Chinese Journal of Lasers, Volume. 48, Issue 12, 1203001(2021)
Advancement in Preparation and Nonlinear Optical Properties of Zeolitic Imidazolate Frameworks
[1] Franken P A, Hill A E, Peters C W et al. Generation of optical harmonics[J]. Physical Review Letters, 7, 118-121(1961).
[2] Armstrong J A, Bloembergen N, Ducuing J et al. Interactions between light waves in a nonlinear dielectric[J]. Physical Review, 127, 1918-1939(1962).
[3] Sun Y L, Wang X, Liu J et al. Research progress in nonlinear optical materials[J]. Science & Technology in Chemical Industry, 19, 51-54(2011).
[5] Shi J C, Chu H W, Li Y et al. Synthesis and nonlinear optical properties of semiconducting single-walled carbon nanotubes at 1 μm[J]. Nanoscale, 11, 7287-7292(2019).
[11] Li Z Y, Li B C, Zhou J B et al. Progress in organic third-order nonlinear optical materials[J]. Journal of Jilin Institute of Chemical Technology, 25, 23-31(2008).
[12] Jiao F, Liu X, Zhang X G. Research and developments of third-order nonlinear optical polymers[J]. Electro-Optic Technology Application, 24, 23-27(2009).
[15] Miller S A, Tebboth J A, Tremaine J F. 114. dicyclopentadienyliron[J]. Journal of the Chemical Society (Resumed), 632-635(1952).
[17] Fischer E O, Pfab W. Cyclopentadien-metallkomplexe, ein neuer typ metallorganischer verbindungen[J]. Zeitschrift Für Naturforschung B, 7, 377-379(1952).
[18] Woodward R B, Rosenblum M, Whiting M C. A new aromatic system[J]. Journal of the American Chemical Society, 74, 3458-3459(1952).
[19] Geoffroy G L, Wrighton M S. Preface[M]. //Organometallic photochemistry, ix(1979).
[20] Geoffroy G L. Organometallic photochemistry[J]. Journal of Chemical Education, 60, 861-866(1983).
[23] Jarvis J A J, Wells A F. The structural chemistry of cupric compounds[J]. Acta Crystallographica, 13, 1027-1028(1960).
[26] Tian Y Q, Zhao Y M, Chen Z X et al. Design and generation of extended zeolitic metal-organic frameworks (ZMOFs): synthesis and crystal structures of zinc(II) imidazolate polymers with zeolitic topologies[J]. Chemistry-A European Journal, 13, 4146-4154(2007).
[27] Tian Y Q, Chen Z X, Weng L H et al. Two polymorphs of cobalt(II) imidazolate polymers synthesized solvothermally by using one organic template N, N-dimethylacetamide[J]. Inorganic Chemistry, 43, 4631-4635(2004).
[28] Huang X C, Zhang J P, Lin Y Y et al. Two mixed-valence copper (I, II) imidazolate coordination polymers: metal-valence tuning approach for new topological structures[J]. Chemical Communications, 1100-1101(2004).
[29] Huang X C, Zhang J P, Chen X M. A new route to supramolecular isomers via molecular templating: nanosized molecular polygons of copper(I) 2-methylimidazolates[J]. Journal of the American Chemical Society, 126, 13218-13219(2004).
[31] Zhang J P, Huang X C, Chen X M. Supramolecular isomerism in coordination polymers[J]. Chemical Society Reviews, 38, 2385-2396(2009).
[33] Wang B, Côté A P, Furukawa H et al. Colossal cages in zeolitic imidazolate frameworks as selective carbon dioxide reservoirs[J]. Nature, 453, 207-211(2008).
[41] Jiang J L, Liao J S. Research development on the synthesis of zeolitic imidazolate framework-8 and membranes[J]. Materials Review, 29, 52-58(2015).
[43] Gu B. Adsorption of Congo red from aquatic solution using zeolitic imidazolate framework-8 and its characteristics[D](2015).
[44] Yang L L. Preparation of novel zeolitic imidazolate framework materials and evaluation of their catalytic activities[D](2015).
[46] Wang Y S, Xu Y P, Li D W et al. Ionothermal synthesis of zeolitic imidazolate frameworks and the synthesis dissolution-crystallization mechanism[J]. Chinese Journal of Catalysis, 36, 855-865(2015).
[47] Shi Q. Synthesis and properties of zeolitic imidazolate frameworks[D](2012).
[49] Qian J F, Sun F A, Qin L Z. Hydrothermal synthesis of zeolitic imidazolate framework-67 (ZIF-67) nanocrystals[J]. Materials Letters, 82, 220-223(2012).
[51] Wang P Y, Li Y N, Li S D et al. Research on ultrasonic assisted rapid synthesis of zeolitic imidazolate framework-67(ZIF-67) and its supercapacitor performance[J]. Journal of Light Industry, 32, 24-31(2017).
[58] Shin S M, Lee M S, Han J H et al. Assessing the guest-accessible volume in MOFs using two-photon fluorescence microscopy[J]. Chemical Communications (Cambridge, England), 50, 289-291(2014).
[67] Pan H, Wang X, Chu H W et al. Optical modulation characteristics of zeolitic imidazolate framework-67 (ZIF-67) in the near infrared regime[J]. Optics Letters, 44, 5892-5895(2019).
[69] Pan H, Chu H W, Wang X et al. Nonlinear optical features of zeolitic imidazolate framework-67 nanocrystals for mid-infrared pulse generation[J]. Crystal Growth & Design, 20, 6683-6690(2020).
[73] Aboraia A M, Darwish A A A, Polyakov V et al. Structural characterization and optical properties of zeolitic imidazolate frameworks (ZIF-8) for solid-state electronics applications[J]. Optical Materials, 100, 109648(2020).
[75] Mezenov Y A, Kulachenkov N K, Yankin A N et al. Polymer matrix incorporated with ZIF-8 for application in nonlinear optics[J]. Nanomaterials, 10, 1036(2020).
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Hongwei Chu, Shengzhi Zhao, Kejian Yang, Dechun Li. Advancement in Preparation and Nonlinear Optical Properties of Zeolitic Imidazolate Frameworks[J]. Chinese Journal of Lasers, 2021, 48(12): 1203001
Category: materials and thin films
Received: Feb. 3, 2021
Accepted: Mar. 29, 2021
Published Online: Jun. 7, 2021
The Author Email: Chu Hongwei (hongwei.chu@sdu.edu.cn), Li Dechun (dechun@sdu.edu.cn)