Search Results - "Abney, Carter W"

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  1. 1

    Materials for the Recovery of Uranium from Seawater by Abney, Carter W, Mayes, Richard T, Saito, Tomonori, Dai, Sheng

    Published in Chemical reviews (13-12-2017)
    “…More than 1000× uranium exists in the oceans than exists in terrestrial ores. With nuclear power generation expected to increase over the coming decades,…”
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  2. 2

    Postsynthetically Modified Covalent Organic Frameworks for Efficient and Effective Mercury Removal by Sun, Qi, Aguila, Briana, Perman, Jason, Earl, Lyndsey D, Abney, Carter W, Cheng, Yuchuan, Wei, Hao, Nguyen, Nicholas, Wojtas, Lukasz, Ma, Shengqian

    Published in Journal of the American Chemical Society (22-02-2017)
    “…A key challenge in environmental remediation is the design of adsorbents bearing an abundance of accessible chelating sites with high affinity, to achieve both…”
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  3. 3

    Covalent Organic Frameworks as a Decorating Platform for Utilization and Affinity Enhancement of Chelating Sites for Radionuclide Sequestration by Sun, Qi, Aguila, Briana, Earl, Lyndsey D., Abney, Carter W., Wojtas, Lukasz, Thallapally, Praveen K., Ma, Shengqian

    Published in Advanced materials (Weinheim) (17-05-2018)
    “…The potential consequences of nuclear events and the complexity of nuclear waste management motivate the development of selective solid‐phase sorbents to…”
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  4. 4

    Bio-inspired nano-traps for uranium extraction from seawater and recovery from nuclear waste by Sun, Qi, Aguila, Briana, Perman, Jason, Ivanov, Aleksandr S., Bryantsev, Vyacheslav S., Earl, Lyndsey D., Abney, Carter W., Wojtas, Lukasz, Ma, Shengqian

    Published in Nature communications (24-04-2018)
    “…Nature can efficiently recognize specific ions by exerting second-sphere interactions onto well-folded protein scaffolds. However, a considerable challenge…”
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  5. 5

    Functionalized Porous Aromatic Framework for Efficient Uranium Adsorption from Aqueous Solutions by Li, Baiyan, Sun, Qi, Zhang, Yiming, Abney, Carter W, Aguila, Briana, Lin, Wenbin, Ma, Shengqian

    Published in ACS applied materials & interfaces (12-04-2017)
    “…We demonstrate the successful functionalization of a porous aromatic framework for uranium extraction from water as exemplified by grafting PAF-1 with the…”
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  6. 6

    Efficient Mercury Capture Using Functionalized Porous Organic Polymer by Aguila, Briana, Sun, Qi, Perman, Jason A., Earl, Lyndsey D., Abney, Carter W., Elzein, Radwan, Schlaf, Rudy, Ma, Shengqian

    Published in Advanced materials (Weinheim) (01-08-2017)
    “…The primary challenge in materials design and synthesis is achieving the balance between performance and economy for real‐world application. This issue is…”
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  7. 7

    In Situ Doping Strategy for the Preparation of Conjugated Triazine Frameworks Displaying Efficient CO2 Capture Performance by Zhu, Xiang, Tian, Chengcheng, Veith, Gabriel M, Abney, Carter W, Dehaudt, Jérémy, Dai, Sheng

    Published in Journal of the American Chemical Society (14-09-2016)
    “…An in situ doping strategy has been developed for the generation of a novel family of hexaazatriphenylene-based conjugated triazine frameworks (CTFs) for…”
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  8. 8

    Origin of the unusually strong and selective binding of vanadium by polyamidoximes in seawater by Ivanov, Alexander S., Leggett, Christina J., Parker, Bernard F., Zhang, Zhicheng, Arnold, John, Dai, Sheng, Abney, Carter W., Bryantsev, Vyacheslav S., Rao, Linfeng

    Published in Nature communications (16-11-2017)
    “…Amidoxime-functionalized polymeric adsorbents are the current state-of-the-art materials for collecting uranium (U) from seawater. However, marine tests show…”
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  9. 9

    Harnessing strong metal–support interactions via a reverse route by Wu, Peiwen, Tan, Shuai, Moon, Jisue, Yan, Zihao, Fung, Victor, Li, Na, Yang, Shi-Ze, Cheng, Yongqiang, Abney, Carter W., Wu, Zili, Savara, Aditya, Momen, Ayyoub M., Jiang, De-en, Su, Dong, Li, Huaming, Zhu, Wenshuai, Dai, Sheng, Zhu, Huiyuan

    Published in Nature communications (16-06-2020)
    “…Engineering strong metal–support interactions (SMSI) is an effective strategy for tuning structures and performances of supported metal catalysts but induces…”
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  10. 10

    Nanospace Decoration with Uranyl-Specific “Hooks” for Selective Uranium Extraction from Seawater with Ultrahigh Enrichment Index by Song, Yanpei, Zhu, Changjia, Sun, Qi, Aguila, Briana, Abney, Carter W, Wojtas, Lukasz, Ma, Shengqian

    Published in ACS central science (27-10-2021)
    “…Mining uranium from seawater is highly desirable for sustaining the increasing demand for nuclear fuel; however, access to this unparalleled reserve has been…”
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  11. 11

    X‑ray Absorption Spectroscopy Investigation of Iodine Capture by Silver-Exchanged Mordenite by Abney, Carter W, Nan, Yue, Tavlarides, Lawrence L

    “…Capture of radioactive iodine is a significant consideration during reprocessing of spent nuclear fuel and disposal of legacy wastes. While silver-exchanged…”
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  12. 12

    Topotactic Transformations of Metal–Organic Frameworks to Highly Porous and Stable Inorganic Sorbents for Efficient Radionuclide Sequestration by Abney, Carter W, Taylor-Pashow, Kathryn M. L, Russell, Shane R, Chen, Yuan, Samantaray, Raghabendra, Lockard, Jenny V, Lin, Wenbin

    Published in Chemistry of materials (23-09-2014)
    “…Innovative solid-phase sorbent technologies are needed to extract radionuclides from harsh media for environmental remediation and in order to close the…”
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  13. 13

    A Metal-Organic Framework Containing Unusual Eight-Connected Zr-Oxo Secondary Building Units and Orthogonal Carboxylic Acids for Ultra-sensitive Metal Detection by Carboni, Michaël, Lin, Zekai, Abney, Carter W., Zhang, Teng, Lin, Wenbin

    Published in Chemistry : a European journal (10-11-2014)
    “…Two metal–organic frameworks (MOFs) with Zr–oxo secondary building units (SBUs) were prepared by using p,p′‐terphenyldicarboxylate (TPDC) bridging ligands…”
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  14. 14
  15. 15

    Graphene-immobilized monomeric bipyridine-Mx+ (Mx+ = Fe3+, Co2+, Ni2+, or Cu2+) complexes for electrocatalytic water oxidation by Zhou, Xin, Zhang, Teng, Abney, Carter W, Li, Zhong, Lin, Wenbin

    Published in ACS applied materials & interfaces (12-11-2014)
    “…Covalent anchoring of 2,2'-bipyridine (L) to a graphene (Gr) modified electrode followed by treatment with an M(x+)(NO3)x solution (M = Fe(3+), Co(2+), Ni(2+),…”
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  16. 16

    The first chiral diene-based metal-organic frameworks for highly enantioselective carbon-carbon bond formation reactions by Sawano, Takahiro, Ji, Pengfei, McIsaac, Alexandra R, Lin, Zekai, Abney, Carter W, Lin, Wenbin

    Published in Chemical science (Cambridge) (01-01-2015)
    “…We have designed the first chiral diene-based metal-organic framework (MOF), E -MOF, and postsynthetically metalated E -MOF with Rh(i) complexes to afford…”
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  17. 17
  18. 18

    Toward the Design of a Hierarchical Perovskite Support: Ultra-Sintering-Resistant Gold Nanocatalysts for CO Oxidation by Tian, Chengcheng, Zhu, Xiang, Abney, Carter W, Liu, Xiaofei, Foo, Guo Shiou, Wu, Zili, Li, Meijun, Meyer, Harry M, Brown, Suree, Mahurin, Shannon M, Wu, Sujuan, Yang, Shi-Ze, Liu, Jingyue, Dai, Sheng

    Published in ACS catalysis (05-05-2017)
    “…An ultrastable Au nanocatalyst based on a heterostructured perovskite support with high surface area and uniform LaFeO3 nanocoatings was successfully…”
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  19. 19

    Controlling the Intermediate Structure of an Ionic Liquid for f‑Block Element Separations by Abney, Carter W, Do, Changwoo, Luo, Huimin, Wright, Joshua, He, Lilin, Dai, Sheng

    Published in The journal of physical chemistry letters (04-05-2017)
    “…Recent research has revealed molecular structure beyond the inner coordination sphere is essential in defining the performance of separation processes;…”
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  20. 20

    Design Strategies to Enhance Amidoxime Chelators for Uranium Recovery by Aguila, Briana, Sun, Qi, Cassady, Harper, Abney, Carter W, Li, Baiyan, Ma, Shengqian

    Published in ACS applied materials & interfaces (28-08-2019)
    “…To move nuclear as a primary energy source, uranium resources must be secured beyond what terrestrial reserves can provide. Given the vast quantity of uranium…”
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