IP Library › Granted Patent US 11,819,833
Granted Patent B2
US 11,819,833 · App. 17/700,585 · Granted Nov 21, 2023

Conducting polymer and carbon nitride based nanocomposite photocatalyst for degradation of aqueous organic pollutants

Inventors: M. Faisal (Najran, SA); Md. A. Rashed (Najran, SA); Jahir Ahmed (Najran, SA); Mabkhoot Alsaiari (Najran, SA); Mohammed Jalalah (Najran, SA); S A. Alsareii (Najran, SA); Farid A. Harraz (Najran, SA)
Assignee: NAJRAN UNIVERSITY
B01J27/24B01J21/18B01J23/52B01J31/06B01J35/004B01J35/006B01J35/0013B01J35/023B01J35/1061B01J37/04B01J37/08B01J37/343C02F1/30C02F2101/30
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Quick Facts
Patent No.
US 11,819,833
App. No.
17/700,585
Granted
Nov 21, 2023
Kind
B2
Abstract

A nanocomposite photocatalyst is provided. The nanocomposite photocatalyst contains carbon nitride particles, a polymer composite comprising a conducting polymer and a carbon nanomaterial, the polymer composite being disposed on the carbon nitride particles, and noble metal nanoparticles disposed on both the polymer composite and the carbon nitride particles. Also provided is a method of forming the nanocomposite photocatalyst and a method of photodegrading an organic pollutant in water using the nanocomposite photocatalyst and visible light irradiation.

Claims (21)

1. A nanocomposite photocatalyst, comprising:

carbon nitride particles;

a polymer composite comprising a conducting polymer and a carbon nanomaterial, the polymer composite being disposed on the carbon nitride particles; and

noble metal nanoparticles disposed on both the polymer composite and the carbon nitride particles;

wherein the carbon nitride particles are present in an amount of 80 to 94.9 wt %, based on a total weight of nanocomposite photocatalyst.

2. The nanocomposite photocatalyst of claim 1 , wherein the carbon nitride particles are graphitic carbon nitride (g-C 3 N 4 ).

3. The nanocomposite photocatalyst of claim 1 , wherein the carbon nitride particles have a mean particle size of 100 to 300 nm, are crystalline by PXRD, and have a mean crystallite size of 5 to 15 nm.

4. The nanocomposite photocatalyst of claim 1 , wherein the polymer composite is present in an amount of 5 to 15 wt %, based on a total weight of nanocomposite photocatalyst.

5. The nanocomposite photocatalyst of claim 1 , wherein the conducting polymer is polypyrrole.

6. A nanocomposite photocatalyst, comprising:

carbon nitride particles;

a polymer composite comprising a conducting polymer and a carbon nanomaterial the polymer composite being disposed on the carbon nitride particles; and

noble metal nanoparticles disposed on both the polymer composite and the carbon nitride particles;

wherein the carbon nanomaterial is carbon black.

7. The nanocomposite photocatalyst of claim 1 , wherein the polymer composite comprises 10 to 30 wt % carbon nanomaterial, with the balance being the conducting polymer, based on a total weight of polymer composite.

8. A nanocomposite photocatalyst, comprising:

carbon nitride particles;

a polymer composite comprising a conducting polymer and a carbon nanomaterial, the polymer composite being disposed on the carbon nitride particles; and

noble metal nanoparticles disposed on both the polymer composite and the carbon nitride particles;

wherein the noble metal nanoparticles are gold nanoparticles having a mean particle size of 2 to 20 nm, are crystalline by PXRD, and have a mean crystallite size of 1 to 10 nm.

9. The nanocomposite photocatalyst of claim 1 , having a mean surface area of 105 to 140 m 2 /g, a mean pore size of 20 to 37.5 nm, and a mean pore volume of 0.6 to 1.1 cm 3 /g.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2022
From: FAISAL, M.; RASHED, MD. A.; AHMED, JAHIR; ALSAIARI, MABKHOOT; JALALAH, MOHAMMED; ALSAREII, S. A.; HARRAZ, FARID A.
To: NAJRAN UNIVERSITY
Reel/Frame 059333/0542 →
Continuity (1)
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