Summary of Scholarly Activities
ORCID | Web of Science | Research ID
Historical & Affiliated Academic Institutions - reverse chronological
Practicing Law Institute (PLI)
Memberships maintained / held with Organizations Supporting Causes of Interest in New York City
Sole Contributing Author Scholarly Book
"Molecular Dynamics Simulations: Key Operations in GROMACS" De Gruyter, Berlin (2019).
Available on Amazon.
De Gruyer is now De Gruyter Bryn.
Master of Science Dissertation
"Studies of Silver Spheroidal Particles for the Improvement of OLED Light Extraction", University of Rochester (2012).
University of Rochester Library Link | UR Library Permalink
PDF available upon request.
Peer-Reviewed Literature
1) G.F. Mongelli, "OLED Device Review and A Summary of the Plasmonic Enhancement Thereof" Intl. Journ. of Chem., Math., and Phys. 3, 1 1-4 (2019).
2) G.F. Mongelli, "A Relatively Complete Description of the Outcoupling Limitation for Planar OLEDs" Intl. Journ. of Chem., Math., and Phys. 3, 1, 5-8 (2019).
3) G.F. Mongelli, "The Estimation of Enhanced Outcoupling for OLEDs with Isotropically Scattering Materials" Intl. Journ. of Chem., Math., and Phys. 3, 1 9-11 (2019).
4) G.F. Mongelli, "An exact solution to Maxwell's equation for a Sphere applied to Silver Nanoparticles" Intl. Journ. of Chem., Math., and Phys. 3, 1 12-14 (2019).
5) G.F. Mongelli, "Characterization of the Scattering Properties of a Spherical Silver Nanoparticle via the Finite-Difference Time-Domain Method" Intl. Journ. of Chem., Math., and Phys. 3, 1 15-17 (2019).
6) G.F. Mongelli, "The Albedo of Metallic Nanoparticles in Air as Computed from FDTD" Intl. Journ. of Chem., Math., and Phys. 3, 1 18-19 (2019).
7) G.F. Mongelli, “Maximizing the Intermediate Product for 3 CSTRs in Series” Research & Development in Materials Science vol. 5, Is. 5 p. 1-3 (2018). ISSN: 2576-8840.
8) G.F. Mongelli, “Chemical Process Design for Manufacture of Xylene Isomers” Industrial Chemistry vol. 4, Is. 1, p. 10000131 (2018). ISSN: 2469-9764.
9) G.F. Mongelli, “Challenges and Opportunities of Shale Gas Extraction via Hydraulic Fracturing” Research & Reviews: Journal of Material Sciences vol. 6, Is. 2 p. 117-133 (2018). DOI: 10.4172/2321-6212.1000223
10) G.F. Mongelli, “Multi-Junction Solar Cells: Snapshots from the First Decade of the Twenty-First Century” Research & Development in Material Sciences vol. 4, Is. 1 pp 1-4 (2018). ISSN: 2576-8840.
11) G.F. Mongelli, “The Free Energy of Solvation for N-Decane in Ethanol-Water Solutions” J. Material Sci. Eng. 6: 322 (2017).
12) G.F. Mongelli, “Critical Polyalkane, Polyether, and Polysilicone Structure Difference: Consideration of Polymer Forces from theOPLS-AA Standpoint” J. Material Sci. Eng. 6: 1 (2017).
13) G.F. Mongelli, “An approach to determining the permittivities of arbitrary materials and the internal quantum efficiency ofemitters” International Journal of Innovation Sciences and Research 6, 1: 955-9565 (2017).
14) G.F. Mongelli, “Counting the relative number of hydrogen bonds in several alcohol-cosolvated systems” Journal of Materials Science and Engineering A 6-9, 9-10: 277-282 (2016) (2016).
15) G.F. Mongelli, “Surface Excess Free Energy: An Elaboration with Particular Insight for Use as a Predictor of Solvophilicity inMolecular Simulation” J. Material Sci. Eng. 6: 310 (2016).
16) G.F. Mongelli, “Low Hanging Fruit in Computational Molecular Dynamics Simulations with the Published OPLS-AA Force Field” J. Material Sci. Eng. (2016).
17) G.F. Mongelli, “The Surface Activity of Polymeric Materials as determined from Computational Simulation” Polymer 82 (2015).
Academic solution materials presented without peer-review
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