W. Jun, W. Zhang, R. Cao, X. You, H. Lai, Analysis of nitrogen dioxide in environment. Adv. Biosci. Biotechnol. 7(6), 278 (2016)
A. Sharma, M. Tomar, V. Gupta, A low temperature operated NO2 gas sensor based on TeO2/SnO2 p–n heterointerface. Sens. Actuators, B Chem. 176, 875–883 (2013)
S. Cui, P. Haihui, S.A. Wells, Z. Wen, S. Mao, J. Chang, M.C. Hersam, J. Chen, Ultrahigh sensitivity and layer-dependent sensing performance of phosphorene-based gas sensors. Nat. Commun. 6(1), 1–9 (2015)
Z. Yin, X. Wang, F. Sun, X. Tong, C. Zhu, Q. Lv, D. Ye, S. Wang, W. Luo, Y.A. Huang, Aligned hierarchical Ag/ZnO nano-heterostructure arrays via electrohydrodynamic nanowire template for enhanced gas-sensing properties. Sci. Rep. 7(1), 1–10 (2017)
Z.L. Wang, Novel nanostructures of ZnO for nanoscale photonics, optoelectronics, piezoelectricity, and sensing. Appl. Phys. A 88(1), 7–15 (2007)
X.-G. Han, H.-Z. He, Q. Kuang, X. Zhou, X.-H. Zhang, T. Xu, Z.-X. Xie, L.S. Zheng, Controlling morphologies and tuning the related properties of nano/microstructured ZnO crystallites. J. Phys. Chem. C 113(2), 584–589 (2009)
M.-W. Ahn, K.-S. Park, J.-H. Heo, J.-G. Park, D.-W. Kim, K.J. Choi, J.-H. Lee, S.-H. Hong, Gas sensing properties of defect-controlled ZnO-nanowire gas sensor. Appl. Phys. Lett. 93(26), 263103 (2008)
N. Han, P. Hu, A. Zuo, D. Zhang, Y. Tian, Y. Chen, Photoluminescence investigation on the gas sensing property of ZnO nanorods prepared by plasma-enhanced CVD method. Sens. Actuators, B Chem. 145(1), 114–119 (2010)
P.A. Murade, V.S. Sangawar, G.N. Chaudhari, V.D. Kapse, A.U. Bajpeyee, Gas sensing performance of nanocrystalline ZnO prepared by a simple route. Mater. Sci.-Pol. 31(3), 298–305 (2013)
W.L. Ong, C. Zhang, G.W. Ho, Ammonia plasma modification towards a rapid and low temperature approach for tuning electrical conductivity of ZnO nanowires on flexible substrates. Nanoscale 3(10), 4206–4214 (2011)
H.B. Lee, M.H.H. Jumali, R.T. Ginting, S.T. Tan, C.C. Yap, C.H. Tan, Mechanistic study on highly crystalline (002) plane bounded ZnO nanofilms prepared via direct current magnetron sputtering. Mater. Lett. 161, 83–88 (2015)
Y. Liu, G. Li, R. Mi, C. Deng, P. Gao, An environment-benign method for the synthesis of p-NiO/n-ZnO heterostructure with excellent performance for gas sensing and photocatalysis. Sens. Actuators, B Chem. 191, 537–544 (2014)
P. Mitra, A.P. Chatterjee, H.S. Maiti, ZnO thin film sensor. Mater. Lett. 35(1–2), 33–38 (1998)
M.K. Mishra, N. Singh, V. Pandey, F.Z. Haque, Synthesis of SnO2 nanoparticles and its application in sensing ammonia gas through photoluminescence. J. Adv. Phys. 5(1), 8–12 (2016)
M. Madel, J. Jakob, F. Huber, B. Neuschl, S. Bauer, Y. Xie, I. Tischer, K. Thonke, Optical gas sensing by micro-photoluminescence on multiple and single ZnO nanowires. Phys. Status Solidi 212(8), 1810–1816 (2015)
V.V. Gafiychuk, B.K. Ostafiychuk, D.I. Popovych, I.D. Popovych, A.S. Serednytski, ZnO nanoparticles produced by reactive laser ablation. Appl. Surf. Sci. 257(20), 8396–8401 (2011)
V.M. Zhyrovetsky, D.I. Popovych, S.S. Savka, A.S. Serednytski, Nanopowder metal oxide for photoluminescent gas sensing. Nanoscale Res. Lett. 12(1), 1–5 (2017)
B.K. Kotlyarchuk, I.F. Myronyuk, D.I. Popovych, A.S. Serednytski, Synthesis of oxide nanopowder materials and research of their luminescent properties. Phys. Chem. Solid State 7(3), 490–494 (2006)
E. Comini, C. Baratto, G. Faglia, M. Ferroni, G. Sberveglieri, Single crystal ZnO nanowires as optical and conductometric chemical sensor. J. Phys. D Appl. Phys. 40(23), 7255 (2007)
A. Setaro, A. Bismuto, S. Lettieri, P. Maddalena, E. Comini, S. Bianchi, C. Baratto, G. Sberveglieri, Optical sensing of NO2 in tin oxide nanowires at sub-ppm level. Sens. Actuators, B Chem. 130(1), 391–395 (2008)
N. Singh, A. Umar, N. Singh, H. Fouad, O.Y. Alothman, F.Z. Haque, Highly sensitive ammonia gas sensor based on Sn. J. Power. Sources 294, 1–7 (2015)
N. Singh, A. Umar, N. Singh, H. Fouad, O.Y. Alothman, F.Z. Haque, Highly sensitive optical ammonia gas sensor based on Sn Doped V2O5 Nanoparticles. Mater. Res. Bull. 108, 266–274 (2018)
M.R. Parra, F.Z. Haque, Poly (Ethylene Glycol) (PEG)-assisted shape-controlled synthesis of one-dimensional ZnO nanorods. Optik 126(18), 1562–1566 (2015)
Z. Qiu, X. Yang, J. Han, P. Zhang, B. Cao, Z. Dai, G. Duan, W. Cai, Sodium-doped ZnO nanowires grown by high-pressure PLD and their acceptor-related optical properties. J. Am. Ceram. Soc. 97(7), 2177–2184 (2014)
M.R. Parra, F.Z. Haque, Aqueous chemical route synthesis and the effect of calcination temperature on the structural and optical properties of ZnO nanoparticles. J. Market. Res. 3(4), 363–369 (2014)
T.C. Damen, S.P.S. Porto, B. Tell, Raman effect in zinc oxide. Phys. Rev. 142(2), 570 (1966)
J.D. Ye, S.L. Gu, S.M. Zhu, S.M. Liu, Y.D. Zheng, R. Zhang, Y. Shi, Q. Chen, H.Q. Yu, Y.D. Ye, Raman study of lattice dynamic behaviors in phosphorus-doped ZnO films. Appl. Phys. Lett. 88(10), 101905 (2006)
W.W. Li, Z.G. Hu, J.D. Wu, J. Sun, M. Zhu, Z.Q. Zhu, J.H. Chu, Concentration dependence of optical properties in arsenic-doped ZnO nanocrystalline films grown on silicon (100) substrates by pulsed laser deposition. J. Phys. Chem. C 113(42), 18347–18352 (2009)
S. Ameen, V. Ali, M. Zulfequar, M.M. Haq, M. Husain, Photoluminescence, FTIR, and electrical characterization of samarium (III) chloride-doped polyaniline. J. Appl. Polym. Sci. 112(4), 2315–2319 (2009)
M.R. Parra, F. Haque, Optical investigation of various morphologies of ZnO nanostructures prepared by PVP-assisted wet chemical method. Opt. Spectrosc. 118, 765–772 (2015)
Y.-S. Kim, W.-P. Tai, S.-J. Shu, Effect of preheating temperature on structural and optical properties of ZnO thin films by sol–gel process. Thin Solid Films 491(1–2), 153–160 (2005)
R. Mahendran, M. Kashif, T.S. Kumar, M. Saroja, M. Venkatachalam, A. Ayeshamariam, Characterization of manganese doped ZnO (MZO) thin films by spin coating technique. IOSR J. Appl. Phys. 4(3), 62–68 (2013)
V. Pandey, N. Singh, M.M. Malik, F.Z. Khan, SnO2, SnO2: Mg and SnO2: Ni nanoparticles-based luminescence ammonia sensors. Mater. Focus 6(3), 359–363 (2017)
F.Z. Haque, N. Singh, P. Pandey, M.R. Parra, Study of zinc oxide nano/micro rods grown on ITO and glass substrates. Optik 124(20), 4167–4171 (2013)
L. Zhang, Y.Y.H. Guo, G. Liu, Q. Tan, Na-doped ZnO and RGO composite-based flexible acetone gas sensor operated in room temperature. IEEE Access 8, 171568–171574 (2020)
F. Rigoni, C. Pintossi, G. Drera, S. Pagliara, G. Lanti, P. Castrucci, M. De Crescenzi, L. Sangaletti, A cross-functional nanostructured platform based on carbon nanotube-Si hybrid junctions: where photon harvesting meets gas sensing. Sci. Rep. 7(1), 1–12 (2017)
K. Mishra, S. Sheo, R.K. Srivastava, A.C. Panday, S.G. Prakash, Photoluminescence and ultraviolet photoresponse in ZnO nanophorsphors prepared by thermal decomposition of zinc acetate. Adv. Mater. Lett. 2(4), 298–302 (2011)
V. Pandey, "Synthesis and application of metal doped SnO2 nanostructures in Photoluminescence based NH3 gas", M.A.N.I.T., India (PhD Thesis) June 2017.
D. Valerini, A. Cretì, A.P. Caricato, M. Lomascolo, R. Rella, M. Martino, Optical gas sensing through nanostructured ZnO films with different morphologies. Sens. Actuators, B Chem. 145(1), 167–173 (2010)
N. Singh, F. Syed, F.Z. Haque, Ionic liquid-controlled growth of zinc oxide nano particles and their fluorescence study in the presence of NH3 gas. Mater. Sci. Res. India 11(1), 27–34 (2014)
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