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1 is notable in this regard; it shows that a hydrogel made up of water, polyacrylamide, and specific short DNA sequences that cross-link the strands of polyacrylamide (Figure 1A) can be induced to ...
Figure 1: A design strategy for tough bonding of hydrogels to diverse solids. Figure 2: Experimental and modelling results on various types of hydrogel–solid bonding. Figure 3: Performance of ...
Figure 3: Schematic representation of neutralization of a polyelectrolyte alcohol gel and derived methodology for building a multi-membrane structure. To validate the usefulness of our systems as ...
Moisture harvested from the atmosphere at night by a hydrogel can be used to cool down solar panels ... panels currently produce more than 600 GW of the world’s power, and this figure is expected to ...
A figure of the “hydrogel for aptamer selection” (HAS) method, showing how the high-affinity aptamer candidates bond to the embedded thrombin proteins, the yellow dots, while the medium- and ...
Now, researchers at Duke University have developed a new hydrogel that’s stronger and more durable than the real thing, which could make for longer lasting knee implants. Natural cartilage plays ...
For implants, sacrificial porogens or templates can produce macroscopic pores and hydrogels with shape-recovering complex structures, as displayed in Figure 3A, 7 but may not enable simultaneous ...
As a result, this elastomer-hydrogel embedded with photocatalysts can float on water (Figure 1C). This platform exhibits clear advantages in the photocatalytic hydrogen evolution reaction ...
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