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Yanfang Wang - One of the best experts on this subject based on the ideXlab platform.

  • slippery liquid infused porous surfaCe based on perfluorinated lubriCant iron tetradeCanoate preparation and Corrosion proteCtion appliCation
    Applied Surface Science, 2015
    Co-Authors: Shengsheng Yang, Hongqing Song, Yanfang Wang
    Abstract:

    Corrosion and fouling have been two major enemies for materials immersed in seawater. Fluid inCluding gas and liquid as Coating for marine Corrosion proteCtion has attraCted muCh attention, sinCe it Can also exert antifouling Capability in seawater environment. Combining gas and solid phases, superhydrophobiC surfaCe is promising to proteCt the underlying metal from Corrosion. However, the intrinsiCally short sustainability in underwater environment has hindered its praCtiCal appliCation, so that its Corrosion proteCtion ability is only temporary. Originated from liquid and solid phases, slippery liquid-infused porous surfaCe (SLIPS) has spurred wide interest due to its prominent performanCe in different fields. However, the exploration of Corrosion proteCtion effiCienCy from SLIPS remains rare. In this researCh, SLIPS is ConstruCted onto steel surfaCe via a faCile two-step protoCol. First, based on a dissolution-deposition strategy, iron tetradeCanoate is formed by an eleCtroChemiCal route. After that, fluid lubriCant is infused onto the deposit, whose rough surfaCe aCts as the reservoir to entrap the fluid to form a statiC liquid Coating. Compared to the bare and hydrophobiC deposit Covering low alloy steel, the SLIPS Composed perfluorinated lubriCant and iron tetradeCanoate endows good Corrosion proteCtion Property. (C) 2014 Elsevier B.V. All rights reserved.

Huixia Zhang - One of the best experts on this subject based on the ideXlab platform.

  • FabriCation of slippery liquid-infused porous surfaCe based on Carbon fiber with enhanCed Corrosion inhibition Property
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2014
    Co-Authors: Qian Zhang, Peng Wang, Lina Jiang, Huixia Zhang
    Abstract:

    General interest has been exCited by slippery liquid-infused porous surfaCe (SLIPS) due to its prominent performanCe in anti-fouling, anti-frosting and anti-iCing fields. In this researCh, SLIPS is ConstruCted via a faCile three-step protoCol. Firstly, Cu dendritiC struCture grows onto metal surfaCe via eleCtroChemiCal approaChes, i.e., eleCtrodeposition or galvaniC replaCement reaCtion. The as-formed metalliC struCture works as Catalyst for Carbon fiber growth by the means of ChemiCal vapor deposition. Carbon fiber matrix behaves as a 3D sponge-like struCture to reserve the lubriCant, and SLIPS Can be formed. Four metals inCluding Cu, Cu/Al alloy, Al/Mg alloy and low alloy steel, aCt as the representatives to illustrate the universality of the protoCol. In SLIPS, Carbon fiber matrix has high affinity with lubriCant, whiCh Cannot be replaCed by water spontaneously in underwater environment. Compared with superhydrophobiC Carbon fiber, the SLIPS based on Carbon fiber matrix and lubriCant performs exCeptional Corrosion inhibition Property. (C) 2014 Elsevier B.V. All rights reserved.

Shengsheng Yang - One of the best experts on this subject based on the ideXlab platform.

  • slippery liquid infused porous surfaCe based on perfluorinated lubriCant iron tetradeCanoate preparation and Corrosion proteCtion appliCation
    Applied Surface Science, 2015
    Co-Authors: Shengsheng Yang, Hongqing Song, Yanfang Wang
    Abstract:

    Corrosion and fouling have been two major enemies for materials immersed in seawater. Fluid inCluding gas and liquid as Coating for marine Corrosion proteCtion has attraCted muCh attention, sinCe it Can also exert antifouling Capability in seawater environment. Combining gas and solid phases, superhydrophobiC surfaCe is promising to proteCt the underlying metal from Corrosion. However, the intrinsiCally short sustainability in underwater environment has hindered its praCtiCal appliCation, so that its Corrosion proteCtion ability is only temporary. Originated from liquid and solid phases, slippery liquid-infused porous surfaCe (SLIPS) has spurred wide interest due to its prominent performanCe in different fields. However, the exploration of Corrosion proteCtion effiCienCy from SLIPS remains rare. In this researCh, SLIPS is ConstruCted onto steel surfaCe via a faCile two-step protoCol. First, based on a dissolution-deposition strategy, iron tetradeCanoate is formed by an eleCtroChemiCal route. After that, fluid lubriCant is infused onto the deposit, whose rough surfaCe aCts as the reservoir to entrap the fluid to form a statiC liquid Coating. Compared to the bare and hydrophobiC deposit Covering low alloy steel, the SLIPS Composed perfluorinated lubriCant and iron tetradeCanoate endows good Corrosion proteCtion Property. (C) 2014 Elsevier B.V. All rights reserved.

Qian Zhang - One of the best experts on this subject based on the ideXlab platform.

  • FabriCation of slippery liquid-infused porous surfaCe based on Carbon fiber with enhanCed Corrosion inhibition Property
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2014
    Co-Authors: Qian Zhang, Peng Wang, Lina Jiang, Huixia Zhang
    Abstract:

    General interest has been exCited by slippery liquid-infused porous surfaCe (SLIPS) due to its prominent performanCe in anti-fouling, anti-frosting and anti-iCing fields. In this researCh, SLIPS is ConstruCted via a faCile three-step protoCol. Firstly, Cu dendritiC struCture grows onto metal surfaCe via eleCtroChemiCal approaChes, i.e., eleCtrodeposition or galvaniC replaCement reaCtion. The as-formed metalliC struCture works as Catalyst for Carbon fiber growth by the means of ChemiCal vapor deposition. Carbon fiber matrix behaves as a 3D sponge-like struCture to reserve the lubriCant, and SLIPS Can be formed. Four metals inCluding Cu, Cu/Al alloy, Al/Mg alloy and low alloy steel, aCt as the representatives to illustrate the universality of the protoCol. In SLIPS, Carbon fiber matrix has high affinity with lubriCant, whiCh Cannot be replaCed by water spontaneously in underwater environment. Compared with superhydrophobiC Carbon fiber, the SLIPS based on Carbon fiber matrix and lubriCant performs exCeptional Corrosion inhibition Property. (C) 2014 Elsevier B.V. All rights reserved.

Hongqing Song - One of the best experts on this subject based on the ideXlab platform.

  • slippery liquid infused porous surfaCe based on perfluorinated lubriCant iron tetradeCanoate preparation and Corrosion proteCtion appliCation
    Applied Surface Science, 2015
    Co-Authors: Shengsheng Yang, Hongqing Song, Yanfang Wang
    Abstract:

    Corrosion and fouling have been two major enemies for materials immersed in seawater. Fluid inCluding gas and liquid as Coating for marine Corrosion proteCtion has attraCted muCh attention, sinCe it Can also exert antifouling Capability in seawater environment. Combining gas and solid phases, superhydrophobiC surfaCe is promising to proteCt the underlying metal from Corrosion. However, the intrinsiCally short sustainability in underwater environment has hindered its praCtiCal appliCation, so that its Corrosion proteCtion ability is only temporary. Originated from liquid and solid phases, slippery liquid-infused porous surfaCe (SLIPS) has spurred wide interest due to its prominent performanCe in different fields. However, the exploration of Corrosion proteCtion effiCienCy from SLIPS remains rare. In this researCh, SLIPS is ConstruCted onto steel surfaCe via a faCile two-step protoCol. First, based on a dissolution-deposition strategy, iron tetradeCanoate is formed by an eleCtroChemiCal route. After that, fluid lubriCant is infused onto the deposit, whose rough surfaCe aCts as the reservoir to entrap the fluid to form a statiC liquid Coating. Compared to the bare and hydrophobiC deposit Covering low alloy steel, the SLIPS Composed perfluorinated lubriCant and iron tetradeCanoate endows good Corrosion proteCtion Property. (C) 2014 Elsevier B.V. All rights reserved.