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Dive into the research topics where Felipe P. Fleming is active.

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Featured researches published by Felipe P. Fleming.


Theoretical Chemistry Accounts | 2018

The multiconfiguration Spin-Coupled approach for the description of the three-center two-electron chemical bond of some carbenium and nonclassical ions

André G. H. Barbosa; André M. Henriques; João G. S. Monteiro; Felipe P. Fleming; Pierre M. Esteves

The intrinsically elusive concepts of electronic “delocalization” and “chemical resonance” are briefly reviewed emphasizing their connection with Spin-Coupled (SC) descriptions of electronic structure. Multiconfiguration Spin-Coupled (MC-SC) calculations are performed to describe the three-center two-electron (3c-2e) bonding in some representative carbenium and nonclassical carbonium ions. Within the MC-SC approach, it is found that these cations present significant electronic energy stabilization when described by more than one valence SC spatial orbital configuration. It is shown that it is necessary to have a superposition of two chemical structures to completely span the orbital valence space of these cations. Two characteristic bonding themes are clearly distinguished. One specific to allyl-type carbenium ions and another specific to the nonclassical carbonium ions. In both situations, the 3c-2e bond is described by two chemical structures. The 3c-2e bond present in these carbocations is described clearly within this conceptual framework. The results point out for the robustness of the Spin-Coupled description in yielding a general picture of bonding, even when considering valence-bond type multiconfiguration effects.


Journal of Physical Chemistry A | 2018

Assessing the Molecular Basis of the Fuel Octane Scale: A Detailed Investigation on the Rate Controlling Steps of the Autoignition of Heptane and Isooctane

João G. S. Monteiro; André G. H. Barbosa; André M. Henriques; Pedro Henrique Gonçalves Neves; Roberto Sousa Furtado; Rodrigo Mello Menezes; Anderson Rouge dos Santos; Felipe P. Fleming

N-Heptane and 2,2,4-trimethylpentane (isooctane) are the key species in the modeling of ignition of hydrocarbon-based fuel formulations. Isooctane is knock-resistant whereas n-heptane is a very knock-prone hydrocarbon. It has been suggested that interconversion of their associated alkylperoxy and hydroperoxyalkyl species via hydrogen-transfer isomerization reaction is the key step to understand their different knocking behavior. In this work, the kinetics of unimolecular hydrogen-transfer reactions of n-heptylperoxy and isooctylperoxy are determined using canonical variational transition-state theory and multidimensional small curvature tunneling. Internal rotation of involved molecules is taken explicitly into account in the molecular partition function. The rate coefficients are calculated in the temperature range 300-900 K, relevant to low-temperature autoignition. The concerted HO2 elimination is an important reaction that competes with some H-transfer and is associated with chain termination. Thus, the branching ratio between these reaction channels is analyzed. We show that variational and multidimensional tunneling effects cannot be neglected for the H-transfer reaction. In particular, the pre-exponential Arrhenius fitting parameter derived from our rate constants shows a strong dependence on the temperature, because tunneling increases quickly at temperatures below 500 K. On the basis of our results, the existing qualitative model for the reasons for different knock behavior observed for n-heptane and isooctane is quantitatively validated at the molecular level.


ChemInform | 2007

Theoretical studies on structure and dynamics of carbonium ions

Pierre M. Esteves; Felipe P. Fleming; André G. H. Barbosa

Modem valence bond (VB) theories such as Spin-Coupled theory, together with DFT and Molller-Plesset MO methods, and ab initio molecular dynamics, were employed to study structure/dynamics in representative carbonium ions.


Fuel | 2014

An evaluation of the aromaticity of asphaltenes using atmospheric pressure photoionization Fourier transform ion cyclotron resonance mass spectrometry – APPI(±)FT-ICR MS

Thieres M.C. Pereira; Gabriela Vanini; Emanuele C.S. Oliveira; Felipe M.R. Cardoso; Felipe P. Fleming; Alvaro C. Neto; Valdemar Lacerda; Eustáquio V.R. Castro; Boniek G. Vaz; Wanderson Romão


Fuel | 2014

FT-ICR MS analysis of asphaltenes: Asphaltenes go in, fullerenes come out

Thieres M.C. Pereira; Gabriela Vanini; Lilian V. Tose; Felipe Monte Cardoso; Felipe P. Fleming; Paulo de Tarso Vieira e Rosa; Christopher J. Thompson; Eustáquio V.R. Castro; Boniek G. Vaz; Wanderson Romão


Fuel | 2015

Analyzes of hydrocarbons by atmosphere pressure chemical ionization FT-ICR mass spectrometry using isooctane as ionizing reagent

Lilian V. Tose; Felipe M.R. Cardoso; Felipe P. Fleming; Maristela A. Vicente; Samantha R.C. Silva; Glória M.F.V. Aquije; Boniek G. Vaz; Wanderson Romão


Journal of Physical Chemistry A | 2006

Nature of the chemical bond in protonated methane.

Felipe P. Fleming; André G. H. Barbosa; Pierre M. Esteves


Fluid Phase Equilibria | 2017

Direct adjustment of wax thermodynamic model parameter to micro Differential Scanning Calorimetry thermograms

Felipe P. Fleming; Jean-Luc Daridon; L. F. A. Azevedo; Jérôme Pauly


OTC Brasil | 2013

Lessons Learned on Wax Issues From Deep Offshore Brazil

Marcelo A. L. Gonçalves; Felipe P. Fleming; Ricardo M. T. Camargo; Jose Ricardo de Toledo Montesanti


Journal of Petroleum Science and Engineering | 2017

Paraffin solubility and calorimetric data calculation using Peng-Robinson EoS and modified UNIQUAC models

Vinícius Ribeiro Machado da Silva; Rafael P. do Carmo; Felipe P. Fleming; Jean-Luc Daridon; Jérôme Pauly; Frederico W. Tavares

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André G. H. Barbosa

Federal Fluminense University

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Boniek G. Vaz

Universidade Federal de Goiás

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Wanderson Romão

Universidade Federal do Espírito Santo

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Lilian V. Tose

Universidade Federal do Espírito Santo

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Pierre M. Esteves

Federal University of Rio de Janeiro

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Frederico W. Tavares

Federal University of Rio de Janeiro

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L. F. A. Azevedo

Pontifical Catholic University of Rio de Janeiro

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Rafael P. do Carmo

Federal University of Rio de Janeiro

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