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The cross-sectional view on the Co nanowire/InP membrane is presented in Figure 3a.
Microfluidic membrane extraction using a conventional hollow fiber membrane is presented for continuous, on-line extraction of arsenic.
In this article, an experimental strategy for improving the acid retention capability of the membrane is presented.
Based on these experimental studies a new model approach to describe water transport in the H2-PEFC membrane is presented.
A schematic showing the biomimetic membranes in an experimental permeation/dissolution chamber that exploits the amphipathic nature of the membrane is presented in Fig. 1.
A strategy to prepare graphene oxide (GO)/carbon nano-tubes (CNTs)/sulfonated poly arylene ether nitrile) (SPEN) composite membranes aimed for the proton exchange membrane is presented herein.
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Detailed local movements of cell membrane were presented by time-lapse cross section lines extracted from time-lapse SECM.
Results for the permeation of binary mixtures through a silicalite-1 membrane are presented.
The limiting cases of reinforced homogeneous full-space and inextensible membrane are presented and discussed.
Experimental measurements of the angular velocities at which different membranes become wrinkled, and of the wrinkling mode transitions that occur upon spin down of the membrane, are presented.
A novel segmented fuel cell is employed for durability characterization, and use of this cell and pre and post analysis of the membrane are presented.
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CEO of Professional Science Editing for Scientists @ prosciediting.com