Search results for "Sodium perborate"

showing 5 items of 5 documents

Effect of bleaching agents on sealing properties of different intraorifice barriers and root filling materials

2012

Objective: To evaluate the effect of intracoronal bleaching agents on the sealing properties of different intraorifice barriers and root filling materials. Study Design: The root canals of extracted human premolars (n=180) were prepared by using System GT rotary files and filled with either gutta-percha+AH Plus or Resilon+Epiphany sealer. In both groups, the coronal 3mm of root filling was removed and replaced with one of the following materials applied as intraorifice barriers (n=30/group): 1. ProProot-MTA; 2. Conventional Glass ionomer cement; and 3. Hybrid resin composite. In each subgroup, intracoronal bleaching was performed using either sodium perborate with distilled water or 35% hyd…

Materials scienceGlass ionomer cementDentistryEndodonticsRoot Canal Filling MaterialsBleaching Agentschemistry.chemical_compoundMaterials TestingRoot fillingHumansBicuspidComposite materialHydrogen peroxideFluid filtrationGeneral DentistryLeakage (electronics)Dental Leakagebusiness.industry:CIENCIAS MÉDICAS [UNESCO]Epiphany sealerOtorhinolaryngologychemistryDistilled waterUNESCO::CIENCIAS MÉDICASResearch-ArticleSurgerySodium perboratebusiness
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Microleakage comparison of glass-ionomer and white mineral trioxide aggregate used as a coronal barrier in nonvital bleaching

2011

Objectives: There is some evidence that the pH at the root surface is reduced by intracoronal placement of bleaching pastes, which is known to enhance osteoclastic activity. Therefore, it is recommended that a protective barrier be used over the canal filling to prevent leakage of bleaching agents. Glass-ionomer (GI) is commonly used as a coronal barrier before nonvital bleaching. Because mineral trioxide aggregate (MTA) creates high alkalinity after mixing with water, using MTA as a protective barrier over the canal filling may not only prevent leakage of bleaching agents and microorganisms, but may prevent cervical resorption. The aim of this study was to evaluate sealing ability of white…

Mineral trioxide aggregategenetic structuresGlass ionomer cementDentistryIn Vitro Techniqueschemistry.chemical_compoundTooth BleachingHumansHydrogen peroxideAluminum CompoundsGeneral DentistryDental LeakageChemistrybusiness.industrySilicatesOxidesCalcium Compounds:CIENCIAS MÉDICAS [UNESCO]ResorptionCementoenamel junctionDrug CombinationsOtorhinolaryngologyDistilled waterGlass Ionomer CementsCoronal planeUNESCO::CIENCIAS MÉDICASSurgerysense organsSodium perboratebusiness
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Assessment of Oxygen Expansion during Internal Bleaching with Enamel and Dentin: A Comparative In Vitro Study.

2021

Internal bleaching is a conservative, non-invasive, and simple treatment that is frequently performed in daily clinical practice. The present in vitro study analyzes the oxygen expansion of different bleaching agents resulting from the oxidation reaction when interacting with enamel and dentin. Enamel and dentin were crushed separately until obtaining a fine powder with particles of an approximate size between 0.06 and 0.2 mm. Each enamel and dentin sample were mixed with 37% carbamide peroxide (CP 37%), 30% hydrogen peroxide (HP 30%), sodium perborate (SP) combined with HP 30% (HP 30% + SP) and SP with distilled water (SP). A total of 280 1 mm diameter glass tubes were used with 70 for eac…

Tooth resorptionchemistry.chemical_elementhydrogen peroxidein-vitroOxygenArticlechemistry.chemical_compoundstomatognathic systemmedicineDentinIn vitro studyHydrogen peroxideGeneral DentistryEnamel paintChemistryRK1-715tooth bleachingmedicine.diseasestomatognathic diseasesmedicine.anatomical_structureDistilled waterDentistryvisual_arttooth resorptionvisual_art.visual_art_mediumSodium perborateNuclear chemistryDentistry journal
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Tooth discoloration and internal bleaching after the use of ledermix paste with various bleaching agents ? An in vitro study

2018

Background To assess the reversal of discolouration caused by Ledermix using various bleaching agents. Material and Methods Twenty six extracted human mandibular premolars were taken and divided into four groups. Six teeth were divided into three each which are taken as positive and negative controls. The remaining twenty are divided into two groups (n=10). After conventional access preparation, the Ledermix paste was sealed in the pulp chamber for twelve weeks. The paste was removed by a rinse with sodium hypochlorite (NaOCl). Then the pulp chamber was sealed with a mixture of Sodium perborate and distilled water for group 1 and group 2 was sealed with Sodium tetraborate for 1 to 12 weeks.…

business.industryResearchSodiumMean valuechemistry.chemical_elementDentistry030206 dentistry:CIENCIAS MÉDICAS [UNESCO]Operative Dentistry and EndodonticsTooth discoloration030207 dermatology & venereal diseases03 medical and health scienceschemistry.chemical_compound0302 clinical medicinechemistryDistilled waterSodium hypochloriteUNESCO::CIENCIAS MÉDICASIn vitro studySodium perboratebusinessGeneral DentistryAfter treatment
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The catalytic-thermometric determination of molybdenum in steels based on the hydrogen peroxide-iodide indicator reaction

1990

Abstract The Mo VI -catalysed hydrogen peroxide-iodide reaction has been optimised for thermometry in an HCl medium using the initial slope method. The substitution of sodium perborate by H 2 O 2 and the conversion of the reaction to a process showing a Landolt effect are considered and discussed. The linear range extended from 0.2 μg Mo VI ml −1 to 1.2 μg Mo VI ml −1 with a detection limit of 0.06 μg Mo VI ml −1 . Interferences were also studied. The optimised procedure was applied to the evaluation of molybdenum in steels after extraction with α-benzoinoxime in chloroform.

chemistry.chemical_classificationDetection limitChloroformHydrogenIodidechemistry.chemical_elementMineralogyCondensed Matter PhysicsCatalysischemistry.chemical_compoundchemistryMolybdenumPhysical and Theoretical ChemistrySodium perborateHydrogen peroxideInstrumentationNuclear chemistryThermochimica Acta
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