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by
Abraham, Alexander Anil, author.
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Development of an Encapsulation Strategy for an Implantable Optical Glucose Sensing Technology
by
Harkness, Ty, author.
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analyzed and understood through multivariate computational modeling. Using this basic strategy we were able
by
Chang, Liang, author.
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effective strategy to face the challenges. Herein, we utilized a series of invented reactions to synthesize
by
Guo, Xiaoru, author. (orcid)0000-0002-5636-9312
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available sunlight into electricity, developing high-performance and low-cost solar cells is a top strategy
by
Li, Qiaochu, author.
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self-healing performance. For this purpose, a universal strategy independent of exact crosslinking
by
Rein, Michael, author.
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. Additionally, an alternative strategy for integrating active devices into fibers was demonstrated. Rather than
by
Tu, Zhengyuan, author. (orcid)0000-0002-7291-6144
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thesis, a comprehensive materials strategy involving structural and interfacial engineering is pursued to
by
Rohani, Parham, author. (orcid)0000-0003-2716-7372
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of even nanostructured silicon electrodes. One strategy to eliminate these effects is to encapsulate
by
Hizir, Mustafa Salih, author.
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this indirect aptasensor strategy, numerous DNA-binding molecules can be detected through the
by
Lu, Li, author.
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temperature biomineralization strategy can also be adapted to produce cerium-based oxide materials by
by
Lu, Qiyang, author.
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replacing the Co cations locally with less reducible cations, such as Hf and Ti. This strategy was shown to
by
Byles, Bryan W., author. (orcid)0000-0002-3762-8008
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Excerpt:
successfully applying a chemical modification strategy consisting of the introduction of a small fraction of

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