Patent
US 10,822,501Patent
Atlas literature
Patent
US 10,822,501Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 3c). [00162] At the same time, samples after 60 days of immersion were tested for potentiodynamic polarization (Fig. 4). It can be found that the …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
A hexagonal boron nitride epoxy compound anticorrosive paint, comprising: a first component, comprising hexagonal boron nitride, an epoxy resin, an oligoaniline or a polyaniline nanofiber, a paint additive, and a solvent; and a second component, comprising a curing agent or a mixture of the curin g ag ent and the solvent; the first component, comprising: 80 to 95 parts by wei g ht of the epoxy resin, 0.5 to 2 parts by wei g ht of hexa g onal boron nitride, 0.25 to 1 part by wei g ht of the oli g oaniline, and 5 to 15 parts by wei g ht of the paint additive; and the second component, comprising: 75 to 100 parts by wei g ht of the curin g ag ent, and 0 to 25 parts by wei g ht of the solvent; and a mass ratio of the first component to the second component is 100:10 to 100:80; wherein the oligoaniline comprises any one or a combination of more of aniline trimer, aniline tetramer, aniline pentamer, and aniline hexamer; and a material of the polyaniline nanofiber is selected from the group consisting of polyaniline and substituent-containing polyaniline, the substituent comprises alkyl or amino, and the alkyl comprises methyl, ethyl, propyl, or butyl. Currently amended
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the first component comprises an oligoaniline, wherein at least a part of the oligoaniline binds to hexagonal boron nitride by a physical action to enable hexagonal boron nitride to be uniformly dispersed in the paint. Original
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, comprising: the first component, comprising: 80 to 95 parts by weight of the epoxy resin, 0.5 to 2 parts by weight of hexagonal boron nitride, 0.25 to 1 part by weight of the oligoaniline, and 5 to 15 parts by weight of the paint additive; and the second component, comprising: 75 to 100 parts by weight of the curing agent, and 0 to 25 parts by weight of the solvent; and a mass ratio of the first component to the second component is 100:10 to 100:80. Original
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the polyaniline nanofiber has a diameter of 10 SVG 16319671.07-07-2020.KCBGSYX₇RXEAPX5.CLM.1.svg 0.16 6.31 Black and white Currently amended
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the hexagonal boron nitride comprises any one of or a derivative of any one of hexagonal boron nitride nanosheet, hexagonal boron nitride microsheet, hexagonal boron nitride nanoribbon, few-layer hexagonal boron nitride having 2 to 5 layers, multi-layer hexagonal boron nitride having 5 to 9 layers, and hexagonal boron nitride quantum dot, and the derivative comprises chemically modified hexagonal boron nitride. Previously presented
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein a thickness of the hexagonal boron nitride is 20 nm or less. Currently amended
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the epoxy resin comprises any one or a combination of two or more of bisphenol A epoxy resin, bisphenol F epoxy resin, bisphenol S epoxy resin, hydroxymethyl bisphenol F epoxy resin, hydrogenated bisphenol F epoxy resin, nylon modified epoxy resin, linear phenol formaldehyde epoxy resin, o-cresol formaldehyde epoxy resin, aliphatic glycidyl ether epoxy resin, glycidyl ester epoxy resin, and glycidyl amine epoxy resin; and the curing agent comprises any one or a combination of two or more of polyamide curing agent, cardanol curing agent, anhydride curing agent, and imidazole curing agent. Previously presented
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the paint additive comprises any one or a combination of two or more of antisettling agent, defoamer, and flatting agent. Previously presented
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the solvent comprises any one or a combination of two or more of toluene, xylene, acetone, tetrahydrofuran, ethanol, ethyl acetate, and dimethyl sulfoxide. Previously presented
A preparation method of the hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, comprising: providing a first component, comprising: mixing hexagonal boron nitride with an oligoaniline or polyaniline nanofiber in a solvent, to give a hexagonal boron nitride dispersion, and then uniformly mixing the hexagonal boron nitride dispersion with an epoxy resin and a paint additive; and providing a second component, comprising a curing agent or a mixture of the curing agent and the solvent. Previously presented
A coating formed by the hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1. Previously presented
Canceled
6-7. Canceled
Canceled
Canceled
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim [[9]]. 1, wherein the substituent-containing polyaniline comprises any one or a combination of two or more of poly-o-methylaniline, poly-o- ethylaniline, p-o-propylaniline polybutylaniline, and poly-o-phenylenediamine. Currently amended
Canceled
Canceled
17-19. Canceled
Canceled
Canceled
26-28. Canceled
Canceled
Layer stacks claimed or described, ordered top of device to substrate.
hexagonal boron nitride epoxy compound anticorrosive coating
Materials described outside the worked examples.
hexagonal boron nitride
h-BN
oligoaniline
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
Thickness | 12–15 nm | — |
Thickness |
Patent
Atlas literature
Patent
US 10,822,501Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 3c). [00162] At the same time, samples after 60 days of immersion were tested for potentiodynamic polarization (Fig. 4). It can be found that the …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
A hexagonal boron nitride epoxy compound anticorrosive paint, comprising: a first component, comprising hexagonal boron nitride, an epoxy resin, an oligoaniline or a polyaniline nanofiber, a paint additive, and a solvent; and a second component, comprising a curing agent or a mixture of the curin g ag ent and the solvent; the first component, comprising: 80 to 95 parts by wei g ht of the epoxy resin, 0.5 to 2 parts by wei g ht of hexa g onal boron nitride, 0.25 to 1 part by wei g ht of the oli g oaniline, and 5 to 15 parts by wei g ht of the paint additive; and the second component, comprising: 75 to 100 parts by wei g ht of the curin g ag ent, and 0 to 25 parts by wei g ht of the solvent; and a mass ratio of the first component to the second component is 100:10 to 100:80; wherein the oligoaniline comprises any one or a combination of more of aniline trimer, aniline tetramer, aniline pentamer, and aniline hexamer; and a material of the polyaniline nanofiber is selected from the group consisting of polyaniline and substituent-containing polyaniline, the substituent comprises alkyl or amino, and the alkyl comprises methyl, ethyl, propyl, or butyl. Currently amended
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the first component comprises an oligoaniline, wherein at least a part of the oligoaniline binds to hexagonal boron nitride by a physical action to enable hexagonal boron nitride to be uniformly dispersed in the paint. Original
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, comprising: the first component, comprising: 80 to 95 parts by weight of the epoxy resin, 0.5 to 2 parts by weight of hexagonal boron nitride, 0.25 to 1 part by weight of the oligoaniline, and 5 to 15 parts by weight of the paint additive; and the second component, comprising: 75 to 100 parts by weight of the curing agent, and 0 to 25 parts by weight of the solvent; and a mass ratio of the first component to the second component is 100:10 to 100:80. Original
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the polyaniline nanofiber has a diameter of 10 SVG 16319671.07-07-2020.KCBGSYX₇RXEAPX5.CLM.1.svg 0.16 6.31 Black and white Currently amended
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the hexagonal boron nitride comprises any one of or a derivative of any one of hexagonal boron nitride nanosheet, hexagonal boron nitride microsheet, hexagonal boron nitride nanoribbon, few-layer hexagonal boron nitride having 2 to 5 layers, multi-layer hexagonal boron nitride having 5 to 9 layers, and hexagonal boron nitride quantum dot, and the derivative comprises chemically modified hexagonal boron nitride. Previously presented
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein a thickness of the hexagonal boron nitride is 20 nm or less. Currently amended
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the epoxy resin comprises any one or a combination of two or more of bisphenol A epoxy resin, bisphenol F epoxy resin, bisphenol S epoxy resin, hydroxymethyl bisphenol F epoxy resin, hydrogenated bisphenol F epoxy resin, nylon modified epoxy resin, linear phenol formaldehyde epoxy resin, o-cresol formaldehyde epoxy resin, aliphatic glycidyl ether epoxy resin, glycidyl ester epoxy resin, and glycidyl amine epoxy resin; and the curing agent comprises any one or a combination of two or more of polyamide curing agent, cardanol curing agent, anhydride curing agent, and imidazole curing agent. Previously presented
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the paint additive comprises any one or a combination of two or more of antisettling agent, defoamer, and flatting agent. Previously presented
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the solvent comprises any one or a combination of two or more of toluene, xylene, acetone, tetrahydrofuran, ethanol, ethyl acetate, and dimethyl sulfoxide. Previously presented
A preparation method of the hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, comprising: providing a first component, comprising: mixing hexagonal boron nitride with an oligoaniline or polyaniline nanofiber in a solvent, to give a hexagonal boron nitride dispersion, and then uniformly mixing the hexagonal boron nitride dispersion with an epoxy resin and a paint additive; and providing a second component, comprising a curing agent or a mixture of the curing agent and the solvent. Previously presented
A coating formed by the hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1. Previously presented
Canceled
6-7. Canceled
Canceled
Canceled
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim [[9]]. 1, wherein the substituent-containing polyaniline comprises any one or a combination of two or more of poly-o-methylaniline, poly-o- ethylaniline, p-o-propylaniline polybutylaniline, and poly-o-phenylenediamine. Currently amended
Canceled
Canceled
17-19. Canceled
Canceled
Canceled
26-28. Canceled
Canceled
Layer stacks claimed or described, ordered top of device to substrate.
hexagonal boron nitride epoxy compound anticorrosive coating
Materials described outside the worked examples.
hexagonal boron nitride
h-BN
oligoaniline
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
Thickness | 12–15 nm | — |
Thickness |
Patent
Atlas literature
Patent
US 10,822,501Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 3c). [00162] At the same time, samples after 60 days of immersion were tested for potentiodynamic polarization (Fig. 4). It can be found that the …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
A hexagonal boron nitride epoxy compound anticorrosive paint, comprising: a first component, comprising hexagonal boron nitride, an epoxy resin, an oligoaniline or a polyaniline nanofiber, a paint additive, and a solvent; and a second component, comprising a curing agent or a mixture of the curin g ag ent and the solvent; the first component, comprising: 80 to 95 parts by wei g ht of the epoxy resin, 0.5 to 2 parts by wei g ht of hexa g onal boron nitride, 0.25 to 1 part by wei g ht of the oli g oaniline, and 5 to 15 parts by wei g ht of the paint additive; and the second component, comprising: 75 to 100 parts by wei g ht of the curin g ag ent, and 0 to 25 parts by wei g ht of the solvent; and a mass ratio of the first component to the second component is 100:10 to 100:80; wherein the oligoaniline comprises any one or a combination of more of aniline trimer, aniline tetramer, aniline pentamer, and aniline hexamer; and a material of the polyaniline nanofiber is selected from the group consisting of polyaniline and substituent-containing polyaniline, the substituent comprises alkyl or amino, and the alkyl comprises methyl, ethyl, propyl, or butyl. Currently amended
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the first component comprises an oligoaniline, wherein at least a part of the oligoaniline binds to hexagonal boron nitride by a physical action to enable hexagonal boron nitride to be uniformly dispersed in the paint. Original
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, comprising: the first component, comprising: 80 to 95 parts by weight of the epoxy resin, 0.5 to 2 parts by weight of hexagonal boron nitride, 0.25 to 1 part by weight of the oligoaniline, and 5 to 15 parts by weight of the paint additive; and the second component, comprising: 75 to 100 parts by weight of the curing agent, and 0 to 25 parts by weight of the solvent; and a mass ratio of the first component to the second component is 100:10 to 100:80. Original
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the polyaniline nanofiber has a diameter of 10 SVG 16319671.07-07-2020.KCBGSYX₇RXEAPX5.CLM.1.svg 0.16 6.31 Black and white Currently amended
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the hexagonal boron nitride comprises any one of or a derivative of any one of hexagonal boron nitride nanosheet, hexagonal boron nitride microsheet, hexagonal boron nitride nanoribbon, few-layer hexagonal boron nitride having 2 to 5 layers, multi-layer hexagonal boron nitride having 5 to 9 layers, and hexagonal boron nitride quantum dot, and the derivative comprises chemically modified hexagonal boron nitride. Previously presented
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein a thickness of the hexagonal boron nitride is 20 nm or less. Currently amended
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the epoxy resin comprises any one or a combination of two or more of bisphenol A epoxy resin, bisphenol F epoxy resin, bisphenol S epoxy resin, hydroxymethyl bisphenol F epoxy resin, hydrogenated bisphenol F epoxy resin, nylon modified epoxy resin, linear phenol formaldehyde epoxy resin, o-cresol formaldehyde epoxy resin, aliphatic glycidyl ether epoxy resin, glycidyl ester epoxy resin, and glycidyl amine epoxy resin; and the curing agent comprises any one or a combination of two or more of polyamide curing agent, cardanol curing agent, anhydride curing agent, and imidazole curing agent. Previously presented
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the paint additive comprises any one or a combination of two or more of antisettling agent, defoamer, and flatting agent. Previously presented
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the solvent comprises any one or a combination of two or more of toluene, xylene, acetone, tetrahydrofuran, ethanol, ethyl acetate, and dimethyl sulfoxide. Previously presented
A preparation method of the hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, comprising: providing a first component, comprising: mixing hexagonal boron nitride with an oligoaniline or polyaniline nanofiber in a solvent, to give a hexagonal boron nitride dispersion, and then uniformly mixing the hexagonal boron nitride dispersion with an epoxy resin and a paint additive; and providing a second component, comprising a curing agent or a mixture of the curing agent and the solvent. Previously presented
A coating formed by the hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1. Previously presented
Canceled
6-7. Canceled
Canceled
Canceled
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim [[9]]. 1, wherein the substituent-containing polyaniline comprises any one or a combination of two or more of poly-o-methylaniline, poly-o- ethylaniline, p-o-propylaniline polybutylaniline, and poly-o-phenylenediamine. Currently amended
Canceled
Canceled
17-19. Canceled
Canceled
Canceled
26-28. Canceled
Canceled
Layer stacks claimed or described, ordered top of device to substrate.
hexagonal boron nitride epoxy compound anticorrosive coating
Materials described outside the worked examples.
hexagonal boron nitride
h-BN
oligoaniline
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
Thickness | 12–15 nm | — |
Thickness |
Patent
Atlas literature
Patent
US 10,822,501Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 3c). [00162] At the same time, samples after 60 days of immersion were tested for potentiodynamic polarization (Fig. 4). It can be found that the …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
A hexagonal boron nitride epoxy compound anticorrosive paint, comprising: a first component, comprising hexagonal boron nitride, an epoxy resin, an oligoaniline or a polyaniline nanofiber, a paint additive, and a solvent; and a second component, comprising a curing agent or a mixture of the curin g ag ent and the solvent; the first component, comprising: 80 to 95 parts by wei g ht of the epoxy resin, 0.5 to 2 parts by wei g ht of hexa g onal boron nitride, 0.25 to 1 part by wei g ht of the oli g oaniline, and 5 to 15 parts by wei g ht of the paint additive; and the second component, comprising: 75 to 100 parts by wei g ht of the curin g ag ent, and 0 to 25 parts by wei g ht of the solvent; and a mass ratio of the first component to the second component is 100:10 to 100:80; wherein the oligoaniline comprises any one or a combination of more of aniline trimer, aniline tetramer, aniline pentamer, and aniline hexamer; and a material of the polyaniline nanofiber is selected from the group consisting of polyaniline and substituent-containing polyaniline, the substituent comprises alkyl or amino, and the alkyl comprises methyl, ethyl, propyl, or butyl. Currently amended
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the first component comprises an oligoaniline, wherein at least a part of the oligoaniline binds to hexagonal boron nitride by a physical action to enable hexagonal boron nitride to be uniformly dispersed in the paint. Original
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, comprising: the first component, comprising: 80 to 95 parts by weight of the epoxy resin, 0.5 to 2 parts by weight of hexagonal boron nitride, 0.25 to 1 part by weight of the oligoaniline, and 5 to 15 parts by weight of the paint additive; and the second component, comprising: 75 to 100 parts by weight of the curing agent, and 0 to 25 parts by weight of the solvent; and a mass ratio of the first component to the second component is 100:10 to 100:80. Original
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the polyaniline nanofiber has a diameter of 10 SVG 16319671.07-07-2020.KCBGSYX₇RXEAPX5.CLM.1.svg 0.16 6.31 Black and white Currently amended
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the hexagonal boron nitride comprises any one of or a derivative of any one of hexagonal boron nitride nanosheet, hexagonal boron nitride microsheet, hexagonal boron nitride nanoribbon, few-layer hexagonal boron nitride having 2 to 5 layers, multi-layer hexagonal boron nitride having 5 to 9 layers, and hexagonal boron nitride quantum dot, and the derivative comprises chemically modified hexagonal boron nitride. Previously presented
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein a thickness of the hexagonal boron nitride is 20 nm or less. Currently amended
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the epoxy resin comprises any one or a combination of two or more of bisphenol A epoxy resin, bisphenol F epoxy resin, bisphenol S epoxy resin, hydroxymethyl bisphenol F epoxy resin, hydrogenated bisphenol F epoxy resin, nylon modified epoxy resin, linear phenol formaldehyde epoxy resin, o-cresol formaldehyde epoxy resin, aliphatic glycidyl ether epoxy resin, glycidyl ester epoxy resin, and glycidyl amine epoxy resin; and the curing agent comprises any one or a combination of two or more of polyamide curing agent, cardanol curing agent, anhydride curing agent, and imidazole curing agent. Previously presented
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the paint additive comprises any one or a combination of two or more of antisettling agent, defoamer, and flatting agent. Previously presented
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, wherein the solvent comprises any one or a combination of two or more of toluene, xylene, acetone, tetrahydrofuran, ethanol, ethyl acetate, and dimethyl sulfoxide. Previously presented
A preparation method of the hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1, comprising: providing a first component, comprising: mixing hexagonal boron nitride with an oligoaniline or polyaniline nanofiber in a solvent, to give a hexagonal boron nitride dispersion, and then uniformly mixing the hexagonal boron nitride dispersion with an epoxy resin and a paint additive; and providing a second component, comprising a curing agent or a mixture of the curing agent and the solvent. Previously presented
A coating formed by the hexagonal boron nitride epoxy compound anticorrosive paint according to claim 1. Previously presented
Canceled
6-7. Canceled
Canceled
Canceled
The hexagonal boron nitride epoxy compound anticorrosive paint according to claim [[9]]. 1, wherein the substituent-containing polyaniline comprises any one or a combination of two or more of poly-o-methylaniline, poly-o- ethylaniline, p-o-propylaniline polybutylaniline, and poly-o-phenylenediamine. Currently amended
Canceled
Canceled
17-19. Canceled
Canceled
Canceled
26-28. Canceled
Canceled
Layer stacks claimed or described, ordered top of device to substrate.
hexagonal boron nitride epoxy compound anticorrosive coating
Materials described outside the worked examples.
hexagonal boron nitride
h-BN
oligoaniline
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
Thickness | 12–15 nm | — |
Thickness |
polyaniline nanofiber
epoxy resin
curing agent
solvent
| 5–8 nm |
| — |
Thickness | 10–15 nm | — |
Thickness | 0.33–10 nm | — |
Thickness | 0.33–2 nm | — |
Thickness | 6–10 nm | — |
Thickness | 3–5 nm | — |
Thickness | 15–20 nm | — |
Thickness | 5–10 nm | — |
Pressure | 80–95 pa | — |
Pressure | 0.5–2 pa | — |
Pressure | 0.25–1 pa | — |
Pressure | 5–15 pa | — |
Pressure | 75–100 pa | — |
Pressure | 0–25 pa | — |
Thickness | 8–10 nm | — |
polyaniline nanofiber
epoxy resin
curing agent
solvent
| 5–8 nm |
| — |
Thickness | 10–15 nm | — |
Thickness | 0.33–10 nm | — |
Thickness | 0.33–2 nm | — |
Thickness | 6–10 nm | — |
Thickness | 3–5 nm | — |
Thickness | 15–20 nm | — |
Thickness | 5–10 nm | — |
Pressure | 80–95 pa | — |
Pressure | 0.5–2 pa | — |
Pressure | 0.25–1 pa | — |
Pressure | 5–15 pa | — |
Pressure | 75–100 pa | — |
Pressure | 0–25 pa | — |
Thickness | 8–10 nm | — |
polyaniline nanofiber
epoxy resin
curing agent
solvent
| 5–8 nm |
| — |
Thickness | 10–15 nm | — |
Thickness | 0.33–10 nm | — |
Thickness | 0.33–2 nm | — |
Thickness | 6–10 nm | — |
Thickness | 3–5 nm | — |
Thickness | 15–20 nm | — |
Thickness | 5–10 nm | — |
Pressure | 80–95 pa | — |
Pressure | 0.5–2 pa | — |
Pressure | 0.25–1 pa | — |
Pressure | 5–15 pa | — |
Pressure | 75–100 pa | — |
Pressure | 0–25 pa | — |
Thickness | 8–10 nm | — |
polyaniline nanofiber
epoxy resin
curing agent
solvent
| 5–8 nm |
| — |
Thickness | 10–15 nm | — |
Thickness | 0.33–10 nm | — |
Thickness | 0.33–2 nm | — |
Thickness | 6–10 nm | — |
Thickness | 3–5 nm | — |
Thickness | 15–20 nm | — |
Thickness | 5–10 nm | — |
Pressure | 80–95 pa | — |
Pressure | 0.5–2 pa | — |
Pressure | 0.25–1 pa | — |
Pressure | 5–15 pa | — |
Pressure | 75–100 pa | — |
Pressure | 0–25 pa | — |
Thickness | 8–10 nm | — |
