titanium tetrafluoride

titanium tetrafluoride Structure
titanium tetrafluoride structure
Common Name titanium tetrafluoride
CAS Number 7783-63-3 Molecular Weight 171.728
Density 2.798 g/mL at 25 °C(lit.) Boiling Point 284°C
Molecular Formula F4Ti Melting Point >400°C
MSDS Chinese USA Flash Point N/A
Symbol GHS05 GHS07
GHS05, GHS07
Signal Word Danger

Etching effect of acidic fluorides on human tooth enamel in vitro.

Arch. Oral Biol. 59(12) , 1328-33, (2014)

This in vitro study aimed to examine the etching effect of acidic fluoride solutions on enamel.24 human teeth divided into 48 enamel-specimens were partly isolated with impression material. Specimens were exposed for 10 min to 20ml of the following solutions:...

A replica technique for studying the effect of fluoride solutions on enamel erosion.

Swed. Dent. J. 36(4) , 169-78, (2012)

The aim of this in vitro study was to develop a replica technique aimed at reproducing an enamel surface exposed to erosive challenge. The replica technique was then used to compare the effect of treating enamel with different fluoride (F) solutions using an ...

Characterization of a new TiF(4) and β-cyclodextrin inclusion complex and its in vitro evaluation on inhibiting enamel demineralization.

Arch. Oral Biol. 58(3) , 239-47, (2013)

Titanium tetrafluoride (TiF(4)) is an effective but instable caries preventive agent. As the stability problems could be minimized through the use of drug carriers this study aimed to prepare and characterize a new TiF(4) nanoinclusion complex and to evaluate...

Preliminary evaluation of titanium tetrafluoride as an alternative ceramic etchant to hydrofluoric acid.

J. Adhes. Dent. 11(6) , 447-53, (2009)

The etching of dental ceramics with a glassy matrix by means of hydrofluoric acid (HF) is highly effective and after the application of a silane coupling agent, a strong link between the adhesive and the ceramic is achieved. The purpose of this study was to i...

Effect of titanium tetrafluoride and amine fluoride treatment combined with carbon dioxide laser irradiation on enamel and dentin erosion.

Photomed. Laser Surg. 28(2) , 219-26, (2010)

This in vitro study aimed to analyze the influence of carbon dioxide (CO(2)) laser irradiation on the efficacy of titanium tetrafluoride (TiF(4)) and amine fluoride (AmF) in protecting enamel and dentin against erosion.Bovine enamel and dentin samples were pr...

In vivo effect of titanium tetrafluoride and sodium monofluorophosphate dentifrice on remineralization: a preliminary split-mouth clinical trial.

Gen. Dent. 60(4) , e249-54, (2012)

The aim of this preliminary, split-mouth clinical trial was to evaluate how incipient carious lesions on permanent tooth enamel were affected by 4% titanium tetrafluoride (TiF4) when used with a sodium monofluorophosphate (MFP) dentifrice. Eight children were...

Protective effect of TiF(4) solutions with different concentrations and pH on development of erosion-like lesions.

Caries Res. 45(1) , 64-8, (2011)

To evaluate how concentration and pH of TiF(4) influence the erosion-protective effect.Specimens were treated with a TiF(4) solution: (1) 0.5 M F, pH 1.2, (2) 0.05 M F, pH 2.1, (3) 0.5 M F, pH 2.1, or (4) 0.05 M F, pH 1.2; then, they were exposed to HCl.After...

The effect of daily fluoride mouth rinsing on enamel erosive/abrasive wear in situ.

Caries Res. 47(1) , 2-8, (2013)

It is not known whether application of fluoride agents on enamel results in lasting resistance to erosive/abrasive wear. We investigated if one daily mouth rinse with sodium fluoride (NaF), stannous fluoride (SnF(2)) or titanium tetrafluoride (TiF(4)) solutio...

Effect of acidic fluoride treatments on early enamel erosion lesions--a comparison of calcium and profilometric analyses.

Arch. Oral Biol. 55(3) , 229-34, (2010)

The protective effect of fluoride solutions against acidic challenge on enamel was tested in vitro using calcium- and profilometer analyses.HF-, SnF(2)-, TiF(4)- and NaF solutions (0.1M F(-), with a pH of 2.0, 2.9, 1.5, 7.3, respectively) and H(2)O were teste...

Biological response of human bone marrow mesenchymal stem cells to fluoride-modified titanium surfaces.

Clin. Oral Implants Res. 21(11) , 1234-41, (2010)

The aim of the present study was to examine the behaviour of human bone marrow-derived mesenchymal stem cells (BM-MSC) to fluoride-modified grit-blasted (F-TiO) titanium surfaces compared with grit-blasted ones (TiO).Implant surfaces were analysed by atomic f...