Infrared and Laser Engineering, Volume. 52, Issue 2, 20220263(2023)
Test research on far-infrared extinction performance of graphene
[1] [1] Li Y. Research on test method of infrared smoke shielding effect [D]. Changchun: University of Science Technology, 2020. (in Chinese)
[2] G S Liu, H Guan, H P Lv, et al. Effect of diameter graphite particles on infrared & 10.6 μm laser attenuation performance. Chinese Journal of Energetic Materials, 9-12(2009).
[3] W B Cai, N Y Wang, D M Song, et al. Effect of diameter graphite particles on IR extinction characteristics. Infrared Technology, 25, 68-71(2003).
[4] J Y Zhang, X P Song. Research on application of carbon fiber in interferenceand energetic materials. Electro-Optic Technology Application, 37, 40-43, 78(2022).
[5] P G Appleyard. Infrared extinction performance of high aspectratio carbon nanoparticles. Journal of Optics A: Pure and Applied Optics, 8, 101-113(2006).
[6] X Y Wang, W J Dong, M H Pang, et al. Granular characteristics and infrared extinction coefficients of graphite aerosol. Procedia Engineering, 102, 1238-1244(2015).
[7] Y Y Sun, X Y Wang, W J Dong, et al. Study on the influence of carbon fiber’s particle size on infrared/millimeter wave inter-ference performance. Infrared and Laser Engineering, 51, 20210254(2022).
[8] N Chen, G P Pan, H Gua. Study on IR extinction performance of graphite micro-powder smoke in vacuum. Initiators and Pyrotechnics, 34-36(2007).
[9] G T Ning, P Li, Y L Cui, et al. Flowability and infrared interference properties of modified graphite flake with hydrophobic nano-silica. Chinese Journal of Energetic Materials, 23, 1217-1220(2015).
[10] [10] Zhang D Z. Research on the composite technology perfmance of multispectrum interference materials[D]. Nanjing: Nanjing University of Science Technology, 2012. (in Chinese)
[11] Y Li, X J Qiao, Q G Ren, et al. Preparation and microwave absorbing properties NiCo/NiFe coated carbon fibers. Aerospace Materials and Technology, 42, 29-33(2012).
[12] H X Wang, D Z Liu, Z B Song, et al. Study on infrared extinction performance of carbon nanofibers smoke screen. Infrared Technology, 29, 324-327(2007).
[13] K Li, X Y Wang, Y Q Gao, et al. Complex refractive index and extinction performance ofgraphene in infrared bands. Infrared and Laser Engineering, 50, 20200246(2021).
[14] K S V Santhanam. Graphene: Preparations, properties, appli-cations, and prospects. MRS Bulletin, 45, 867(2020).
[15] J ChemT, A A Moosa, M S Abed. Graphene preparation and graphite exfoliation. Turkish Journal of Chemistry, 45, 493-519(2021).
[16] X D Li. Preparation of graphene oxide and its application as substrates for SERS. Journal of Chemistry, 2018, 1-5(2018).
[17] X Y Wang. Testing the infrared extinction characteristics of red phosphorous smoke screen by thermal imaging method. Journal of Anti-Chemistry, 63-65(2007).
[18] X Y Zhao, Y H Hu, Y L Gu, et al. A comparison of infrared extinction performances of bioaerosols and traditional smoke materials. Optik, 181, 293-300(2019).
[19] H Chen, X B Gao, X C Xu, et al. Middle and far infrared interference properties of CNT/graphene/carbon composites smoke screen. Chinese Journal of Energetic Materials, 27, 249-254(2019).
[20] Q H Liu, H F Liu, X D Dai, et al. Infrared interfering performance of graphene smoke screen. Infrared Technology, 41, 1071-1076(2019).
[21] [21] Chen Z. Study on preparation extinction properties of composite materials as combustiontype antiinfrared smoking agent [D]. Nanjing: Nanjing University of Science & Technology, 2018. (in Chinese)
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Huiying Li, Xuanyu Wang, Zhilong Liu, Shubao Sun, Wenjie Dong. Test research on far-infrared extinction performance of graphene[J]. Infrared and Laser Engineering, 2023, 52(2): 20220263
Category: Infrared technology and application
Received: Apr. 19, 2022
Accepted: --
Published Online: Mar. 13, 2023
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