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Dive into the research topics where L. Martinez Gomez is active.

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Featured researches published by L. Martinez Gomez.


Journal of Photochemistry and Photobiology B-biology | 2017

Nitrogen doped carbon dots derived from Sargassum fluitans as fluorophore for DNA detection

S. Godavarthi; K. Mohan Kumar; E. Vázquez Vélez; A. Hernandez-Eligio; M. Mahendhiran; N. Hernandez-Como; María R. Alemán; L. Martinez Gomez

This work focused on the use of waste seaweed Sargassum fluitans (S. fluitans) as carbon source precursor to prepare nitrogen doped carbon dots (NCDs) by hydrothermal method. High resolution transmission electron microscopic (HR-TEM) studies revealed that the synthesized water soluble NCDs are in the size range of 2-8nm and exhibits excellent fluorescent properties with a quantum yield of 18.2%. Elemental nitrogen in NCDs was evidenced by X-ray photoelectron spectroscopy (XPS) and Fourier transformed infrared spectrum (FT-IR). The phytochemical analysis of S. fluitans using 1H NMR and 13C NMR revealed the presence of few amino acids which act as nitrogen source in the preparation of NCDs. Application of NCDs as fluorophore for double stranded DNA, single stranded DNA and RNA detection was highlighted in this study. Excellent fluorescent tagging abilities of NCDs with the biological nucleic acids were evidenced using gel electrophoresis. Significant increase in fluorescence was observed upon tagging of NCDs with nucleic acids and this particular phenomenon helps better in visualizing the nucleic acids. All three nucleic acids i.e. double stranded DNA, single stranded DNA and RNA showed similar phenomenon upon tagging with NCDs. Thus synthesized NCDs may be used as an alternate fluorophore for commercial toxic organic staining agents to visualize nucleic acids.


RSC Advances | 2018

Size controlled green synthesis of gold nanoparticles using Coffea arabica seed extract and their catalytic performance in 4-nitrophenol reduction

N. K. R. Bogireddy; U. Pal; L. Martinez Gomez; V. Agarwal

Well crystalline gold nanoparticles (AuNPs) of different sizes were fabricated using sundried Coffea arabica seed (CAS) extract at room temperature by controlling the pH of the green extract. The size, shape and crystallinity of the nanoparticles have been studied using electron microscopy and X-ray diffraction. The presence of phenolic groups (revealed through FT-IR studies) from the CAS extract are responsible both for the reduction of Au ions and stabilization of the formed AuNPs. The efficiency of the CAS extract mediated green synthesis technique for the production of AuNPs has been compared to the conventional chemical Turkevich technique, which not only uses a toxic reductant such as NaBH4, but also operates around the boiling point of water. It has been observed that the CAS extract mediated synthesis process produces relatively bigger AuNPs at similar pH values of the reaction mixture in comparison to the AuNPs produced in the Turkevich process. Although the AuNPs synthesized using CAS extract are relatively larger and polydisperse in nature, their catalytic efficiencies for the degradation of an aromatic nitro compound (4-nitrophenol) are found to be comparable to the chemically fabricated AuNPs. Probable mechanisms associated with the formation of AuNPs and their size control in the CAS extract mediated green synthesis process have been discussed.


Materials Letters | 2016

Green synthesis of S-doped rod shaped anatase TiO2 microstructures

K. Mohan Kumar; S. Godavarthi; T.V.K. Karthik; M. Mahendhiran; A. Hernandez-Eligio; N. Hernandez-Como; V. Agarwal; L. Martinez Gomez


Materials Letters | 2018

Green synthesis of Ce 3+ rich CeO 2 nanoparticles and its antimicrobial studies

K. Mohan Kumar; M. Mahendhiran; M. Casales Díaz; N. Hernandez-Como; A. Hernandez-Eligio; G. Torres-Torres; S. Godavarthi; L. Martinez Gomez


Journal of Sol-Gel Science and Technology | 2016

Green synthesis of hausmannite nanocrystals and their photocatalytic dye degradation and antimicrobial studies

K. Mohan Kumar; S. Godavarthi; E. Vázquez Vélez; M. Casales Díaz; M. Mahendhiran; A. Hernandez-Eligio; M. G. Syamala Rao; L. Martinez Gomez


Corrosion | 2012

Evaluation of The Corrosion Inhibition By a Coco-Modified Imidazoline In CO 2 -H 2 S

L.M. Rivera Grau; M. Casales; D.M. Ortega-Toledo; Jorge A. Ascencio; Lorenzo Martínez-Gómez; I. Regla; J. Chacón-Nava; D. Cuervo; M.P. López; L.M. Martinez de la Escalera; L. Martinez Gomez


Ingeniería Investigación y Tecnología; Vol 10, No 004 (2009) | 2011

Effect of an Imidazoline [IM-NH17] on the Corrosion Process of API5l-X52 Steel Exposed in Acidified Brines

A. G. Reynaud Morales; M. Casales Díaz; J. G. Chacón Nava; L. Martinez Gomez; A. Martínez Villafañe; J. G. González Rodríguez


Ingeniería Investigación y Tecnología | 2011

Efecto de la imidazolina [IM-NH17] en el proceso de corrosión del acero api5l-x52 en salmueras acidificadas

A. G. Reynaud Morales; M. Casales Díaz; J. G. Chacón Nava; L. Martinez Gomez; A. Martínez Villafañe; J. G. González Rodríguez


Corrosion | 2008

Coatings Strategy For Fuel Storage And Energy Facilities In Mexico

L.M. Martinez de la Escalera; M. Paredes; A. Rios; J.A. Padilla Lopez-Mendez; J. Genesca; Jorge A. Ascencio; L. Martinez Gomez


Corrosion | 2008

Design And Construction Of The Hybrid Cp System For The Mexico City Airport Jet Fuel Pipeline Under The 100Mv Polarization Criterion.

L.M. Martinez de la Escalera; Jorge Canto; A. Rios; H. Carrillo; H.C. Albaya; Jorge A. Ascencio; L. Martinez Gomez

Collaboration


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A. Hernandez-Eligio

National Autonomous University of Mexico

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Jorge A. Ascencio

National Autonomous University of Mexico

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K. Mohan Kumar

National Autonomous University of Mexico

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M. Casales Díaz

National Autonomous University of Mexico

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M. Mahendhiran

National Autonomous University of Mexico

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S. Godavarthi

National Autonomous University of Mexico

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N. Hernandez-Como

Instituto Politécnico Nacional

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A. G. Reynaud Morales

National Autonomous University of Mexico

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A. Martínez Villafañe

National Autonomous University of Mexico

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E. Vázquez Vélez

National Autonomous University of Mexico

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