• Journal of Inorganic Materials
  • Vol. 36, Issue 9, 901 (2021)
Yunpeng LIU1, Weifan SHENG1、2, and Zhonghua WU1、2、*
Author Affiliations
  • 11. Beijing Synchrotron Radiation Facility, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China
  • 22. School of Nuclear Science and Technology, University of Chinese Academy of Sciences, Beijing 100049, China
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    DOI: 10.15541/jim20200703 Cite this Article
    Yunpeng LIU, Weifan SHENG, Zhonghua WU. Synchrotron Radiation and Its Applications Progress in Inorganic Materials[J]. Journal of Inorganic Materials, 2021, 36(9): 901 Copy Citation Text show less
    References

    [2] L ZHANG L, L JIANG H, Q CHEN M et al. Nanotechnology and nanomaterial-application of inorganic nano-materials in traditional industry sectors. China Surfactant Detergent & Cosmetics, 34, 123-126(2004).

    [3] N KUMAR, E FOSSO-KANKEU, S RAY S. Achieving controllable MoS2 nanostructures with increased interlayer spacing for efficient removal of Pb (II) from aquatic systems. ACS Applied Materials & Interfaces, 11, 19141-19155(2019).

    [4] P LIU Y, H WANG, X QIAN L et al. Bismuth-iron-based precursor: preparation, phase composition, and its thermal treatment in two way. RSC Advances, 10, 20713-20723(2020).

    [5] P LIU Y, X QIAN L, Y ZHAO X et al. Synthesis and formation mechanism of self-assembled 3D flower-like Bi/γ-Fe2O3 composite particles. CrystEngComm, 21, 2799-2808(2019).

    [6] L WANG, H ZHOU, J HU et al. A Eu3+-Eu2+ ion redox shuttle imparts operational durability to Pb-I perovskite solar cells. Science, 363, 265-270(2019).

    [7] Y ZHAO X, P LIU Y, Y WANG J et al. Modulating the hydrothermal synthesis of Co3O4 and CoOOH nanoparticles by H2O2concentration. Inorganic Chemistry, 58, 7054-7061(2019).

    [8] J LIU X, J HE, Z ZHAO S et al. Self-powered H2 production with bifunctional hydrazine as sole consumable. Nature Communications, 9, 1-10(2018).

    [9] Y ZOU Z, M HABRAKEN W J E, G MATVEEVA et al. A hydrated crystalline calcium carbonate phase: calcium carbonate hemihydrate. Science, 363, 396-400(2019).

    [10] K HE W, Y WANG D, J WU H et al. High thermoelectric performance in low-cost SnS0.91Se0.09 crystals. Science, 365, 1418-1424(2019).

    [11] Y WANG, I DAR M, K ONO L et al. Thermodynamically stabilized β-CsPbI3-based perovskite solar cells with efficiencies> 18%. Science, 365, 591-595(2019).

    [12] C SURYANARAYANA. Structure and properties of nanocrystalline materials. Bulletin of Materials Science, 17, 307-346(1994).

    [13] K KENDALL. Materials Science and Technology, Volume 11: Structure and Properties of Ceramics, 841(1994).

    [14] W WEN, J ZHANG L, N FU Y et al. Application of Shanghai light source in material science. Modern Physics, 31, 9-26(2019).

    [16] R ELDER F, M GUREWITSCH A, V LANGMUIR R et al. Radiation from electrons in a synchrotron. Physical Review, 71, 829(1947).

    [17] H WINICK, A BIENENSTOCK. Synchrotron radiation research. Annual Review of Nuclear and Particle Science, 28, 33-113(1978).

    [20] H WINICK, S DONIACH. Synchrotron radiation research. Journal of Vacuum Science and Technology, 19, 126(1981).

    [21] S BROWN G, E MONCTON D. Handbook on Synchrotron Radiation. North-Holland(1991).

    [24] H MAI Z. Development history and current situation of synchrotron radiation-introduction to the new book “synchrotron radiation source and its application”. Modern Physics, 26, 65-71(2014).

    [28] B MCCUSKER L, B VON DREELE R, E COX D et al. Rietveld refinement guidelines. Journal of Applied Crystallography, 32, 36-50(1999).

    [29] F ZHAO H, Y TAN D, Y TIAN et al. Studies on Im-3-type KSbO3 using high pressure X-ray diffraction and Raman spectroscopy. High Pressure Research, 38, 232-242(2018).

    [30] P YAN Z, T YIN K, H YU Z et al. Pressure-induced band-gap closure and metallization in two-dimensional transition metal halide CdI2. Applied Materials Today, 18, 100532(2020).

    [31] Q FENG G, X ZHANG W, Y DONG L et al. Negative area compressibility of a hydrogen-bonded two-dimensional material. Chemical Science, 10, 1309-1315(2019).

    [32] K MAO H, J HEMLEY R, Y WU et al. High-pressure phase diagram and equation of state of solid helium from single-crystal X-ray diffraction to 23.3 GPa. Physical Review Letters, 60, 2649(1988).

    [33] Y FANG Y, L ZHANG, W WU L et al. Pressure-induced emission (PIE) and phase transition of a two-dimensional halide double perovskite (BA)4AgBiBr8 (BA=CH3(CH2)3NH3+). Angewandte Chemie International Edition, 131, 15393-15397(2019).

    [34] X ZUO Y, B LI, N JIANG et al. A high-capacity O2-type Li-rich cathode material with a single-layer Li2MnO3 superstructure. Advanced Materials, 30, 1707255(2018).

    [35] K WANG J, R GAO, D ZHOU et al. Boosting the electrocatalytic activity of Co3O4 nanosheets for a Li-O2 battery through modulating inner oxygen vacancy and exterior Co3+/Co2+ ratio. ACS Catalysis, 7, 6533-6541(2017).

    [36] K WANG J, R GAO, R ZHENG L et al. CoO/CoP heterostructured nanosheets with an O-P interpenetrated interface as a bifunctional electrocatalyst for Na-O2 battery. ACS Catalysis, 8, 8953-8960(2018).

    [37] R DU, J CHEN, Z, Q CAI et al. Application of Mythen detector: in-situ XRD study on the thermal expansion behavior of metal indium. Science China-Physics Mechanics & Astronomy, 59, 677011(2016).

    [38] R DU, Q CAI, J CHEN Z et al. Mythen detector for X-ray diffraction at the Beijing synchrotron radiation facility. Instrumentation Science & Technology, 44, 1-11(2016).

    [39] C CHANG, H WU M, S HE D et al. 3D charge and 2D phonon transportsleading to high out-of-plane ZT in n-type SnSe crystals. Science, 360, 778-783(2018).

    [40] P KRISHNAMURTI. Studies in X-ray diffraction. Part I: the structure of amorphous scattering. Part II: colloidal solutions and liquid mixtures. Indian Journal of Physics, 5, 473-500(1930).

    [41] E WARREN B. X-ray diffraction study of carbon black. The Journal of Chemical Physics, 2, 551-555(1934).

    [42] G ANDRÉ, F GÉRARD, B WALKER C et al. Small-angle scattering of X-rays. Physics Today, 9, 38(1956).

    [43] S YAN, H WU Z, Y YU H et al. Time-resolved small-angle X-ray scattering study on the growth behavior of silver nanoparticles. The Journal of Physical Chemistry C, 118, 11454-11463(2014).

    [44] S YAN, B SUN D, Y TAN Y et al. Synthesis and formation mechanism of Ag-Ni alloy nanoparticles at room temperature. Journal of Physics and Chemistry of Solids, 98, 107-114(2016).

    [45] S YAN, B SUN D, Y GONG et al. Temperature-driven directional coalescence of silver nanoparticles. Journal of Synchrotron Radiation, 23, 718-728(2016).

    [46] Y TAN Y, B SUN D, Y YU H et al. In-situ time-resolved X-ray absorption fine structure and small angle X-ray scattering revealed an unexpected phase structure transformation during the growth of nickel phosphide nanoparticles. The Journal of Physical Chemistry C, 122, 16397-16405(2018).

    [47] Y WANG J, Y ZHAO X, P LIU Y et al. Small-angle X-ray scattering study on the orientation of suspended sodium titanate nanofiber induced by applied electric field. Radiation Detection Technology and Methods, 3, 1-7(2019).

    [48] H LI, R LI C, W SUN et al. Single-stimulus-induced modulation of multiple optical properties. Advanced Materials, 31, 1900388(2019).

    [49] H ZHANG, K DASBISWAS, B LUDWIG N et al. Stable colloids in molten inorganic salts. Nature, 542, 328-331(2017).

    [50] T YAO, J LIU S, H SUN Z et al. Probing nucleation pathways for morphological manipulation of platinum nanocrystals. Journal of the American Chemical Society, 134, 9410-9416(2012).

    [51] T QIAO B, Q WANG A, F YANG X et al. Single-atom catalysis of CO oxidation using Pt1/FeOx. Nature Chemistry, 3, 634-641(2011).

    [52] J WANG X, Y WANG H, C LIU Y et al. A direct sulfation method for introducing the transition metal cation Co2+ into ZrO2 with little change in the Brønsted acid sites. Journal of Catalysis, 279, 301-309(2011).

    [53] Y XIN, H LI, N ZHANG N et al. Molecular-level insight into selective catalytic reduction of NOx with NH3 to N2 over a highly efficient bifunctional Va-MnOx catalyst at low temperature. ACS Catalysis, 8, 4937-4949(2018).

    [54] N CAO L, W LIU, Q LUO Q et al. Atomically dispersed iron hydroxide anchored on Pt for preferential oxidation of CO in H2. Nature, 565, 631-635(2019).

    [55] Y XIONG F, Y AN Q, X XIA L et al. Revealing the atomistic origin of the disorder-enhanced Na-storage performance in NaFePO4 battery cathode. Nano Energy, 57, 608-615(2019).

    [56] B LI, N JIANG, F HUANG W et al. Thermodynamic activation of charge transfer in anionic redox process for Li-ion batteries. Advanced Functional Materials, 28, 1704864(2018).

    [57] W HE, D WANG, H WU et al. High thermoelectric performance in low-cost SnS0.91Se0.09 crystals. Science, 365, 1418-1424(2019).

    [58] E HUMMEL R. Electronic Properties of Materials. Springer Science & Business Media(2011).

    [59] M LI J, T LEI, O WANG J et al. Anisotropic electronic structure and interfacial chemical reaction of stanene/Bi2Te3. The Journal of Physical Chemistry C, 124, 4917-4924(2020).

    [60] Z WANG, C FAN C, X SHEN Z et al. Defects controlled hole doping and multivalley transport in SnSe single crystals. Nature Communications, 9, 1-9(2018).

    [61] X WANG F, Z GUO J, X WANG S et al. Yellow persistent luminescence and electronic structure of Ca-α-Sialon: Eu2+. Journal of Alloys and Compounds, 821, 153482(2020).

    [62] J ZHOU X, J ZHONG J, M DONG J et al. Applications of NFPS/SSRF BL01B1 Synchrotron Infrared Beamline Station. Spectroscopy and Spectral Analysis, 38, 29-30(2018).

    [63] X YUAN Q, B DENG, Y GUAN et al. Novel developments and applications of nanoscale synchrotron radiation microscopy. Physics, 48, 205-218(2019).

    [64] J CHEN, Y WU C, P TIAN J et al. Three-dimensional imaging of a complex concaved cuboctahedron copper sulfide crystal by X-ray nanotomography. Applied Physics Letters, 92, 233104(2008).

    [65] C CAO, F TONEY M, K SHAM T et al. Emerging X-ray imaging technologies for energy materials. Materials Today, 34, 132-147(2020).

    [66] J QU, Y CAO C, L HONG Y et al. New hierarchical zinc silicate nanostructures and their application in lead ion adsorption. Journal of Materials Chemistry, 22, 3562-3567(2012).

    [67] F LIN, D NORDLUND, Y LI Y et al. Metal segregation in hierarchically structured cathode materials for high-energy lithium batteries. Nature Energy, 1, 1-8(2016).

    [68] X WEI C, H XIA S, H HUANG et al. Mesoscale battery science: the behavior of electrode particles caught on a multispectral X-ray camera. Accounts of Chemical Research, 51, 2484-2492(2018).

    [69] J LIU Z, L LUO Z. Simultaneous quick measurements of combined synchrotron EDXAFS and EDXRD. Nuclear Techniques, 42, 8-12(2019).

    [70] H WU Z, Y HUANG Y, L ZHANG J et al. Real-time tracking research on the formation of new materials in complex fluids. China Basic Science, 20, 17-22(2018).

    Yunpeng LIU, Weifan SHENG, Zhonghua WU. Synchrotron Radiation and Its Applications Progress in Inorganic Materials[J]. Journal of Inorganic Materials, 2021, 36(9): 901
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