Search Results - "Rambo, C R"
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Chemical in situ polymerization of polypyrrole on bacterial cellulose nanofibers
Published in Synthetic metals (01-01-2011)“…Conducting porous nanofibrous composite membranes of bacterial cellulose (BC) and polypyrrole (PPy) were prepared through in situ oxidative chemical…”
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2
Manufacturing of biomorphic (Si, Ti, Zr)-carbide ceramics by sol–gel processing
Published in Carbon (New York) (01-05-2005)“…Biomorphic (wood derived) carbide ceramics with an overall composition in the systems MeC/C (with Me = Si, Ti, Zr) were produced by vacuum infiltration of low…”
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3
Novel Synthetic Route to Biomorphic Al2O3 Ceramics
Published in Advanced materials (Weinheim) (18-04-2005)“…By using rattan palm as a biotemplate, highly porous, α‐Al2O3 ceramics with uniaxially directed porosity are produced via aluminum‐vapor infiltration and…”
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4
Evaluation of permeability of ceramic wick structures for two phase heat transfer devices
Published in Applied thermal engineering (01-05-2011)“…This work reports on different approaches to predict the pressure drop in capillary structures for two phase heat transfer devices (TPHTD). For this purpose,…”
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5
Preparation and properties of highly porous, biomorphic YSZ ceramics
Published in Materials chemistry and physics (15-10-2004)“…Highly porous, biomorphic YSZ (yttria-stabilized zirconia) ceramics were manufactured by infiltration of zirconium-oxychloride (ZrOCl 2·8H 2O) sol into…”
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6
Synthesis of TiC/Ti–Cu composites by pressureless reactive infiltration of TiCu alloy into carbon preforms fabricated by 3D-printing
Published in Materials letters (01-04-2005)“…The microstructure of dense TiC/Ti–Cu composites fabricated by pressureless infiltration of TiCu alloy into porous starch derived carbon preform produced by…”
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7
Manufacturing of cellular β-SiAlON/β-SiC composite ceramics from cardboard
Published in Journal of materials science (01-06-2006)“…Light-weight, cellular β-SiAlON/SiC ceramics were produced via dip-coating of an Al/Si-powder containing preceramic polymer slurry into corrugated cardboard…”
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8
Manufacturing of microcellular, biomorphous oxide ceramics from native pine wood
Published in Ceramics international (2004)“…Pine wood was vacuum infiltrated with different low viscous alumina-, titania- and zirconia-sol. Subsequent pyrolysis in inert atmosphere at 800 °C and…”
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Journal Article Conference Proceeding -
9
Preparation of Porous Al2O3-Ceramics by Biotemplating of Wood
Published in Journal of porous materials (01-07-2004)“…A new approach for preparing of microcellular ceramic materials is the reproduction of wood morphologies by biotemplating, where the structural features of the…”
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10
Electrically conducting nanocomposites: preparation and properties of polyaniline (PAni)-coated bacterial cellulose nanofibers (BC)
Published in Cellulose (London) (01-10-2012)“…Free-standing films of bacterial cellulose (BC) and polyaniline (PAni) (BC/PAni) composites with high electrical conductivity values (0.9 S cm −1 ) and good…”
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11
Microwave-assisted hydrothermal carbonization of lignocellulosic materials
Published in Materials letters (31-12-2009)“…A new microwave-assisted hydrothermal carbonization (MAHC) method is reported in this work. The process uses microwave heating at 200 °C in acidic aqueous…”
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12
Neuronal cells' behavior on polypyrrole coated bacterial nanocellulose three-dimensional (3D) scaffolds
Published in Journal of biomaterials science. Polymer ed. (01-08-2013)“…In this work, polypyrrole (PPy) was in situ polymerized onto the surface of bacterial nanocellulose (BNC) produced by Gluconacetobacter xylinus, by chemical…”
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13
A complex network approach for the growth of aerogels
Published in Physica A (15-07-2014)“…The formation of the gel structure of a finite set of inorganic particles interacting via long range potentials is studied via Monte Carlo simulations for…”
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Journal Article -
14
Microstructure and properties of LZSA glass-ceramic foams
Published in Materials science & engineering. A, Structural materials : properties, microstructure and processing (15-03-2008)“…Commercial polyurethane foams with a monomodal pore size distribution were used to produce LZSA glass-ceramic foams by the polymeric sponge method. A…”
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Journal Article -
15
Sand dollar skeleton as templates for bacterial cellulose coating and apatite precipitation
Published in Journal of materials science (01-10-2010)“…In this work, the skeleton of Sand Dollar ( Clypeaster subdepressus) was coated by bacterial cellulose (BC) produced by Gluconacetobacter hansenii and…”
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Journal Article -
16
Synthesis of porous biomorphic α/β-Si3N4 composite from sea sponge
Published in Journal of porous materials (01-08-2008)“…Biomorphic α/β-Si 3 N 4 composites were produced from natural sea sponge via replication method. The sponges were impregnated with a Si-containing slurry via…”
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Journal Article -
17
Effect of processing route on the properties of Ni-based catalytic filters obtained from natural amorphous silica fibers
Published in Ceramics international (01-12-2012)“…In this work catalytic fibrous filters were produced through two distinct processing routes from natural amorphous silica fibers (NASF) and Ni(NO3)2 solution…”
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18
Control of Porosity and Permeability of Wood by Fungi Action for Biotemplating of SiC
Published in Journal of wood chemistry and technology (2013)“…Biotemplating is a process for the manufacturing of materials from natural resources. In this work, staining fungi were applied to control the porosity and…”
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Journal Article -
19
Relationship between Rheological Behaviour and Final Structure of Al2O3 and YSZ Foams Produced by Replica
Published in Advances in materials science and engineering (01-01-2012)“…Using rheological parameters of ceramic suspensions, it is possible to taylor the structure of the ceramic foams produced by replica. This method consists in…”
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Journal Article -
20
ZrO2 foams for porous radiant burners
Published in Journal of materials science (01-07-2009)“…In this work, Y 2 O 3 -stabilized ZrO 2 (YSZ) foams with low relative density were developed through the replication method, for application as porous radiant…”
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