011) (0)
- Al$_{n}$Bi Clusters: A Transition from Aromatic to Jellium Stability (2009) (0)
- Unravelling Two State Reactivity: New Insights Combining Experimental, \textit{Ab Initio}, and Statistical Modelling Techniques (2015) (0)
- Photoelectron Spectroscopy of Mixed-Metal Clusters (2008) (0)
- Two-State Reactivity in Hydrocarbon Oxidation by FeO$+$: New Insight through Temperature Dependent Kinetics (2013) (0)
- Study of III-V Semiconductor Clusters using Anion Photoelectron Spectroscopy (2008) (0)
- EFFECT OF HIGHER ORDER SOLVATION AND TEMPERATURE ON S N 2 AND E 2 REACTIVITY ( POSTPRINT ) (2015) (0)
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What Schools Are Affiliated With Joshua Melko?
Joshua Melko is affiliated with the following schools:
