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光子晶体因其具有特殊的结构色、周期性纳微结构及光子带隙,可以对光的传播进行调控而引起广泛的研究兴趣,并被尝试用于光电器件的制备。本文综述了中国科学院化学研究所绿色印刷实验室在光子晶体的制备及应用方面所做的系列工作,重点介绍了利用喷涂、光照交联、喷墨打印、黏附力调整及浸润性调控等方法快速简便制备大面积高强度的无裂纹光子晶体,并研究了将光子晶体用于与其结构色及光调控相关的多种领域,例如应用于荧光增强、能量转移增强、湿度检测、DNA或蛋白的检测器件、实时监控化学反应、白色发光二极管(LED)、广角显示及痕量爆炸物检测等方面。本文对光子晶体制备方法的未来发展及应用前景进行了展望。
Abstract:Photonic crystals have been a research focus and applied in photo electronic devices because of its special structure color, periodic micro-/nano structure and stop band which could be used in tuning the transmission of the light. In this review, the progress in fabrication and application of photonic crystals from the Key Laboratory of Green Printing, Institute of Chemistry, Chinese Academy of Sciences was mainly summarized. The facile and simple methods such as spray coating, photo-cross linkage, ink jetting, adjusting of adhesive force, and controllable wettability were discussed. The applications were further introduced in the fields of fluorescence enhancement, energy transfer boosting, high sensitive sensors, real-time monitoring of chemical reaction, white-lighting LED, and wide angle displays, etc. Finally, the outlook for fabrication and application of the photonic crystals was prospected.
[1]YABLONOVITCH E.Inhibited Spontaneous Emission in Solid-State Physics and Electronics[J].Physical Review Letters,1987,58:2059-2062.
[2]JOHN S.Strong Localization of Photons in Certain Disordered Dielectric Superlattices[J].Physical Review Letters,1987,58:2486-2489.
[3]VUKUSIC P,SAMBLES J R,LAWRENCE C R,et al.Structural Colour-Now You See It Now You Don't[J].Nature,2001,410:36.
[4]YABLONOVITCH E,LEUNG K M.Photonic BandGap Structures[J].Physical Review Letters,1991,67:2295-2298.
[5]KNIGHT J C,BIRKS T A.All-Silica Single-Mode Optical Fiber with Photonic Crystal Cladding[J].Optics Letters,1996,21:1547-1549.
[6]LEE J H,KUANG P,LEUNG W,et al.Semicrystalline Woodpile Photonic Crystals without Complicated Alignment via Soft Lithography[J].Applied Physics Letters,2010,96:193303.
[7]BERGER V.From Photonic Band Gaps to Refractive Index Engineering[J].Optical Materials,1999,11(2-3):131-142.
[8]CUI L,ZHANG Y,WANG J,et al.Ultra-fast Fabrication of Colloidal Photonic Crystals by Spray Coating[J].Macromolecular Rapid Communications,2009,30:598-603.
[9]TIAN E,CUI L,WANG J,et al.Tough Photonic Crystals Fabricated by Photo-Crosslinkage of Latex Spheres[J].Macromolecular Rapid Communications,2009,30:509-514.
[10]ZHANG Y,HAO X,ZHOU J,et al.Tough and Hydrophilic Photonic Crystals Obtained from Direct UV Irradiation[J].Macromolecular Rapid Communications,2010,31:2115-2120.
[11]CUI L,LI Y,WANG J,et al.Fabrication of Large-Area Patterned Photonic Crystals by Ink-Jet Printing[J].Journal of Materials Chemistry,2009,19:5499-5502.
[12]LI K,LI T,ZHANG T,et al.Facile Full-Color Printing with a Single Transparent Ink[J].Science Advances,2021,7:eabh1992.
[13]ZHOU J M,WANG J X,HUANG Y,et al.Large-area CrackFree Single-Crystal Photonic Crystals via Combined Effects of Polymerization-Assisted Assembly and Flexible Substrate[J].NPG Asia Materials,2012,4:e21.
[14]LI Y,ZHANG J,YANG B.Antireflective Surfaces Based on Biomimetic Nanopillared Arrays[J].NanoToday,2010,5:117-127.
[15]HUANG Y,ZHOU J,SU B,et al.Colloidal Photonic Crystals with Narrow Stopbands Assembled from Low-Adhesive Superhydrophobic Substrates[J].Journal of the American Chemical Society,2012,134:17053-17058.
[16]WANG J,WEN,Y,GE H,et al.Simple Fabrication of Full Color Colloidal Crystal Films with Tough Mechanical Strength[J].Macro molecular Chemistry and Physics,2006,207:596-604.
[17]WANG J,WEN Y,HU J,et al.Fine Control of the Wettability Transition Temperature of Colloidal-Crystal Films:from Superhydrophilic to Superhydrophobic[J].Advanced Functional Materials,2007.17:219-225.
[18]WANG K,LI C,LI Z,et al.A Facile Fabrication Strategy for Anisotropic Photonic Crystals Using Deformable Spherical Nanoparticles[J].Nanoscale,2019,11:14147-14154.
[19]ZHANG M,ZHANG H,HE M,et al.Controlled Diffusion of Nanoparticles by Viscosity Gradient for Photonic Crystal with Dual Photonic Band Gaps[J].Nanotechnology,2020,31:435604.
[20]ZHOU X,LI M,WANG K,et al.Strong Photonicband-gap Effect on the Spontaneous Emission in3D Lead Halide Perovskite Photonic Crystals[J].Chemphyschem,2018,19:2101-2106.
[21]ZHANG Y,WANG J,CHEN X,et al.Enhancing Fluorescence of Tricolor Fluorescent Powders by Silica Inverse Opals[J].Applied Physics A-Materials Science &Processing,2007,87:271-275.
[22]ZHANG Y,WANG J,JI Z,et al.Solid-state Fluorescence Enhancement of Organic Dyes by Photonic Crystals[J].Journal of Materials Chemistry,2007,17:90-94.
[23]LI M,LIAO Q,ZHANG J,et al.Energy Transfer Boosted by Photonic Crystals with Metal Film Patterns[J].Applied Physics Letters,2007,91:203516.
[24]李会玲,王京霞,宋延林.光子晶体的制备与应用研究[J].自然杂志,2009,31(3):153-157.LI Hui-ling,WANG Jing-xia,SONG Yan-lin.Preparation and Applications of Photonic Crystals[J].Chinese Journal of Nature,2009,31(3):153-157.
[25]侯觉,李明珠,宋延林.光子晶体传感器研究进展[J].中国科学:化学,2016,46(10):1080-1092.HOU Jue,LI Ming-zhu,SONG Yan-lin.Recent Advances in Photonic Crystal Sensors[J].Science China:Chemistry,2016,46(10):1080-1092.
[26]赵聪,马颖,汪洋,等.光子晶体太阳能电池研究进展[J].化学学报,2018,76(1):9-21.ZHAO Cong,MA Ying,WANG Yang,et al.Research Progress of Photonic Crystal Solar Cells[J].Acta Chimica.Sinica,2018,76(1):9-21.
[27]焦卓隆,黄超,魏杰.光子晶体传感器研究进展[J].信息记录材料,2019,20(11):1-7.JIAO Zhuo-long,HUANG Chao,WEI Jie.Development of Photonic Crystal Sensors[J].Information Recording Materials,2019,20(11):1-7.
[28]TIAN E,WANG J,ZHENG Y,et al.Colorful Humidity Sensitive Photonic Crystal Hydrogel[J].Journal of Materials Chemistry,2008,18:1116-1122.
[29]LI H,CHANG L,WANG J,et al.A Colorful OilSensitive Carbon Inverse Opal[J].Journal of Materials Chemistry,2008,18:5098-5103.
[30]LI H,WANG J,YANG L,et al.Superoleophilic and Superhydrophobic Inverse Opals for Oil Sensors[J].Advanced Functional Materials,2008,18:3258-3264.
[31]LI M,HE F,LIAO Q,et al.Ultrasensitive DNA Detection Using Photonic Crystals[J].Angewandte Chemie-International Edition,2008,47:725 8-7262.
[32]SHEN W,LI M,WANG B,et al.Hierarchical Optical Antenna:Gold Nanoparticle-Modified Photonic Crystal for Highly-Sensitive Label-Free DNA Detection[J].Journal of Materials Chemistry,2012,22:8127-8133.
[33]SHEN W,LI M,YE C,et al.Direct-Writing Colloidal Photonic Crystal Microfluidic Chips by Inkjet Printing for Label-Free Protein Detection[J].Lab On A Chip,2012,12:3089-3095.
[34]HOU J,ZHANG H,YANG Q,et al.Bio-mspired Photonic-Ctystal Microchip for Fluorescent Ultratrace Detection[J].Angewandte Chemie-International Edition,2014,53:5791-5795.
[35]CUI L,SHI W,WANG J,et al.Enhanced Sensitivity in a Hg~(2+)Sensor by Photonic Crystals[J].Analytical Methods,2010,2:448-450.
[36]HUANG Y,LI F,QIN M,et al.A Multi-Stopband Photonic-Ctystal Microchip for High-Performance Metal-Ion Recognition Based on Fluorescent Detection[J].Angewandte Chemie-International Edition,2013,52:7296-7299.
[37]QIN M,HUANG Y,LI Y,et al.A Rainbow StructuralColor Chip for Multisacchande Recognition[J].Angewandte Chemie-International Edition,2016,55:6911-6914.
[38]HOU J,ZHANG H,Yang Q,et al.Hydrophilichydrophobic Patterned Molecularly Impnnted Photonic Crystal Sensors for High-Sensitive Colorimetric Detection of Tetracycline[J].Small,2015,11:2738-2742.
[39]REN W,QIN M,Hu X,et al.Biomspired Synergy Sensor Chip of Photonic Ctystals-Graphene Oxide for Multiammes Recognition[J].Analytical Chemistry,2018,90:6371-6375.
[40]TIAN E,MA Y,CUI L,et al.Color-oscillatmg Photonic Ctystal Hydrogel[J].Macromolecular Rapid Communications,2009.30:1719-1724.
[41]LI M,LIAO Q,LIU Y,et al.A White-Lighting LED System with a Highly Efficient Thm Luminous Film[J].Applied Physics A-Matenals Science & Processing,2010,98:85-90.
[42]KUANG M,WANG J,BAO B,et al.Inkjet Printing Patterned Photome Crystal Domes for Wide ViewingAngle Displays by Controlling the Sliding Three Phase Contact Line[J].Advanced Optical Materials,2014,2:34-38.
[43]LI H,WANG J,PAN Z,et al.Amplifying Fluorescence Sensing Based on Inverse Opal Photonic Crystal toward Trace TNT Detection[J].Journal of Materials Chemistry,2011,21:1730-1735.
基本信息:
DOI:10.19370/j.cnki.cn10-1304/ts.2021.05.001
中图分类号:O734
引用信息:
[1]周海华,宋延林.光子晶体的制备和应用研究进展[J].数字印刷,2021,No.214(05):1-11.DOI:10.19370/j.cnki.cn10-1304/ts.2021.05.001.
基金信息: