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Role of chemistry in bio-inspired liquid wettability
Chemistry and topography are the two distinct available tools for customizing different bio-
inspired liquid wettability including superhydrophobicity, superamphiphobicity, underwater …
inspired liquid wettability including superhydrophobicity, superamphiphobicity, underwater …
Bioinspired surfaces with superamphiphobic properties: concepts, synthesis, and applications
Among diverse wetting phenomena in surface science, superamphiphobicity is regarded as
one of the most special super‐antiwetting states. In this paper, a systematic summary is …
one of the most special super‐antiwetting states. In this paper, a systematic summary is …
Electrospinning research and products: The road and the way forward
Electrospinning is one of the most accessed nanofabrication techniques during the last three
decades, attributed to its viability for the mass production of continuous nanofibers with …
decades, attributed to its viability for the mass production of continuous nanofibers with …
Effects of do**, morphology and film-thickness of photo-anode materials for dye sensitized solar cell application–A review
Dye sensitized solar cells are attractive as simple and low cost renewable energy source. In
dye sensitized solar cells, photo-anode plays significant role for collection and transportation …
dye sensitized solar cells, photo-anode plays significant role for collection and transportation …
Electrospinning of multilevel structured functional micro-/nanofibers and their applications
J Wu, N Wang, Y Zhao, L Jiang - Journal of Materials Chemistry A, 2013 - pubs.rsc.org
Electrospinning is a straightforward and versatile way to fabricate multilevel structured
ultrafine fibers down to the micro-/nanometer scale. In this review, recent achievements in …
ultrafine fibers down to the micro-/nanometer scale. In this review, recent achievements in …
Electrospinning: A versatile technique for making of 1D growth of nanostructured nanofibers and its applications: An experimental approach
One dimensional (1D) metal oxide nanostructures (1D-MONS) play a key role in the
development of functional devices including energy conversion, energy storage and …
development of functional devices including energy conversion, energy storage and …
A Facile in Situ Hydrothermal Method to SrTiO3/TiO2 Nanofiber Heterostructures with High Photocatalytic Activity
T Cao, Y Li, C Wang, C Shao, Y Liu - Langmuir, 2011 - ACS Publications
Heterostructured SrTiO3/TiO2 nanofibers were fabricated by in situ hydrothermal method
using TiO2 nanofibers as both template and reactant. The as-fabricated heterostructures …
using TiO2 nanofibers as both template and reactant. The as-fabricated heterostructures …
A review on the secondary surface morphology of electrospun nanofibers: formation mechanisms, characterizations, and applications
B Zaarour, L Zhu, X ** - ChemistrySelect, 2020 - Wiley Online Library
Engineering the secondary surface morphology of fibers (fibers without smooth surface and
solid interior) has been attracting significant awareness in various areas and applications …
solid interior) has been attracting significant awareness in various areas and applications …
Facile Fabrication of TiO2–Graphene Composite with Enhanced Photovoltaic and Photocatalytic Properties by Electrospinning
We report the fabrication of one-dimensional TiO2–graphene nanocomposite by a facile and
one-step method of electrospinning. The unique nanostructured composite showed a …
one-step method of electrospinning. The unique nanostructured composite showed a …
Electrospun α-Fe 2 O 3 nanostructures for supercapacitor applications
Herein, we report the facile synthesis of two α-Fe2O3 nanostructures with different
morphologies via an electrospinning technique using ferric acetyl acetonate as a precursor …
morphologies via an electrospinning technique using ferric acetyl acetonate as a precursor …