Search Results - "Bright, Frank"

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  1. 1

    Ecofriendly Antifouling Marine Coatings by Ciriminna, Rosaria, Bright, Frank V, Pagliaro, Mario

    Published in ACS sustainable chemistry & engineering (06-04-2015)
    “…Foul release coatings were first used on vessels in the early 1990s, but despite early excitement about the technology, they have had a prolonged modest market…”
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  2. 2

    Environmentally Benign Sol–Gel Antifouling and Foul-Releasing Coatings by Detty, Michael R, Ciriminna, Rosaria, Bright, Frank V, Pagliaro, Mario

    Published in Accounts of chemical research (18-02-2014)
    “…Biofouling on ships and boats, characterized by aquatic bacteria and small organisms attaching to the hull, is an important global issue, since over 80000 tons…”
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  3. 3

    Aqueous Self-Assembly of Giant Bottlebrush Block Copolymer Surfactants as Shape-Tunable Building Blocks by Fenyves, Ryan, Schmutz, Marc, Horner, Ian J, Bright, Frank V, Rzayev, Javid

    Published in Journal of the American Chemical Society (28-05-2014)
    “…Programmed self-assembly of well-defined molecular building blocks enables the fabrication of precisely structured nanomaterials. In this work, we explore a…”
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  4. 4

    Interplay Between Silicon Nanocrystal Size and Local Environment Within Porous Silicon on the Analyte-Dependent Photoluminescence Response by Matthews, Samantha, Bright, Frank V.

    Published in Applied spectroscopy (01-10-2019)
    “…Porous silicon (pSi) exhibits strong photoluminescence (PL) and its PL is often exploited for chemical sensor development. However, the sensor response is not…”
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  5. 5

    Controlling Microarray Feature Spreading and Response Stability on Porous Silicon Platforms by Using Alkene-Terminal Ionic Liquids and UV Hydrosilylation by Trivedi, Shruti, Ravula, Sudhir, Baker, Gary A, Pandey, Siddharth, Bright, Frank V

    Published in Langmuir (19-05-2020)
    “…In an attempt to develop reversible sensors based on ionic liquid/porous silicon (IL/pSi) platforms, we introduce an approach using task-specific,…”
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  6. 6

    Reductive Side of Water Splitting in Artificial Photosynthesis: New Homogeneous Photosystems of Great Activity and Mechanistic Insight by McCormick, Theresa M, Calitree, Brandon D, Orchard, Alexandra, Kraut, Nadine D, Bright, Frank V, Detty, Michael R, Eisenberg, Richard

    Published in Journal of the American Chemical Society (10-11-2010)
    “…Rhodamine photosensitizers (PSs) substituting S or Se for O in the xanthene ring give turnover numbers (TONs) as high as 9000 for the generation of hydrogen…”
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  7. 7

    Molecularly templated materials in chemical sensing by Holthoff, Ellen L., Bright, Frank V.

    Published in Analytica chimica acta (02-07-2007)
    “…Biologically-based recognition elements (e.g., antibodies, aptamers, enzymes, etc.) are used as the recognition element within a wide variety of assays and…”
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  8. 8

    Exploiting the 3-Aminopropyltriethoxysilane (APTES) autocatalytic nature to create bioconjugated microarrays on hydrogen-passivated porous silicon by Coombs, Sidney G., Khodjaniyazova, Sitora, Bright, Frank V.

    Published in Talanta (Oxford) (15-01-2018)
    “…Porous silicon (pSi) based microarrays are attractive because pSi: (i) can be modified in many ways, (ii) possesses a high surface area, and (iii) exhibits…”
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  9. 9

    Self-assembling subnanometer pores with unusual mass-transport properties by Zhou, Xibin, Liu, Guande, Yamato, Kazuhiro, Shen, Yi, Cheng, Ruixian, Wei, Xiaoxi, Bai, Wanli, Gao, Yi, Li, Hui, Liu, Yi, Liu, Futao, Czajkowsky, Daniel M., Wang, Jingfang, Dabney, Michael J., Cai, Zhonghou, Hu, Jun, Bright, Frank V., He, Lan, Zeng, Xiao Cheng, Shao, Zhifeng, Gong, Bing

    Published in Nature communications (17-07-2012)
    “…A long-standing aim in molecular self-assembly is the development of synthetic nanopores capable of mimicking the mass-transport characteristics of biological…”
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  10. 10

    Effects of Acetone Vapor on the Exciton Band Photoluminescence Emission from Single- and Few-Layer WS2 on Template-Stripped Gold by Matthews, Samantha, Zhao, Chuan, Zeng, Hao, Bright, Frank V.

    Published in Sensors (Basel, Switzerland) (23-04-2019)
    “…Two-dimensional (2D) materials are being used widely for chemical sensing applications due to their large surface-to-volume ratio and photoluminescence (PL)…”
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  11. 11

    Hidden Properties of Carbon Dots Revealed After HPLC Fractionation by Vinci, John C, Ferrer, Ivonne M, Seedhouse, Steven J, Bourdon, Allen K, Reynard, Justin M, Foster, Barbara A, Bright, Frank V, Colón, Luis A

    Published in The journal of physical chemistry letters (17-01-2013)
    “…Carbon dots (C-dots) are often synthesized, modified, and studied as a mixture. Unfortunately, the spectroscopic and biological properties measured for such…”
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  12. 12

    Spatial Characteristics of Contact Pin-Printed Silanes and Bioconjugates on Oxidized Porous Silicon by Coombs, Sidney G, Bright, Frank V

    Published in Journal of physical chemistry. C (24-03-2016)
    “…Porous silicon (pSi) exhibits strong, visible photoluminescence (PL) at room temperature. To stabilize the pSi PL and simultaneously impart chemical…”
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  13. 13

    Molecularly Imprinted Xerogels as Platforms for Sensing by Holthoff, Ellen L, Bright, Frank V

    Published in Accounts of chemical research (01-09-2007)
    “…Detection and quantification of analytes in clinical settings (e.g., routine blood testing), at home (e.g., glucose monitoring), in the field (e.g.,…”
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  14. 14

    An analytical view of ionic liquids by Baker, Gary A, Baker, Sheila N, Pandey, Siddharth, Bright, Frank V

    Published in Analyst (London) (01-01-2005)
    “…Within the last decade, ionic liquids have come to the fore as environmentally-responsible designer solvents. But what are ionic liquids and what can they…”
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  15. 15

    Optimizing Pin-Printed and Hydrosilylated Microarray Spot Density on Porous Silicon Platforms by McCall, Dustin T, Zhang, Yi, Hook, Daniel J, Bright, Frank V

    Published in Langmuir (20-10-2015)
    “…Microarrays of spatially isolated chemistries on planar surfaces are powerful tools. An important factor in microarray technology is the density of chemically…”
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  16. 16

    Three-Dimensional pH Mapping within Model Hybrid Xerogel Thin Films by Destino, Joel F, Craft, Andrew K, Bright, Frank V

    Published in Langmuir (02-05-2017)
    “…When xerogel films derived from carboxyethylsilanetriol (COE) and tetraethoxy­silane (TEOS) or 3-aminopropyl­triethoxysilane (APTES), n-octyl­triethoxysilane…”
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  17. 17

    Urethral Caruncle in Pediatrics: A Northern Tanzania Experience by Kifle, Anteneh Tadesse, Mpelumb, Janeth, Bright, Frank, Mbwambo, Orgeness Jasper, Tsega, Tizazu Abebayehu

    Published in Case reports in urology (03-04-2024)
    “…Urethral caruncles are the most frequent benign tumors of the female urethra. Most of them are found in postmenopausal women, and they are rare in childhood…”
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  18. 18

    An unusual presentation of penetrating bladder injury with vesicocutaneous fistula: a case report by Lodhia, Jay, Mremi, Alex, Robert, Bahati, Sadiq, Adnan, Bright, Frank, Mbwambo, Orgeness Jasper, Ngowi, Bartholomeo Nicholaus

    Published in BMC urology (03-05-2023)
    “…Blunt trauma to the urinary bladder is common with penetrating injury being a rare occasion. Most common entry pint for penetrating injuries includes buttock,…”
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  19. 19

    Fluorescence energy transfer efficiency in labeled yeast cytochrome c: a rapid screen for ion biocompatibility in aqueous ionic liquids by Baker, Sheila N, Zhao, Hua, Pandey, Siddharth, Heller, William T, Bright, Frank V, Baker, Gary A

    Published in Physical chemistry chemical physics : PCCP (01-01-2011)
    “…A fluorescence energy transfer "de-quenching" assay was implemented to follow the equilibrium unfolding behaviour of site-specific…”
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  20. 20

    Origin of Analyte-Induced Porous Silicon Photoluminescence Quenching by Reynard, Justin M., Van Gorder, Nathan S., Bright, Frank V.

    Published in Applied spectroscopy (01-09-2017)
    “…We report on gaseous analyte-induced photoluminescence (PL) quenching of porous silicon, as-prepared (ap-pSi) and oxidized (ox-pSi). By using steady-state and…”
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