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348864

Sigma-Aldrich

Titanium

wire, diam. 0.5 mm, 99.99% trace metals basis

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Empirical Formula (Hill Notation):
Ti
CAS Number:
Molecular Weight:
47.87
EC Number:
MDL number:
UNSPSC Code:
12352300
PubChem Substance ID:
NACRES:
NA.23

Quality Level

Assay

99.99% trace metals basis

form

wire

autoignition temp.

860 °F

resistivity

42.0 μΩ-cm, 20°C

diam.

0.5 mm

bp

3287 °C (lit.)

mp

1660 °C (lit.)

density

4.5 g/mL at 25 °C (lit.)

SMILES string

[Ti]

InChI

1S/Ti

InChI key

RTAQQCXQSZGOHL-UHFFFAOYSA-N

Application

  • Application and features of titanium for the aerospace industry: This article discusses the use of titanium in aerospace applications, highlighting its high strength-to-weight ratio and corrosion resistance, which are also critical in biomedical applications (Inagaki et al., 2014).
  • Opportunities and issues in the application of titanium alloys for aerospace components: This paper explores the engineering applications of titanium alloys, focusing on their performance in high-stress environments, which can translate to material science innovations (Williams & Boyer, 2020).
  • Titanium and titanium alloy applications in medicine: Discusses the applications of titanium in the medical field, particularly in implants due to its biocompatibility and strength, relevant to drug discovery and medical device fabrication (Jackson et al., 2016).
  • Titanium in biomedical applications—properties and fabrication: This review covers the properties of titanium that make it suitable for biomedical applications, including its use in prosthetics and implants, which is crucial for both material science and medical research (Jackson et al., 2016).
  • Titanium: An overview of resources and production methods: Provides a comprehensive overview of titanium sourcing and production techniques, essential for understanding material properties and applications in various industries (El Khalloufi et al., 2021).

Quantity

300 cm (approximately 2.7 g)

WGK

nwg

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

Personal Protective Equipment

dust mask type N95 (US), Eyeshields, Gloves

Regulatory Information

监管及禁止进口产品

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A Kurbad et al.
International journal of computerized dentistry, 16(2), 125-141 (2013-08-13)
This article presents two novel options for lithium-disilicate restorations supported by single-tooth implants. By using a Ti-Base connector, hybrid abutments and hybrid abutment crowns can be fabricated for different implant systems. The latter option in particular is an interesting new
Jinho Shin et al.
Journal of nanoscience and nanotechnology, 13(8), 5807-5810 (2013-07-26)
In this study, hydroxyapatite (HA) was coated on anodized titanium (Ti) surfaces through radio frequency magnetron sputtering in order to improve biological response of the titanium surface. All the samples were blasted with resorbable blasting media (RBM). RBM-blasted Ti surface
Lu-Ning Wang et al.
Journal of nanoscience and nanotechnology, 13(8), 5316-5326 (2013-07-26)
Electrochemically anodized TiO2 nanotubular arrays can provide large surface areas for biological species attachment. In order to further enhance the biocompatibility of Ti medical implants, we deposited a pre-synthesized hydroxyapatite inside and on the nanotubular arrays, and examined the biocompatibility
Mphilisi M Mahlambi et al.
Journal of nanoscience and nanotechnology, 13(7), 4934-4942 (2013-08-02)
Metal-doped anatase nanosized titania photocatalysts were successfully synthesized using a sol-gel process. Different amounts of the dopants (0.2, 0.4, 0.6, 0.8 and 1.0%) of the metals (Ag, Ni, Co and Pd) were utilized. The UV-Vis spectra (solid state diffuse reflectance
Alex T Kuvarega et al.
Journal of nanoscience and nanotechnology, 13(7), 5017-5027 (2013-08-02)
Nitrogen, osmium co-doped TiO2 photocatalysts were prepared by a modified sol-gel method using ammonia as the nitrogen source and osmium tetroxide as the source of osmium. The role of rutile phase OsO2 in enhancing the photocatalytic activity of rutile TiO2

Articles

Biomedical implants are essentially foreign substances within the human body that must survive many years’ exposure to demanding mechanical and physiological conditions. Despite these challenges, metal implants have been widely used to substitute for or rebuild hard tissues such as bones and teeth.

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