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We first describe different synthetic methodologies for fabricating hollow nanofibers as well as the compositional and geometric manipulation of these nanofibers based on electrospinning.
Self-assembled nanostructures (SANs), therefore, play a major role in bioengineering stem cell niches, and in this chapter we explore three overarching methodologies for fabricating organic-based SANs.
Since the conversion efficiency of perovskite solar cell is found to depend significantly on perovskite film quality, methodologies for fabricating high quality perovskite films are particularly emphasized, including various solution-processes and vacuum deposition method.
This review will outline concepts and methodologies for fabricating POM based inorganic organic composite materials with a special focus on the electrochemical functionality of these composites for energy storage applications.
We present methodologies for fabricating block copolymer assemblies grafted onto flat solid substrates, where each block of the copolymer possesses a systematic and gradual variation of molecular weight as a function of the position on the substrate.
Although not exhaustive, this study presents some of the most interesting methodologies for fabricating and controlling 3D hot spots and assists researchers in understanding the evolution and challenges in this field, thereby furthering interest in developing chemical-sensing SERS techniques.
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Thus, we achieved a successful sub-30 nm patterns nanotemplates transfer methodology for fabricating polymeric nanopattern arrays with highly ordered structure and tunable morphologies.
Thus, we have achieved a successful sub-30 nm patterns nanotemplates transfer methodology for fabricating polymeric nanopattern arrays with tunable morphology and lateral spacings.
A versatile and low-cost methodology for fabricating free-standing carbon nanotubes (CNT) electrodes for electrochemical and spectroelectrochemical applications is described.
In this paper, we describe a novel methodology for fabricating conductive epoxy-polythiophene network films by simultaneous photoinduced step-growth and cationic ring opening polymerization processes.
Exploration of low-temperature solution-processed methodology for fabricating planar perovskite solar cells (PSCs) is meaningful for simplifying manufacturing, roll-to-roll industrial mass production on flexible substrates and designing perovskite tandem devices.
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