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Image Search Results


Oleic acid functionalization of GNPs.

Journal: Nanomaterials

Article Title: Structural, Thermal Behaviour and Tribological Performance in Cold Rolling of Mineral Lubricants with Graphene Nanoplatelets Functionalized with Oleic Acid

doi: 10.3390/nano16080495

Figure Lengend Snippet: Oleic acid functionalization of GNPs.

Article Snippet: In the experimental work, SAE 5W-30 mineral oil (Petro Time), graphene nanoplatelets (GNPs) with an average thickness of 5 nm and a diameter of 30 μm (Nanografi Inc., Ankara, Türkiye), oleic acid (Bilim Chemistry Inc., İstanbul, Türkiye), cyclohexane (Merck, Darmstatd, Germany), and other auxiliary chemicals were used.

Techniques:

FT-IR spectra of GNPs and oleic acid-functionalized GNPs.

Journal: Nanomaterials

Article Title: Structural, Thermal Behaviour and Tribological Performance in Cold Rolling of Mineral Lubricants with Graphene Nanoplatelets Functionalized with Oleic Acid

doi: 10.3390/nano16080495

Figure Lengend Snippet: FT-IR spectra of GNPs and oleic acid-functionalized GNPs.

Article Snippet: In the experimental work, SAE 5W-30 mineral oil (Petro Time), graphene nanoplatelets (GNPs) with an average thickness of 5 nm and a diameter of 30 μm (Nanografi Inc., Ankara, Türkiye), oleic acid (Bilim Chemistry Inc., İstanbul, Türkiye), cyclohexane (Merck, Darmstatd, Germany), and other auxiliary chemicals were used.

Techniques:

FT-IR spectra of neat oil and GNPs-containing lubricants.

Journal: Nanomaterials

Article Title: Structural, Thermal Behaviour and Tribological Performance in Cold Rolling of Mineral Lubricants with Graphene Nanoplatelets Functionalized with Oleic Acid

doi: 10.3390/nano16080495

Figure Lengend Snippet: FT-IR spectra of neat oil and GNPs-containing lubricants.

Article Snippet: In the experimental work, SAE 5W-30 mineral oil (Petro Time), graphene nanoplatelets (GNPs) with an average thickness of 5 nm and a diameter of 30 μm (Nanografi Inc., Ankara, Türkiye), oleic acid (Bilim Chemistry Inc., İstanbul, Türkiye), cyclohexane (Merck, Darmstatd, Germany), and other auxiliary chemicals were used.

Techniques:

UV–VIS spectra of GNPs-containing mineral lubricants: ( a ) Day 0, ( b ) Day 3.

Journal: Nanomaterials

Article Title: Structural, Thermal Behaviour and Tribological Performance in Cold Rolling of Mineral Lubricants with Graphene Nanoplatelets Functionalized with Oleic Acid

doi: 10.3390/nano16080495

Figure Lengend Snippet: UV–VIS spectra of GNPs-containing mineral lubricants: ( a ) Day 0, ( b ) Day 3.

Article Snippet: In the experimental work, SAE 5W-30 mineral oil (Petro Time), graphene nanoplatelets (GNPs) with an average thickness of 5 nm and a diameter of 30 μm (Nanografi Inc., Ankara, Türkiye), oleic acid (Bilim Chemistry Inc., İstanbul, Türkiye), cyclohexane (Merck, Darmstatd, Germany), and other auxiliary chemicals were used.

Techniques:

Relative concentration profiles of GNPs-containing mineral lubricants.

Journal: Nanomaterials

Article Title: Structural, Thermal Behaviour and Tribological Performance in Cold Rolling of Mineral Lubricants with Graphene Nanoplatelets Functionalized with Oleic Acid

doi: 10.3390/nano16080495

Figure Lengend Snippet: Relative concentration profiles of GNPs-containing mineral lubricants.

Article Snippet: In the experimental work, SAE 5W-30 mineral oil (Petro Time), graphene nanoplatelets (GNPs) with an average thickness of 5 nm and a diameter of 30 μm (Nanografi Inc., Ankara, Türkiye), oleic acid (Bilim Chemistry Inc., İstanbul, Türkiye), cyclohexane (Merck, Darmstatd, Germany), and other auxiliary chemicals were used.

Techniques: Concentration Assay

Relationship between GNPs concentration and viscosity changes.

Journal: Nanomaterials

Article Title: Structural, Thermal Behaviour and Tribological Performance in Cold Rolling of Mineral Lubricants with Graphene Nanoplatelets Functionalized with Oleic Acid

doi: 10.3390/nano16080495

Figure Lengend Snippet: Relationship between GNPs concentration and viscosity changes.

Article Snippet: In the experimental work, SAE 5W-30 mineral oil (Petro Time), graphene nanoplatelets (GNPs) with an average thickness of 5 nm and a diameter of 30 μm (Nanografi Inc., Ankara, Türkiye), oleic acid (Bilim Chemistry Inc., İstanbul, Türkiye), cyclohexane (Merck, Darmstatd, Germany), and other auxiliary chemicals were used.

Techniques: Concentration Assay, Viscosity

TGA curves showing the temperature-dependent weight change in mineral oil-based lubricants as a function of GNPs concentration.

Journal: Nanomaterials

Article Title: Structural, Thermal Behaviour and Tribological Performance in Cold Rolling of Mineral Lubricants with Graphene Nanoplatelets Functionalized with Oleic Acid

doi: 10.3390/nano16080495

Figure Lengend Snippet: TGA curves showing the temperature-dependent weight change in mineral oil-based lubricants as a function of GNPs concentration.

Article Snippet: In the experimental work, SAE 5W-30 mineral oil (Petro Time), graphene nanoplatelets (GNPs) with an average thickness of 5 nm and a diameter of 30 μm (Nanografi Inc., Ankara, Türkiye), oleic acid (Bilim Chemistry Inc., İstanbul, Türkiye), cyclohexane (Merck, Darmstatd, Germany), and other auxiliary chemicals were used.

Techniques: Concentration Assay

Rolling forces measured during rolling tests under different lubrication conditions with GNPs-lubricated mineral oils.

Journal: Nanomaterials

Article Title: Structural, Thermal Behaviour and Tribological Performance in Cold Rolling of Mineral Lubricants with Graphene Nanoplatelets Functionalized with Oleic Acid

doi: 10.3390/nano16080495

Figure Lengend Snippet: Rolling forces measured during rolling tests under different lubrication conditions with GNPs-lubricated mineral oils.

Article Snippet: In the experimental work, SAE 5W-30 mineral oil (Petro Time), graphene nanoplatelets (GNPs) with an average thickness of 5 nm and a diameter of 30 μm (Nanografi Inc., Ankara, Türkiye), oleic acid (Bilim Chemistry Inc., İstanbul, Türkiye), cyclohexane (Merck, Darmstatd, Germany), and other auxiliary chemicals were used.

Techniques:

Average surface roughness (R a ) results corresponding to lubrication conditions for mineral oil lubricants containing GNPs.

Journal: Nanomaterials

Article Title: Structural, Thermal Behaviour and Tribological Performance in Cold Rolling of Mineral Lubricants with Graphene Nanoplatelets Functionalized with Oleic Acid

doi: 10.3390/nano16080495

Figure Lengend Snippet: Average surface roughness (R a ) results corresponding to lubrication conditions for mineral oil lubricants containing GNPs.

Article Snippet: In the experimental work, SAE 5W-30 mineral oil (Petro Time), graphene nanoplatelets (GNPs) with an average thickness of 5 nm and a diameter of 30 μm (Nanografi Inc., Ankara, Türkiye), oleic acid (Bilim Chemistry Inc., İstanbul, Türkiye), cyclohexane (Merck, Darmstatd, Germany), and other auxiliary chemicals were used.

Techniques:

3D surface topography images obtained after the rolling process at a 3% reduction ratio under different lubrication conditions: ( a ) dry, ( b ) base oil without additives, and ( c ) lubricant containing 0.1 wt% GNPs.

Journal: Nanomaterials

Article Title: Structural, Thermal Behaviour and Tribological Performance in Cold Rolling of Mineral Lubricants with Graphene Nanoplatelets Functionalized with Oleic Acid

doi: 10.3390/nano16080495

Figure Lengend Snippet: 3D surface topography images obtained after the rolling process at a 3% reduction ratio under different lubrication conditions: ( a ) dry, ( b ) base oil without additives, and ( c ) lubricant containing 0.1 wt% GNPs.

Article Snippet: In the experimental work, SAE 5W-30 mineral oil (Petro Time), graphene nanoplatelets (GNPs) with an average thickness of 5 nm and a diameter of 30 μm (Nanografi Inc., Ankara, Türkiye), oleic acid (Bilim Chemistry Inc., İstanbul, Türkiye), cyclohexane (Merck, Darmstatd, Germany), and other auxiliary chemicals were used.

Techniques:

Schematic of the proposed dual PCM-TEG harvester. (a) Cross-sectional view of the system, showing a thermoelectric generator (TEG) with n- and p-type thermolegs, sandwiched between two distinct PCMs, each doped with copper wool and graphene nanoplatelets (GnP). (b) Working principle of the system as an ambient temperature-driven energy harvesting unit. The red curve represents ambient temperature fluctuations, while the blue and yellow curves indicate temperature variations across the TEG.

Journal: RSC Advances

Article Title: Dual PCM integrated thermoelectric generator for harvesting energy from ambient temperature variations

doi: 10.1039/d6ra02643e

Figure Lengend Snippet: Schematic of the proposed dual PCM-TEG harvester. (a) Cross-sectional view of the system, showing a thermoelectric generator (TEG) with n- and p-type thermolegs, sandwiched between two distinct PCMs, each doped with copper wool and graphene nanoplatelets (GnP). (b) Working principle of the system as an ambient temperature-driven energy harvesting unit. The red curve represents ambient temperature fluctuations, while the blue and yellow curves indicate temperature variations across the TEG.

Article Snippet: Two carbon additives were investigated: μGr (ProGraphite GmbH) and graphene nanoplatelets (GnP, Nanografi), due to their high intrinsic thermal conductivity.

Techniques: