Search Results - "Fink, Zachary"

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  1. 1

    Transport‐Friendly Microstructure in SSC‐MEA: Unveiling the SSC Ionomer‐Based Membrane Electrode Assemblies for Enhanced Fuel Cell Performance by Li, Min, Ding, Han, Song, Jingnan, Hao, Bonan, Zeng, Rui, Li, Zhenyu, Wu, Xuefei, Fink, Zachary, Zhou, Libo, Russel, Thomas P., Liu, Feng, Zhang, Yongming

    Published in Advanced science (01-10-2024)
    “…The significant role of the cathodic binder in modulating mass transport within the catalyst layer (CL) of fuel cells is essential for optimizing cell…”
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    Journal Article
  2. 2

    Responsive-Hydrogel Aquabots by Zhu, Shipei, Cui, Huanqing, Pan, Yi, Popple, Derek, Xie, Ganhua, Fink, Zachary, Han, Jiale, Zettl, Alex, Cheung Shum, Ho, Russell, Thomas P

    Published in Advanced science (01-09-2024)
    “…It remains a challenge to produce soft robots that can mimic the responsive adaptability of living organisms. Rather than fabricating soft robots from bulk…”
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  3. 3

    Bottlebrush Polymers at Liquid Interfaces: Assembly Dynamics, Mechanical Properties, and All-Liquid Printed Constructs by Seong, Hong-Gyu, Fink, Zachary, Chen, Zhan, Emrick, Todd, Russell, Thomas P.

    Published in ACS nano (08-08-2023)
    “…Bottlebrush polymer surfactants (BPSs), formed by the interfacial interactions between bottlebrush polymers (BPs) with poly­(acrylic acid) side chains…”
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  4. 4

    Oversaturating Liquid Interfaces with Nanoparticle-Surfactants by Wu, Xuefei, Xue, Han, Fink, Zachary, Helms, Brett A., Ashby, Paul D., Omar, Ahmad K., Russell, Thomas P.

    Published in Angewandte Chemie International Edition (08-04-2024)
    “…Abstract Assemblies of nanoparticles at liquid interfaces hold promise as dynamic “active” systems when there are convenient methods to drive the system out of…”
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    Journal Article
  5. 5

    Repairable and Reconfigurable Structured Liquid Circuits by Fink, Zachary, Kim, Paul Y., Han, Jiale, Wu, Xuefei, Popple, Derek, Zhu, Shipei, Xue, Han, Zettl, Alex, Ashby, Paul D., Helms, Brett A., Russell, Thomas P.

    Published in Advanced functional materials (03-06-2024)
    “…Abstract The advance of printed electronics is significantly bolstered by the development of liquid‐state electronics that overcome the inherent limitations in…”
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    Journal Article
  6. 6

    Self-Propulsion by Directed Explosive Emulsification by Wu, Xuefei, Xue, Han, Bordia, Gautam, Fink, Zachary, Kim, Paul Y., Streubel, Robert, Han, Jiale, Helms, Brett A., Ashby, Paul D., Omar, Ahmad K., Russell, Thomas P.

    Published in Advanced materials (Weinheim) (22-02-2024)
    “…Abstract An active droplet system, programmed to repeatedly move autonomously at a specific velocity in a well‐defined direction, is demonstrated. Coulombic…”
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  7. 7

    Relaxation and Aging of Nanosphere Assemblies at a Water–Oil Interface by Kim, Paul Y., Fink, Zachary, Zhang, Qingteng, Dufresne, Eric M., Narayanan, Suresh, Russell, Thomas P.

    Published in ACS nano (28-06-2022)
    “…The relaxation and aging of an assembly of spherical nanoparticles (NPs) at a water–oil interface are characterized in situ by grazing incidence X-ray photon…”
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  8. 8

    Evidence for Enhanced Tracer Diffusion in Densely Packed Interfacial Assemblies of Hairy Nanoparticles by Fink, Zachary, Kim, Paul Y., Srivastava, Satyam, Ribbe, Alexander E., Hoagland, David A., Russell, Thomas P.

    Published in Nano letters (22-11-2023)
    “…Nearly monodisperse nanoparticle (NP) spheres attached to a nonvolatile ionic liquid surface were tracked by in situ scanning electron microscopy to obtain the…”
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  9. 9

    Dynamic Reconfiguration of Compressed 2D Nanoparticle Monolayers by Kim, Paul Y, Gao, Yige, Fink, Zachary, Ribbe, Alexander E, Hoagland, David A, Russell, Thomas P

    Published in ACS nano (26-04-2022)
    “…A Gibbs monolayer of jammed, or nearly jammed, spherical nanoparticles was imaged at a liquid surface in real time by in-situ scanning electron microscopy…”
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  10. 10

    Mixed Nanosphere Assemblies at a Liquid–Liquid Interface by Fink, Zachary, Wu, Xuefei, Kim, Paul Y., McGlasson, Alex, Abdelsamie, Maged, Emrick, Todd, Sutter‐Fella, Carolin M., Ashby, Paul D., Helms, Brett A., Russell, Thomas P.

    “…Abstract The in‐plane packing of gold (Au), polystyrene (PS), and silica (SiO 2 ) spherical nanoparticle (NP) mixtures at a water–oil interface is investigated…”
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    Journal Article
  11. 11

    Oversaturating Liquid Interfaces with Nanoparticle‐Surfactants by Wu, Xuefei, Xue, Han, Fink, Zachary, Helms, Brett A., Ashby, Paul D., Omar, Ahmad K., Russell, Thomas P.

    Published in Angewandte Chemie International Edition (10-06-2024)
    “…Assemblies of nanoparticles at liquid interfaces hold promise as dynamic “active” systems when there are convenient methods to drive the system out of…”
    Get full text
    Journal Article
  12. 12

    Repairable and Reconfigurable Structured Liquid Circuits by Fink, Zachary, Kim, Paul Y., Han, Jiale, Wu, Xuefei, Popple, Derek, Zhu, Shipei, Xue, Han, Zettl, Alex, Ashby, Paul D., Helms, Brett A., Russell, Thomas P.

    Published in Advanced functional materials (01-09-2024)
    “…The advance of printed electronics is significantly bolstered by the development of liquid‐state electronics that overcome the inherent limitations in…”
    Get full text
    Journal Article
  13. 13
  14. 14

    Mixed Nanosphere Assemblies at a Liquid–Liquid Interface by Fink, Zachary, Wu, Xuefei, Kim, Paul Y., McGlasson, Alex, Abdelsamie, Maged, Emrick, Todd, Sutter‐Fella, Carolin M., Ashby, Paul D., Helms, Brett A., Russell, Thomas P.

    “…The in‐plane packing of gold (Au), polystyrene (PS), and silica (SiO2) spherical nanoparticle (NP) mixtures at a water–oil interface is investigated in situ by…”
    Get full text
    Journal Article
  15. 15

    Self-Propulsion by Directed Explosive Emulsification by Wu, Xuefei, Xue, Han, Bordia, Gautam, Fink, Zachary, Kim, Paul Y, Streubel, Robert, Han, Jiale, Helms, Brett A, Ashby, Paul D, Omar, Ahmad K, Russell, Thomas P

    Published in Advanced materials (Weinheim) (01-05-2024)
    “…An active droplet system, programmed to repeatedly move autonomously at a specific velocity in a well-defined direction, is demonstrated. Coulombic energy is…”
    Get full text
    Journal Article
  16. 16
  17. 17

    Enhanced Fibrillar Network and Molecular Crystallization via Volatile Solid Additives Enable Efficient Near‐Infrared Organic Photodetectors by Quan, Huilei, Wu, Xuefei, Fink, Zachary, Zhong, Wenkai, Luo, Xuanang, Li, Meijing, Su, Huimin, Lan, Linfeng, Huang, Fei, Ying, Lei

    Published in Advanced optical materials (01-04-2024)
    “…Controlling the phase separation and domain purity of organic semiconductors to form well‐developed nanoscale morphology optimization in the…”
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    Journal Article
  18. 18

    3D Crystal Framework Regulation Enables Se‐Functionalized Small Molecule Acceptors Achieve Over 19% Efficiency by Gao, Wei, Ma, Ruijie, Zhu, Lei, Li, Lang, Lin, Francis R., Dela Peña, Top Archie, Wu, Jiaying, Li, Mingjie, Zhong, Wenkai, Wu, Xuefei, Fink, Zachary, Tian, Chengbo, Liu, Feng, Wei, Zhanhua, Jen, Alex K.‐Y., Li, Gang

    Published in Advanced energy materials (01-05-2024)
    “…Se‐functionalized small molecule acceptors (SMAs) exhibit unique advantages in constructing materials with near‐infrared absorption, but their photovoltaic…”
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  19. 19

    High‐Efficiency Semitransparent Near‐Infrared Organic Photodetectors Enabled by a Molecular Crystal Network by Quan, Huilei, Zhong, Zhiming, Zhou, Zhisheng, Wu, Xuefei, Shi, Chuqi, Fink, Zachary, Zhou, Guanqing, Shang, Ying, Yin, Zhipeng, Zhang, Anyang, Wang, Cheng, Li, Ning, Zhong, Wenkai, Huang, Fei, Ying, Lei

    Published in Advanced optical materials (01-08-2024)
    “…Semitransparent organic photodetectors (ST‐OPDs) show immense promise for integration into optoelectronic devices, offering adjustable absorption and…”
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  20. 20

    Conductive Thin Films over Large Areas by Supramolecular Self-Assembly by Gu, Pei-Yang, Jiang, Yufeng, Fink, Zachary, Xie, Ganhua, Hu, Qin, Kim, Paul Y, Xu, Qing-Feng, Lu, Jian-Mei, Russell, Thomas P

    Published in ACS applied materials & interfaces (02-12-2020)
    “…We report a “one-step” method for preparing conductive thin films with cylindrical microdomains oriented normal to the surface over large areas using the…”
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