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Profil bibliographique

Matthew R. Drake

Informations fournies par OpenAlex. Research Africa ne déduit ni nationalité, ni poste, ni coordonnées personnelles.

10Publications signalées
204Citations signalées
1Affiliations récentes

Les institutions déclarées

Les domaines associés

Semiconductor Lasers and Optical DevicesOptical Network TechnologiesCarbohydrate Chemistry and SynthesisBiofuel production and bioconversionGlycosylation and Glycoproteins Research

Les publications récentes

2024 conference-paper OpenAlex

Three-Layer Thin-Coated Optical Fiber with High Damage Resistance

Yunfeng Gu, Lei Mu, Weijun Niu, Matthew R. Drake et autres

Three-layer thin-coated single-mode fibers with coating diameter of 160 microns are designed and fabricated. The fibers show high puncture resistance even exceeding standard 242 microns dual coated fibers. The fibers also show good attenuation with no significant attenuation penalty on shipping spool.

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0 citations
2024 article OpenAlex

Record Low Loss 0.144 dB/km 2-Core Optical Fiber for Submarine Transmission

Pushkar Tandon, Kevin Bennett, Matthew Tuggle, Douglas L. Butler et autres

Space Division Multiplexing using multicore optical fibers (MCF) is emerging as a promising technology for achieving capacity in excess of 1 Pb/s for submarine transmission systems. In this paper, we discuss the key MCF design considerations that result in transmission performance comparable …

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6 citations Journal of Lightwave Technology
2022 article OpenAlex

Reduced Coating Diameter Fibers for High Density Optical Interconnects

Ming-Jun Li, Arash Abedijaberi, Weijun Niu, Eric E. Leonhardt et autres

Reduced coating diameter fibers (RCDF) are attractive for increasing fiber density in cables due to their compatibility with the standard 125 μm clad diameter. In this paper, we review recent progress on RCDF and present new modeling and experimental results. We developed …

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11 citations Journal of Lightwave Technology
Accès ouvert 2014 article OpenAlex

Specificity of O -glycosylation in enhancing the stability and cellulose binding affinity of Family 1 carbohydrate-binding modules

Li‐Qun Chen, Matthew R. Drake, Michael G. Resch, Eric R. Greene et autres

The majority of biological turnover of lignocellulosic biomass in nature is conducted by fungi, which commonly use Family 1 carbohydrate-binding modules (CBMs) for targeting enzymes to cellulose. Family 1 CBMs are glycosylated, but the effects of glycosylation on CBM function remain unknown. …

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93 citations Proceedings of the National Academy of Sciences
Accès ouvert 2014 dissertation OpenAlex

Using chemical synthesis to investigate protein glycosylation: O-mannosylation site specifically modulates the stability and cellulose binding affinity of family 1 carbohydrate binding modules

Matthew R. Drake

Lignocellulosic biomass is a massive, but largely unexploited potential source of biofuel. The underutilization of this resource stems largely from the fact that cellulose is difficult to digest into smaller, useable sugar units. Natural lignocellulosic biomass is primarily degraded by fungi, which …

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0 citations CU Scholar (University of Colorado Boulder)

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