IP Library › Granted Patent US 9,650,259
Granted Patent B2
US 9,650,259 · App. 12/990,779 · Granted May 16, 2017

Photocatalytic nanocomposite material

Inventors: Gulsen Celiker (Izmir, TR); Hilmi Volkan Demir (Ankara, TR); Fatih Ozkadi (Istanbul, TR); Sameyra Tek (Ankara, TR); Evren Mutlugun (Ankara, TR); Ibrahim Murat Soganci (Ankara, TR); Tuncay Ozel (Ankara, TR); Ilkem Ozge Huyal (Ankara, TR)
Assignee: ARCELIK ANONIM SIRKETI
C01G23/047B01J21/063B01J35/004B01J35/0013B01J37/0215B01J37/036B82Y30/00C09C1/3684C01P2004/64C01P2006/60
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Quick Facts
Patent No.
US 9,650,259
App. No.
12/990,779
Granted
May 16, 2017
Kind
B2
Abstract

The present invention relates to a photocatalytic nanocomposite material, wherein the realization of the optimal wavelength for optical activation is controlled and accordingly is designed to work together with a LED operating at the wavelength for yielding the maximum efficiency.

Claims (11)

1. A photocatalytic nanocomposite material comprising titanium dioxide (Ti O 2 ) is composed of anatase type crystal structure molecules and rutile type crystal structure molecules and an inorganic host forming a crust around the titanium dioxide wherein the inorganic host surrounding the titanium dioxide prevents decomposition and clustering of the titanium dioxide and maintains the titanium dioxide crystals in a monodisperse and homogenous formation, the titanium dioxide particle having sizes between 4 and 10 nm.

2. The photocatalytic nanocomposite material as in claim 1 , the titanium dioxide comprising around 5%-30% of rutile type crystal molecules by weight and around 95%-70% anatase type crystal molecules by weight.

3. The photocatalytic nanocomposite material as in claim 2 , basically comprising 5%-25% titanium dioxide by weight.

4. The photocatalytic nanocomposite material as in claim 2 , wherein the titanium dioxide is 80% of anatase type, 20% of rutile type and wherein the titanium dioxide is 15% by weight of the photocatalytic nanocomposite material.

5. The photocatalytic nanocomposite material as in claim 1 , wherein the titanium dioxide is composed of particles sized 6 nm.

6. The photocatalytic nanocomposite material as claim 1 , comprising silica (SiO 2 ) as the inorganic host.

7. The photocatalytic nanocomposite material as in claim 1 , comprising bonding together the titanium dioxide and the inorganic host by a sol-gel method.

8. The photocatalytic nanocomposite material as in claim 1 , being activated using a LED as a light source and coating the material on a package of the LED.

9. The photocatalytic nanocomposite material as in claim 8 , being activated with light in a 320-330 nm wavelength.

10. The photocatalytic nanocomposite material as in claim 1 , being activated using a LED as a light source and coating the material on the chip of the LED.

11. The photocatalytic nanocomposite material as claim 10 , being activated with light in a 320-330 nm wavelength.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2012
From: DEMIR, HILMI VOLKAN; OZKADI, FATIH; TEK, SAMEYRA; MUTLUGUN, EVREN; SOGANCI, IBRAHIM MURAT; OZEL, TUNCAY; HUYAL, ILKEM OZGE
To: ARCELIK ANONIM SIRKETI; DURMUS YASAR VE OGULLARI BOYA VERNIK VE RECINE FABRIKALARI A.S.
Reel/Frame 029467/0020 →
Priority Claims (1)
TR a 2008/03064 · May 2, 2008 · national
Continuity (1)
Related Publication 20120122668A1 · May 17, 2012