Journal of Inorganic Materials, Volume. 36, Issue 10, 1022(2021)
[5] CHEN W, OUYANG J, YI X et al. Black phosphorus nanosheets as a neuroprotective nanomedicine for neurodegenerative disorder therapy[J]. Advanced Materials, 30, 170(2018).
[9] LIN L, CHEN G, CHEN Z et al. Prognostic value of tumor stromal collagen features in patients with hepatocellular carcinoma revealed by second-harmonic generation microscopy[J]. Experimental and Molecular Pathology, 116, 104(2020).
[10] SURIYA M, MANI MARAN M, BOAZ B M et al. Crystal growth, structural, optical and piezoelectric investigations on novel B4AAT (bis-4-acetylanilinium tartrate): a phase matchable second and third-order NLO single crystal for optoelectronic and nonlinear optical device applications[J]. Optical Materials, 108, 1100(2020).
[11] SIVAKUMAR T, ANBARASAN R, KALYANA SUNDAR J et al. Enhancing the SHG effect of zinc chloride-doped DAST single crystals: new potential materials for nonlinear optical device applications[J]. Journal of Materials Science: Materials in Electronics, 31, 129-129(2020).
[12] BHOWMIK G, AN Y Q, SCHUJMAN S et al. Optical second harmonic generation from silicon (100) crystals with process tailored surface and embedded silver nanostructures for silicon nonlinear nanophotonics[J]. Journal of Applied Physics, 128, 1651(2020).
[13] PACKIYA RAJ M, RAVI KUMAR S M, SIVAVISHNU D et al. Synthesis, growth and optical, mechanical, electrical and surface properties of an inorganic new nonlinear optical crystal: sodium cadmium tetra chloride (SCTC)[J]. Crystal Research and Technology, 53, 1700(2018).
[14] HONG X, HU G, ZHAO W et al. Structuring nonlinear wavefront emitted from monolayer transition-metal dichalcogenides[J]. Research (Wash D C), 2020, 9085(2020).
[15] PANTAZIS P, MALONEY J, WU D et al. Second harmonic generating (SHG) nanoprobes fo
[17] ZHANG Z, ZHANG L, GOGNA R et al. Large enhancement of second-harmonic generation in MoS2 by one dimensional photonic crystals[J]. Solid State Communications, 322, 114(2020).
[18] YU Y, WANG J, WEI Y M et al. Precise characterization of self-catalyzed III-V nanowire heterostructures
[19] HUANG W J, HOU H Y, CHEN X B et al. Synthesis of InSe nanoflakes with near-infrared photoresponse grown by chemical vapor deposition[J]. Chemical Research in Chinese Universities, 41, 682-689(2020).
[20] ZENG Z X S, WANG X, PAN A L. Second harmonic generation of two-dimensional layered materials: characterization, signal modulation and enhancement[J]. Acta Physica Sinica, 69, 184(2020).
[21] YAN C, GAN L, ZHOU X et al. Space-confined chemical vapor deposition synthesis of ultrathin HfS2 flakes for optoelectronic application[J]. Advanced Functional Materials, 170(2017).
[24] HU X, HUANG P, JIN B et al. Halide-induced self-limited growth of ultrathin nonlayered Ge flakes for high-performance phototransistors[J]. Journal of The American Chemical Society, 140, 129-1291(2018).
[26] SU J, WANG M, LI Y et al. Sub-millimeter-scale monolayer p-type H-phase VS2[J]. Advanced Functional Materials, 30, 200(2020).
[27] HUANG W, GAN L, LI H et al. Phase-engineered growth of ultrathin inse flakes by chemical vapor deposition for high- efficiency second harmonic generation[J]. Chemistry, 24, 156-156(2018).
[28] YANG D, HU X, ZHUANG M et al. Inversion symmetry broken 2D 3R-MoTe2[J]. Advanced Functional Materials, 28, 1800(2018).
[29] WANG F, ZHANG Z, ZHANG Y et al. Honeycomb RhI3 flakes with high environmental stability for optoelectronics[J]. Advanced Materials, 32, 200(2020).
[32] YU Y, RAN M, ZHOU S et al. Phase-engineered synthesis of ultrathin hexagonal and monoclinic GaTe flakes and phase transition study[J]. Advanced Functional Materials, 29, 1901(2019).
[35] GONG C, CHU J, YIN C et al. Self-confined growth of ultrathin 2D nonlayered wide-bandgap semiconductor CuBr flakes[J]. Advanced Materials, 31, e1903580(2019).
[36] FENG X, SUN Z, PEI K et al. 2D inorganic bimolecular crystals with strong in-plane anisotropy for second-order nonlinear optics[J]. Advanced Materials, 32, e2003146(2020).
[39] SONG Y, TIAN R, YANG J et al. Second harmonic generation in atomically thin MoTe2[J]. Advanced Optical Materials, 6, 1701(2018).
[40] ZENG Z, SUN X, ZHANG D et al. Controlled vapor growth and nonlinear optical applications of large-area 3R phase WS2 and WSe2 atomic layers[J]. Advanced Functional Materials, 29, 180(2019).
[41] ZHAO M, YE Z, SUZUKI R et al. Atomically phase-matched second-harmonic generation in a 2D crystal[J]. Light: Science & Applications, 5, e16131(2016).
[49] CUNHA R, CADORE A, RAMOS S et al. Second harmonic generation in defective hexagonal boron nitride[J]. Journal of Physics: Condensed Matter, 32, 19LT(2020).
[50] MURRAY W, LUCKING M, KAHN E et al. Second harmonic generation in two-dimensional transition metal dichalcogenides with growth and post-synthesis defects[J]. 2D Materials, 7, 045(2020).
[51] ROSA H G, JUNPENG L, GOMES L C et al. Second-harmonic spectroscopy for defects engineering monitoring in transition metal dichalcogenides[J]. Advanced Optical Materials, 6, 1701(2018).
[54] NAFDAY D, SEN D, KAUSHAL N et al. 2D ferromagnetism in layered inorganic-organic hybrid perovskites[J]. Physical Review Research, 1, 0320(2019).
[57] LI J, ZHOU P, ZOU Z et al. Topological phase transition in 2D 1T′-WSTe[J]. Physica Status Solidi (b), 257, 200(2020).
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Fangfang XIA, Fakun WANG, Hailong HU, Xiang XU, Yang LI, Tianyou ZHAI.
Category: REVIEW
Received: Feb. 5, 2021
Accepted: --
Published Online: Nov. 26, 2021
The Author Email: Tianyou ZHAI (zhaity@hust.edu.cn)