Xiaogang zhu biography of christopher

  • Pyrex-Nitride AFM Probe for various imaging applications in contact or dynamic mode measurement and biological samples, two long and two short triangular.
  • University of Cambridge: Cambridge, Cambridgeshire, GB · National University of Singapore: Singapore, SG · Massachusetts.
  • We report the synthesis of tetragonal-phase LiYF4 nanoparticles doped with upconverting lanthanide ions.

  • Yong Hwee Tan, Kimberley C. W. Wang, Ian L. Chin, Rowan W. Sanderson, Jiayue Li, Brendan F. Kennedy, Peter B. Noble and Yu Suk Choi
    Stiffness Mediated-Mechanosensation of Airway Smooth Muscle Cells on Linear Stiffness Gradient Hydrogels
    Advanced Healthcare Materials 2024, 2304254
    DOI: https://doi.org/10.1002/adhm.202304254


    Jin Hau Lew, Keat Yung Hue, Omar K. Matar, Erich A. Müller, Paul F. Luckham, Adrielle Sousa Santos and Maung Maung Myo Thant
    Atomic Force Microscopy and Molecular Dynamic Simulation of Adsorption of Polyacrylamide with Different Chemistries onto Calcium Carbonate
    Polymers 2024, 16(4), 494
    DOI: https://doi.org/10.3390/polym16040494


    Harinderbir Kaur, Jean‐Marie Teulon, Christian Godon, Thierry Desnos, Shu‐wen W. Chen and Jean‐Luc Pellequer
    Correlation between plant cell wall stiffening and root extension arrest phenotype in the combined abiotic stress of Fe and Al
    Plant, Cell & Environment 2024; 47:574–584
    DOI: https://doi.org/10.1111/pce.14744


    Moslem Mishmastnehi, Alexander E. S. Van Driessche, Glen J. Smales, Alicia Moya and Tomasz M. Stawski
    Advanced materials engineering in historical gypsum plaster formulations
    PNAS (2023), 120 (7) e2208836120
    DOI: https://doi.org/10.1073/pnas.2208836120


    Davide Disnan, Jonas Hafner, Mi

    [1] https://en.wikipedia.org/wiki/Novum_Organum Wikipedia plan (Addressed 11/22/2018):

    [2] F. Mazzocchi Could large data achieve the wrap up of representation theory loaded science? A few remarks on depiction epistemology identical data-driven branch, EMBO Rep., Volume 16 (2015) no. 10, pp. 1250-1255

    [3] L. Cao Matter science: a comprehensive overview, ACM Comput. Surv., Supply 50 (2017) no. 3, p. 43

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    [10] M. Raissi; P. Perdikaris; G.E. Karniadakis Physi

    1 Introduction

    Over the past decade, lanthanide-doped nanoparticles have left their mark as efficient luminescent nanomaterials [1]. In contrast to conventional luminescent materials, such as fluorescent organic dyes and semiconducting nanoparticles, lanthanide-doped nanoparticles generally offer narrow emission bands, long luminescence lifetimes (micro- to millisecond range), low toxicity, as well as high resistance to photobleaching, blinking, and photochemical degradation [2]. In particular, the lanthanide-doped nanoparticles comprising proper host–dopant combinations can convert near infrared long-wavelength excitation radiation into shorter-wavelength visible emissions [3]. These unique anti-Stokes emitters, now widely known as upconversion nanoparticles, have evolved as a rapidly growing field and opened up the opportunity for creating new applications in diverse fields such as displays, solar cells, and biological assays [4].

    Upconversion nanoparticles are typically composed of an inorganic host lattice and lanthanide dopant ions embedded in the host lattice [3]. Although the upconversion process primarily makes use of the ladder-like arranged 4f energy levels of the lanthanide dopant ions, the host lattice can significantly alter the upconversion processes by exertin

  • xiaogang zhu biography of christopher