1413 - 1417 |
Preparation of mesoporous silicon nitride via a nonaqueous sol-gel route Cheng F, Clark S, Kelly SM, Bradley JS, Lefebvre F |
1418 - 1423 |
Criterion for the avoidance of edge cracking in layered systems He MY, Evans AG, Yehle A |
1424 - 1429 |
Crystallographic texture development in bismuth sodium titanate prepared by reactive-templated grain growth method Kimura T, Takahashi T, Tani T, Saito Y |
1430 - 1435 |
Nanostructured dense ZrO2 thin films from nanoparticles obtained by emulsion precipitation Woudenberg FCM, Sager WFC, ten Elshof JE, Verweij H |
1436 - 1441 |
Consolidation of nanostructured beta-SiC by spark plasma sintering Yamamoto T, Kitaura H, Kodera Y, Ishii T, Ohyanagi M, Munir ZA |
1442 - 1445 |
High surface-area ceria aerogel Thundathil MA, Lai W, Noailles L, Dunn BS, Haile SM |
1446 - 1453 |
High-frequency electromagnetic bandgap structures via indirect solid freeform fabrication Reilly CJ, Chappell WJ, Halloran JW, Katehi LPB |
1454 - 1458 |
Stress required for constrained sintering of a ceramic-filled glass composite Huang CC, Jean JH |
1459 - 1465 |
Use of stress to produce highly oriented tetragonal lead zirconate titanate (PZT 40/60) thin films and resulting electrical properties Brennecka GL, Huebner W, Tuttle BA, Clem PG |
1466 - 1470 |
Microstructural effects on microwave properties of low-temperature cofired ceramic striplines: Experiments and modeling Jang JH |
1471 - 1476 |
La(Sr)FeO3 SOFC cathodes with marginal copper doping Simner SP, Anderson MD, Stevenson JW |
1477 - 1482 |
Ferroelectric and photostrictive properties of fine-grained PLZT ceramics derived from mechanical alloying Takagi K, Kikuchi S, Li JF, Okamura H, Watanabe R, Kawasaki A |
1483 - 1487 |
Suppression of liquid film migration and improvement of dielectric properties in niobium-doped strontium titanate Koo SY, Lee GG, Kang SJL, Nowotny J, Sorrell C |
1488 - 1493 |
Hydrolysis of pure and sodium substituted calcium aluminates and cement clinker components investigated by in situ synchrotron X-ray powder diffraction Christensen AN, Jensen TR, Scarlett NVY, Madsen IC |
1494 - 1501 |
In situ cube-corner indentation of soda-lime glass and fused silica Morris DJ, Cook RF |
1502 - 1508 |
Crack-tip toughness measurements on a sintered reaction-bonded Si3N4 Njiwa ABK, Fett T, Rodel J, Quinn GD |
1509 - 1516 |
Thermal expansion kinetics - Method to measure permeability of cementitious materials: III, effect of viscoelasticity Scherer GW |
1517 - 1524 |
Measuring permeability of rigid materials by a beam-bending method: IV, transversely isotropic plate Scherer GW |
1525 - 1529 |
Effect of amount of boron doping on compression deformation of fine-grained silicon carbide at elevated temperature Shinoda Y, Yoshida M, Akatsu T, Wakai F |
1530 - 1535 |
Chemical aspects of direct coagulation casting of alumina suspensions Tervoort E, Tervoort TA, Gauckler LJ |
1536 - 1542 |
Effect of environment on the stress-rupture behavior of a carbon-fiber-reinforced silicon carbide ceramic matrix composite Verrilli MJ, Opila EJ, Calomino A, Kiser JD |
1543 - 1549 |
Synthesis of thermally stable x-alumina by thermal decomposition of aluminum isopropoxide in toluene Mekasuwandumrong O, Kominami H, Praserthdam P, Inoue M |
1550 - 1555 |
Direct measurement of relative partial molar enthalpy of SiO2 in SiO2-M2O (M=Li, Na, K, Cs) binary and SiO2-CaO-Al2O3 ternary melts Morishita M, Navrotsky A, Wilding MC |
1556 - 1558 |
Oxidation behavior of SiCN-ZrO2 fiber prepared from alkoxide-modified silazane Saha A, Shah SR, Raj R |
1559 - 1566 |
Thermodynamic modeling of the YO1.5-ZrO2 system Jacobson NS, Liu ZK, Kaufman L, Zhang F |
1567 - 1570 |
Direct formation and photocatalytic performance of anatase (TiO2)/silica (SiO2) composite nanoparticles Hirano M, Ota K |
1571 - 1574 |
Sintering behavior and properties of iron-rich glass-ceramics Karamanov A, Taglieri G, Pelino M |
1575 - 1577 |
Green machining of a thermoplastic ceramic-ethylene ethyl acrylate/isobutyl methacrylate compound Koh YH, Halloran JW |
1578 - 1581 |
Preparation of a monodispersed suspension of barium titanate nanoparticles and electrophoretic deposition of thin films Li J, Wu YJ, Tanaka H, Yamamoto T, Kuwabara M |
1582 - 1584 |
(Sulfur,nitrogen)-codoped rutile-titanium dioxide as a visible-light-activated photocatalyst Liu HY, Gao L |
1585 - 1587 |
Preparation of b-axis-oriented MFI zeolite thin films using slow dissolution of source material Seike T, Matsuda M, Miyake M |
1588 - 1590 |
Electrical and pyroelectric properties of highly (001)-oriented (Pb0.76Ca0.24)TiO3 thin films grown by a sol-gel process Tang XG, Chan HLW |
1591 - 1593 |
Fatigue of field-induced strain in antiferroelectric Pb0.97La0.02(Zr0.77Sn0.14Ti0.09)O-3 ceramics Zhou LJ, Zimmermann A, Zeng YP, Aldinger F |
1594 - 1597 |
Characterization of internal pores in hydrothermally synthesized BaTiO3 particle by transmission electron microscopy Nakano H, Urabe K, Oikawa T, Ikawa H |
1598 - 1601 |
P-type carbon nitride synthesized by a gas-solid reaction Qiu Y, Gao L |
1602 - 1605 |
Tunable microwave properties of barium titanate-based ferroelectric glass-ceramics Kageyama K, Takahashi J |
1606 - 1608 |
Preparation of alpha-alumina platelets by laser scanning Wu YQ, Choy KL, Hench LL |
1609 - 1610 |
Thermal expansion kinetics: Method to measure permeability of cementitious materials: I, Theory (vol 83, pg 2753, 2000) Scherer GW |
1611 - 1611 |
Thermal expansion kinetics: Method to measure permeability of cementitious materials: II, Application to hardened cement pastes (vol 84, pg 385, 2001) Ai H, Young JF, Scherer GW |
1612 - 1613 |
Measuring permeability of rigid materials by a beam-bending method: I, Theory (vol 83, pg 2231, 2000) Scherer GW |
1614 - 1614 |
Measuring permeability of rigid materials by a beam-bending method: II, Porous glass (vol 83, pg 2240, 2000) Vichit-Vadakan W, Scherer GW |
1615 - 1615 |
Measuring permeability of rigid materials by a beam-bending method: III, Cement paste (vol 85, pg 1537, 2002) Scherer GW |
1616 - 1616 |
Hydrothermal synthesis of submicrometer alpha-alumina from seeded tetraethyl ammonium hydroxide peptized aluminum hydroxide (vol 86, pg 2055, 2003) Yang J, Mei S, Ferreira JMF |