IP Library › Granted Patent US 11,618,679
Granted Patent B2
US 11,618,679 · App. 16/628,555 · Granted Apr 4, 2023

Entangled-type carbon nanotubes and method for preparing the same

Inventors: Sung Jin Kim (Daejeon, KR); Dong Hyun Cho (Daejeon, KR); Jae Keun Yoon (Daejeon, KR); Tae Hyung Kim (Daejeon, KR); Og Sin Kim (Daejeon, KR)
Assignee: LG CHEM, LTD.
C01B32/162B01J21/04B01J23/8472B01J37/0219B01J37/04B01J37/088B82Y30/00B82Y40/00C01B2202/22C01B2202/36C01P2002/78C01P2004/03C01P2006/11
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Quick Facts
Patent No.
US 11,618,679
App. No.
16/628,555
Granted
Apr 4, 2023
Kind
B2
Abstract

The present invention relates to entangled-type carbon nanotubes which have a bulk density of 31 kg/m 3 to 85 kg/m 3 and a ratio of tapped bulk density to bulk density of 1.37 to 2.05, and a method for preparing the entangled-type carbon nanotubes.

Claims (22)

1. Entangled-type carbon nanotubes in which carbon nanotube units are entangled but without a uniform bundle or a rope shape, which have a bulk density of 31 kg/m 3 to 85 kg/m 3 and satisfies the following Equation 1:

1.37 ≤X/Y≤ 2.05  <Equation 1>

wherein, in Equation 1, X denotes a tap density (units: kg/m 3 ) of the entangled-type carbon nanotubes, and

Y denotes a bulk density (units: kg/m 3 ) of the entangled-type carbon nanotubes.

2. The entangled-type carbon nanotubes of claim 1 , wherein carbon nanotubes satisfy the following Equation 1:

1.4 ≤X/Y≤ 2.0.  <Equation 1>

3. The entangled-type carbon nanotubes of claim 1 , wherein the bulk density of the entangled-type carbon nanotubes is 32 kg/m 3 to 80 kg/m 3 .

4. The entangled-type carbon nanotubes of claim 1 , wherein the tapped bulk density of the entangled-type carbon nanotubes is 63 kg/m 3 to 116 kg/m 3 .

5. The entangled-type carbon nanotubes of claim 1 , wherein the entangled-type carbon nanotubes have a maximum dispersion concentration of 3.3 wt % or more.

6. Entangled-type carbon nanotubes which have a bulk density of 31 kg/m 3 to 85 kg/m 3 and satisfies the following Equation 1:

1.37≤ X/Y≤ 2.05  <Equation 1>

wherein, in Equation 1, X denotes a tap density (units: kg/m 3 ) of the entangled-type carbon nanotubes, and

Y denotes a bulk density (units: kg/m 3 ) of the entangled-type carbon nanotubes,

wherein the entangled-type carbon nanotubes comprise carbon nanotube units having an average diameter of 10 nm to 30 nm,

wherein the carbon nanotube units have an interlayer distance (d 002 ) of a carbon crystal of 0.335 nm to 0.342 nm, wherein the interlayer distance is obtained by X-ray diffraction,

satisfy the following condition: interlayer distance (d 002 )<0.3448-0.0028 (log φ) wherein φ is an average diameter of the carbon nanotube units, and

have a thickness (Lc) in a C-axis direction of the crystal of 40 nm or less.

7. Entangled-type carbon nanotubes which have a bulk density of 31 kg/m 3 to 85 kg/m 3 and satisfies the following Equation 1:

1.37≤ X/Y≤ 2.05  <Equation 1>

wherein, in Equation 1, X denotes a tap density (units: kg/m 3 ) of the entangled-type carbon nanotubes, and

Y denotes a bulk density (units: kg/m 3 ) of the entangled-type carbon nanotubes,

wherein the entangled-type carbon nanotubes have a powder resistance of 0.0171 Ω·cm or less.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2020
From: KIM, SUNG JIN; CHO, DONG HYUN; YOON, JAE KEUN; KIM, TAE HYUNG; KIM, OG SIN
To: LG CHEM, LTD.
Reel/Frame 051413/0040 →
Priority Claims (2)
KR 10-2017-0179768 · Dec 26, 2017 · national
KR 10-2018-0146925 · Nov 26, 2018 · national
Continuity (1)
Related Publication 20200239315A1 · Jul 30, 2020