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Featured researches published by P.J. Lezzi.


Scientific Reports | 2012

Covalently bonded three-dimensional carbon nanotube solids via boron induced nanojunctions

Daniel P. Hashim; Narayanan Tharangattu Narayanan; Jose M. Romo-Herrera; David A. Cullen; Myung Gwan Hahm; P.J. Lezzi; Joseph R. Suttle; Doug Kelkhoff; Emilio Muñoz-Sandoval; Sabyasachi Ganguli; Ajit K. Roy; Robert Vajtai; Bobby G. Sumpter; Vincent Meunier; Humberto Terrones; Mauricio Terrones; Pulickel M. Ajayan

The establishment of covalent junctions between carbon nanotubes (CNTs) and the modification of their straight tubular morphology are two strategies needed to successfully synthesize nanotube-based three-dimensional (3D) frameworks exhibiting superior material properties. Engineering such 3D structures in scalable synthetic processes still remains a challenge. This work pioneers the bulk synthesis of 3D macroscale nanotube elastic solids directly via a boron-doping strategy during chemical vapour deposition, which influences the formation of atomic-scale “elbow” junctions and nanotube covalent interconnections. Detailed elemental analysis revealed that the “elbow” junctions are preferred sites for excess boron atoms, indicating the role of boron and curvature in the junction formation mechanism, in agreement with our first principle theoretical calculations. Exploiting this material’s ultra-light weight, super-hydrophobicity, high porosity, thermal stability, and mechanical flexibility, the strongly oleophilic sponge-like solids are demonstrated as unique reusable sorbent scaffolds able to efficiently remove oil from contaminated seawater even after repeated use.


Journal of Non-crystalline Solids | 2013

Strength increase of silica glass fibers by surface stress relaxation: A new mechanical strengthening method

P.J. Lezzi; Qiran Xiao; Minoru Tomozawa; Thierry A. Blanchet; Charles R. Kurkjian


Journal of Non-crystalline Solids | 2012

Surface stress relaxation and resulting residual stress in glass fibers: A new mechanical strengthening mechanism of glasses

Minoru Tomozawa; P.J. Lezzi; R.W. Hepburn; Thierry A. Blanchet; D.J. Cherniak


Journal of Non-crystalline Solids | 2012

Hydrogen-to-alkali ratio in hydrated alkali aluminosilicate glass surfaces

Minoru Tomozawa; D.J. Cherniak; P.J. Lezzi


Journal of Non-crystalline Solids | 2014

Confirmation of thin surface residual compressive stress in silica glass fiber by FTIR reflection spectroscopy

P.J. Lezzi; Minoru Tomozawa; R.W. Hepburn


Journal of Non-crystalline Solids | 2014

Degradation of ion-exchange strengthened glasses due to surface stress relaxation

Jared H. Seaman; P.J. Lezzi; Thierry A. Blanchet; Minoru Tomozawa


Journal of Non-crystalline Solids | 2014

Strengthening of E-glass fibers by surface stress relaxation

P.J. Lezzi; Jared H. Seaman; Minoru Tomozawa


International Journal of Applied Glass Science | 2015

An Overview of the Strengthening of Glass Fibers by Surface Stress Relaxation

P.J. Lezzi; Minoru Tomozawa


Journal of Non-crystalline Solids | 2013

Evaluation of residual curvature in two-point bent glass fibers

P.J. Lezzi; Minoru Tomozawa; Thierry A. Blanchet


Journal of the American Ceramic Society | 2016

Ion‐Exchanged Lithium Aluminosilicate Glass: Strength and Dynamic Fatigue

Emily M. Aaldenberg; P.J. Lezzi; Jared H. Seaman; Thierry A. Blanchet; Minoru Tomozawa

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Minoru Tomozawa

Rensselaer Polytechnic Institute

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Thierry A. Blanchet

Rensselaer Polytechnic Institute

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Jared H. Seaman

Rensselaer Polytechnic Institute

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D.J. Cherniak

Rensselaer Polytechnic Institute

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Emily M. Aaldenberg

Rensselaer Polytechnic Institute

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R.W. Hepburn

Rensselaer Polytechnic Institute

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Ajit K. Roy

Air Force Research Laboratory

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Bobby G. Sumpter

Oak Ridge National Laboratory

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