[1] Yang J S, Swager T M. Porous shape persistent fluorescent polymer films: An approach to TNT sensory materials[J]. Journal of the American Chemical Society, 120, 5321-5322(1998).
[2] Şen F B, Beğiç N, Bener M et al. Fluorescence turn-off sensing of TNT by polyethylenimine capped carbon quantum dots[J]. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 271, 120884(2022).
[3] Li K K, Wang L X, Chen J M et al. Detecting methylphenethylamine vapor using fluorescence aggregate concentration quenching materials[J]. Sensors and Actuators B: Chemical, 334, 129629(2021).
[4] Xu M, Liu D, Sun P et al. Degradation of 2, 4, 6-Trinitrotoluene (TNT): Involvement of protocatechuate 3, 4-dioxygenase (P34O) in buttiauxella sp. S19-1[J]. Toxics, 9, 231(2021).
[5] Burns D, Mathias S, McCullough B J et al. Ambient ionisation mass spectrometry for the trace detection of explosives using a portable mass spectrometer[J]. International Journal of Mass Spectrometry, 471, 116735(2022).
[6] Gao R K, Song X F, Zhan C B et al. Light trapping induced flexible wrinkled nanocone SERS substrate for highly sensitive explosive detection[J]. Sensors and Actuators B: Chemical, 314, 128081(2020).
[7] Berdybaeva S T, Tel'minov E N, Solodova T A et al. Spontaneous and stimulated emission of thin-film polymer structures in the presence of nitrotoluene vapour[J]. Quantum Electronics, 51, 206-210(2021).
[8] Xu Y X, Wu X F, Chen Y H et al. Star-shaped triazatruxene derivatives for rapid fluorescence fiber-optic detection of nitroaromatic explosive vapors[J]. RSC Advances, 6, 31915-31918(2016).
[9] Lu R Q, Yuan W Z, Croy R G et al. Metallocalix[4]arene polymers for gravimetric detection of N-Nitrosodialkylamines[J]. Journal of the American Chemical Society, 143, 19809-19815(2021).
[10] Liu G J, Abdurahman A, Zhang Z X et al. New three-component conjugated polymers and their application as super rapid-response fluorescent probe to DNT vapor[J]. Sensors and Actuators B: Chemical, 296, 126592(2019).
[11] Kayhomayun Z, Ghani K, Zargoosh K. Surfactant-assisted synthesis of fluorescent SmCrO3 nanopowder and its application for fast detection of nitroaromatic and nitramine explosives in solution[J]. Materials Chemistry and Physics, 247, 122899(2020).
[12] Zyryanov G V, Kopchuk D S, Kovalev I S et al. Chemosensors for detection of nitroaromatic compounds (explosives)[J]. Russian Chemical Reviews, 83, 783-819(2014).
[13] Rochat S, Swager T M. Conjugated amplifying polymers for optical sensing applications[J]. ACS Applied Materials & Interfaces, 5, 4488-4502(2013).
[14] Ding Z C, Zhao Q Q, Xing R B et al. Detection of explosives with porous xerogel film from conjugated carbazole-based dendrimers[J]. Journal of Materials Chemistry C, 1, 786-792(2013).
[15] Nie H R, Zhao Y, Zhang M et al. Detection of TNT explosives with a new fluorescent conjugated polycarbazole polymer[J]. Chemical Communications, 47, 1234-1236(2011).
[16] Cox J R, Müller P, Swager T M. Interrupted energy transfer: Highly selective detection of cyclic ketones in the vapor phase[J]. Journal of the American Chemical Society, 133, 12910-12913(2011).
[17] Liu Q F, Qiu K Q, He S N et al. Structure dependence of lasing action in organic polymer films on DFB gratings for dinitrotoluene vapor detection[J]. Analyst, 141, 4018-4023(2016).
[18] Thomas III S W, Amara J P, Bjork R E et al. Amplifying fluorescent polymer sensors for the explosives taggant 2, 3-dimethyl-2, 3-dinitrobutane (DMNB)[J]. Chemical Communications, 36, 4572-4574(2005).
[19] Senthamizhan A, Celebioglu A, Bayir S et al. Highly fluorescent pyrene-functional polystyrene copolymer nanofibers for enhanced sensing performance of TNT[J]. ACS Applied Materials & Interfaces, 7, 21038-21046(2015).
[20] Wang E, Sun D M, Li H H et al. High efficiency organosilicon-containing polymer sensors for the detection of trinitrotoluene and dinitrotoluene[J]. Journal of Materials Chemistry C, 4, 6756-6760(2016).
[21] He G, Yan N, Yang J Y et al. Pyrene-containing conjugated polymer-based fluorescent films for highly sensitive and selective sensing of TNT in aqueous medium[J]. Macromolecules, 44, 4759-4766(2011).
[22] Wang Y R, Gao Y X, Chen L et al. Fluorescent diphenylfluorene-pyrenyl copolymer with dibenzothiophene-S, S-dioxide and adamantane units for explosive vapor detection[J]. RSC Advances, 5, 4853-4860(2015).
[23] Jia J L, Zhang X R, Zhao Z D et al. Recognition of polarization rotation in vector vortex beam enabled by rotational Doppler effect[J]. Chinese Journal of Quantum Electronics, 39, 286-292(2022).
[24] Yang J S, Swager T M. Fluorescent porous polymer films as TNT chemosensors: Electronic and structural effects[J]. Journal of the American Chemical Society, 120, 11864-11873(1998).
[25] Narayanan A, Varnavski O P, Swager T M et al. Multiphoton fluorescence quenching of conjugated polymers for TNT detection[J]. The Journal of Physical Chemistry C, 112, 881-884(2008).
[26] Lin D Y, Niu J J, Liu X B et al. Phasor analysis of fluorescence lifetime data and its application[J]. Acta Physica Sinica, 69, 313-325(2020).