INFORMAZIONI SU QUESTO ARTICOLO

Cita

Baker, R.R.: Smoke Generation Inside a Burning Cigarette: Modifying Combustion to Develop Cigarettes That may be Less Hazardous to Health; Prog. Energy Combust. Sci. 32 (2006) 373–385. DOI: 10.1016/j.pecs.2006.01.001 BakerR.R. Smoke Generation Inside a Burning Cigarette: Modifying Combustion to Develop Cigarettes That may be Less Hazardous to Health Prog. Energy Combust. Sci. 32 2006 373 385 10.1016/j.pecs.2006.01.001 Open DOISearch in Google Scholar

Health Canada: Tobacco Reporting Regulations; SOR/2000-273, Schedule 2 (2000). Available at: https://laws-lois.justice.gc.ca/eng/regulations/SOR-2000-273/index.html (accessed October 2022) Health Canada Tobacco Reporting Regulations SOR/2000-273, Schedule 2 2000 Available at: https://laws-lois.justice.gc.ca/eng/regulations/SOR-2000-273/index.html (accessed October 2022) Search in Google Scholar

World Health Organization (WHO): The Scientific Basis of Tobacco Product Regulation: Report of the WHO Study Group (TobReg); Technical Report Series 951, WHO, Geneva, Switzerland, 2008. World Health Organization (WHO) The Scientific Basis of Tobacco Product Regulation: Report of the WHO Study Group (TobReg) Technical Report Series 951, WHO Geneva, Switzerland 2008 Search in Google Scholar

U.S. Food and Drug Administration (FDA): Harmful and Potentially Harmful Constituents in Tobacco Products and Tobacco Smoke; Established List; Federal Register Food and Drug Administration 77 (2012) p. 20034. U.S. Food and Drug Administration (FDA) Harmful and Potentially Harmful Constituents in Tobacco Products and Tobacco Smoke; Established List Federal Register Food and Drug Administration 77 2012 20034 Search in Google Scholar

Torikai, K., S. Yoshida, and H. Takahashi: Effects of Temperature, Atmosphere and pH on the Generation of Smoke Compounds During Tobacco Pyrolysis; Food Chem. Toxicol. 42 (2004) 1409–1417. DOI: 10.1016/j.fct.2004.04.002 TorikaiK. YoshidaS. TakahashiH. Effects of Temperature, Atmosphere and pH on the Generation of Smoke Compounds During Tobacco Pyrolysis Food Chem. Toxicol. 42 2004 1409 1417 10.1016/j.fct.2004.04.002 15234071 Open DOISearch in Google Scholar

R.J. Reynolds Tobacco Company: Chemical and Biological Studies on New Cigarette Prototypes That Heat Instead of Burn Tobacco; R.J. Reynolds Tobacco Co., Winston-Salem, NC 27102, USA, 1988. R.J. Reynolds Tobacco Company Chemical and Biological Studies on New Cigarette Prototypes That Heat Instead of Burn Tobacco R.J. Reynolds Tobacco Co. Winston-Salem, NC 27102, USA 1988 Search in Google Scholar

Stabbert, R., P. Voncken, K. Rustemeier, H.J. Haussmann, E. Roemer, H. Schaffernicht, and G. Patskan: Toxicological Evaluation of an Electrically Heated Cigarette. Part 2: Chemical Composition of Mainstream Smoke; J. Appl. Toxicol. 23 (2003) 329–339. DOI: 10.1002/jat.924 StabbertR. VonckenP. RustemeierK. HaussmannH.J. RoemerE. SchaffernichtH. PatskanG. Toxicological Evaluation of an Electrically Heated Cigarett. Part 2: Chemical Composition of Mainstream Smoke J. Appl. Toxicol. 23 2003 329 339 10.1002/jat.924 12975772 Open DOISearch in Google Scholar

Tewes, F.J., T.J. Meisgen, D.J. Veltel, E. Roemer, and G. Patskan: Toxicological Evaluation of an Electrically Heated Cigarette. Part 3: Genotoxicity and Cytotoxicity of Mainstream Smoke; J. Appl. Toxicol. 23 (2003) 341–348. DOI: 10.1002/jat.925 TewesF.J. MeisgenT.J. VeltelD.J. RoemerE. PatskanG. Toxicological Evaluation of an Electrically Heated Cigarett. Part 3: Genotoxicity and Cytotoxicity of Mainstream Smoke J. Appl. Toxicol. 23 2003 341 348 10.1002/jat.925 12975773 Open DOISearch in Google Scholar

Patskan, G. and W. Reininghaus: Toxicological Evaluation of an Electrically Heated Cigarette. Part 1: Overview of Technical Concepts and Summary of Findings; J. Appl. Toxicol. 23 (2003) 323–328. DOI: 10.1002/jat.923 PatskanG. ReininghausW. Toxicological Evaluation of an Electrically Heated Cigarett. Part 1: Overview of Technical Concepts and Summary of Findings J. Appl. Toxicol. 23 2003 323 328 10.1002/jat.923 12975771 Open DOISearch in Google Scholar

Schorp, M.K., A.R. Tricker, and R. Dempsey: Reduced Exposure Evaluation of an Electrically Heated Cigarette Smoking System. Part 1: Non-Clinical and Clinical Insights; Regul. Toxicol. Pharmacol. 64 (2012) S1–S10. DOI: 10.1016/j.yrtph.2012.08.008 SchorpM.K. TrickerA.R. DempseyR. Reduced Exposure Evaluation of an Electrically Heated Cigarette Smoking Syste. Part 1: Non-Clinical and Clinical Insights Regul. Toxicol. Pharmacol. 64 2012 S1 S10 10.1016/j.yrtph.2012.08.008 22940435 Open DOISearch in Google Scholar

Wynder E.L., G. Wright, and J. Lam: A Study of Tobacco Carcinogenesis. V. The Role of Pyrolysis; Cancer 11 (1958) 1140–1148. DOI: 10.1002/1097-0142(195811/12)11:6<1140::AID-CNCR2820110609>3.0.CO;2-Z WynderE.L. WrightG. LamJ. A Study of Tobacco Carcinogenesis. V. The Role of Pyrolysis Cancer 11 1958 1140 1148 10.1002/1097-0142(195811/12)11:6<1140::AID-CNCR2820110609>3.0.CO;2-Z Open DOISearch in Google Scholar

White, J.L., B.T Connor, T.A. Perfetti, B.R. Bombick, J.T. Avalos, K.T. Fowler, C.J. Smith, and D.J. Doolittle: The Effect of Pyrolysis Temperature on Mutagenicity of Tobacco Smoke Condensate; Food Chem. Toxicol. 39 (2001) 499–505. DOI: 10.1016/S0278-6915(00)00155-1 WhiteJ.L. ConnorB.T PerfettiT.A. BombickB.R. AvalosJ.T. FowlerK.T. SmithC.J. DoolittleD.J. The Effect of Pyrolysis Temperature on Mutagenicity of Tobacco Smoke Condensate Food Chem. Toxicol. 39 2001 499 505 10.1016/S0278-6915(00)00155-1 Open DOISearch in Google Scholar

Cozzani, V., T. Mc Grath, M. Smith, J.-P. Schaller, and G. Zuber: Absence of Combustion in an Electrically Heated Tobacco System - An Experimental Investigation; presented at the 21st International Symposium on Analytical and Applied Pyrolysis, Nancy, France. 9th–12th May 2016. Available at: https://www.pmiscience.com/content/dam/pmiscience/en/publications/presentations-and-posters/pdf/absence-of-combustion-in-an-electrically-heated-tobacco-system-an-experimental-investigation-(1).pdf CozzaniV. Mc GrathT. SmithM. SchallerJ.-P. ZuberG. Absence of Combustion in an Electrically Heated Tobacco System - An Experimental Investigation presented at the 21st International Symposium on Analytical and Applied Pyrolysis Nancy, France 9th–12th May 2016 Available at: https://www.pmiscience.com/content/dam/pmiscience/en/publications/presentations-and-posters/pdf/absence-of-combustion-in-an-electrically-heated-tobacco-system-an-experimental-investigation-(1).pdf Search in Google Scholar

Bentley, M.: What do we Know About the Chemistry of IQOS Aerosol?; Philip Morris International, PMI Science, 2020. Available at: https://www.pmiscience.com/Open-Science/september-open-science-presentations/bentley-chemistry-iqos-aerosol (accessed October 2022) BentleyM. What do we Know About the Chemistry of IQOS Aerosol? Philip Morris International, PMI Science 2020 Available at: https://www.pmiscience.com/Open-Science/september-open-science-presentations/bentley-chemistry-iqos-aerosol (accessed October 2022) Search in Google Scholar

Horinouchi, T. and S. Miwa: Comparison of Cytotoxi-city of Cigarette Smoke Extract Derived from Heat-Not-Burn and Combustion Cigarettes in Human Vascular Endothelial Cells; J. Pharmacol. Sci. 147 (2021) 223–233. DOI: 10.1016/j.jphs.2021.07.005. HorinouchiT. MiwaS. Comparison of Cytotoxi-city of Cigarette Smoke Extract Derived from Heat-Not-Burn and Combustion Cigarettes in Human Vascular Endothelial Cells J. Pharmacol. Sci. 147 2021 223 233 10.1016/j.jphs.2021.07.005 Open DOISearch in Google Scholar

Eaton, D., B. Jakaj, M. Forster, J. Nicol, E. Mavropoulou, K. Scott, C. Liu, K. McAdam, J. Murphy, and C.J. Proctor: Assessment of Tobacco Heating Product THP1.0. Part 2: Product Design, Operation and Thermophysical Characterisation; Regul. Toxicol. Pharmacol. 93 (2018) 4–13. DOI: 10.1016/j.yrtph.2017.09.009 EatonD. JakajB. ForsterM. NicolJ. MavropoulouE. ScottK. LiuC. McAdamK. MurphyJ. ProctorC.J. Assessment of Tobacco Heating Product THP1.0. Part 2: Product Design, Operation and Thermophysical Characterisation Regul. Toxicol. Pharmacol. 93 2018 4 13 10.1016/j.yrtph.2017.09.009 Open DOISearch in Google Scholar

Lee, J. and S. Lee: Korean-Made Heated Tobacco Product, ‘Lil’; Tob. Control 0 (2018) 1–2. DOI: 10.1136/tobaccocontrol-2018-054430 LeeJ. LeeS. Korean-Made Heated Tobacco Product, ‘Lil’ Tob. Control 0 2018 1 2 10.1136/tobaccocontrol-2018-054430 30166426 Open DOISearch in Google Scholar

Li, B., Y. Sun, L. Fu, L. Feng, P. Lei, C. Liu, J. Han, S. Shang, S. Wang, L. Wang, Y. Pan, Q. Zhang, Z. Guo, F. Huang, M. Zhang, J. Tang, B. Wang, and K. Zhang: Aerosol Formation and Transfer in Open- and not Open-Ended Heated Tobacco Products; Contrib. Tob. Nicotine Res. 31 (2022) 162–174. DOI: 10.2478/cttr-2022-0017 LiB. SunY. FuL. FengL. LeiP. LiuC. HanJ. ShangS. WangS. WangL. PanY. ZhangQ. GuoZ. HuangF. ZhangM. TangJ. WangB. ZhangK. Aerosol Formation and Transfer in Open- and not Open-Ended Heated Tobacco Products Contrib. Tob. Nicotine Res. 31 2022 162 174 10.2478/cttr-2022-0017 Open DOISearch in Google Scholar

Sun, T., C. Sun, Q. Song, Y. Li, X. Wang, and X. Shu: Strengthening the Results of Destroying the Caking Property of CBC in Weak Oxygen and Upgrading Pyrolysis Products; Fuel 205 (2017) 90–99. DOI: 10.1016/j.fuel.2017.05.040 SunT. SunC. SongQ. LiY. WangX. ShuX. Strengthening the Results of Destroying the Caking Property of CBC in Weak Oxygen and Upgrading Pyrolysis Products Fuel 205 2017 90 99 10.1016/j.fuel.2017.05.040 Open DOISearch in Google Scholar

Rashid Khan, M., R. Usmen, E. Newton, S. Beer, and W. Chisholm: E.S.R. Spectroscopic Study on the Chemistry of Coal Oxidation; Fuel 67 (1988) 1668–1673. DOI: 10.1016/0016-2361(88)90213-X Rashid KhanM. UsmenR. NewtonE. BeerS. ChisholmW. E.S.R. Spectroscopic Study on the Chemistry of Coal Oxidation Fuel 67 1988 1668 1673 10.1016/0016-2361(88)90213-X Open DOISearch in Google Scholar

Busch, C., T. Streibel, C. Liu, K.G. McAdam, and R. Zimmermann: Pyrolysis and Combustion of Tobacco in a Cigarette Smoking Simulator Under Air and Nitrogen Atmosphere; Anal. Bioanal. Chem 403 (2012) 419–430. DOI: 10.1007/s00216-012-5879-9 BuschC. StreibelT. LiuC. McAdamK.G. ZimmermannR. Pyrolysis and Combustion of Tobacco in a Cigarette Smoking Simulator Under Air and Nitrogen Atmosphere Anal. Bioanal. Chem 403 2012 419 430 10.1007/s00216-012-5879-9 22392377 Open DOISearch in Google Scholar

Senneca, O., S. Ciaravolo, and A. Nunziata: Composition of the Gaseous Products of Pyrolysis of Tobacco Under Inert and Oxidative Conditions; J. Anal. Appl. Pyrolysis 79 (2007) 234–243. DOI: 10.1016/j.jaap.2006.09.011 SennecaO. CiaravoloS. NunziataA. Composition of the Gaseous Products of Pyrolysis of Tobacco Under Inert and Oxidative Conditions J. Anal. Appl. Pyrolysis 79 2007 234 243 10.1016/j.jaap.2006.09.011 Open DOISearch in Google Scholar

Alderman, S.L., C. Song, S.C. Moldoveanu, and S.K. Cole: Particle Size Distribution of E-Cigarette Aerosols and the Relationship to Cambridge Filter Pad Collection Efficiency; Beitr. Tabakforsch. Int. 26 (2014) 183–190. DOI: 10.1515/cttr-2015-0006 AldermanS.L. SongC. MoldoveanuS.C. ColeS.K. Particle Size Distribution of E-Cigarette Aerosols and the Relationship to Cambridge Filter Pad Collection Efficiency Beitr. Tabakforsch. Int. 26 2014 183 190 10.1515/cttr-2015-0006 Open DOISearch in Google Scholar

Hofer, I., L. Gautier, E. Cortes Sauteur, M. Dobler, A. Python, C. O’Reilly, D. Gisi, Daniel, E. Tinguely, L. Wehren, and E. García Fidalgo: A Screening Method by Gas Chromatography-Mass Spectrometry for the Quantification of 24 Aerosol Constituents From Heat-Not-Burn Tobacco Products; Beitr. Tabakforsch. Int. 28 (2019) 317–328. DOI: 10.2478/cttr-2019-0013 HoferI. GautierL. Cortes SauteurE. DoblerM. PythonA. O’ReillyC. GisiD. TinguelyDaniel E. WehrenL. García FidalgoE. A Screening Method by Gas Chromatography-Mass Spectrometry for the Quantification of 24 Aerosol Constituents From Heat-Not-Burn Tobacco Products Beitr. Tabakforsch. Int. 28 2019 317 328 10.2478/cttr-2019-0013 Open DOISearch in Google Scholar

Herbinet, O. and F. Battin-Leclerc: Progress in Understanding Low-Temperature Organic Compound Oxidation Using a Jet-Stirred Reactor; Int. J. Chem. Kinet. 46 (2014) 619–639. DOI: 10.1002/kin.20871 HerbinetO. Battin-LeclercF. Progress in Understanding Low-Temperature Organic Compound Oxidation Using a Jet-Stirred Reactor Int. J. Chem. Kinet. 46 2014 619 639 10.1002/kin.20871 Open DOISearch in Google Scholar

Herbinet, O., B. Husson, M. Ferrari, P.A. Glaude, and F. Battin-Leclerc: Low Temperature Oxidation of Benzene and Toluene in Mixture With n-Decane; Proc. Combust. Inst. 34 (2013) 297–305. DOI: 10.1016/j.proci.2012.06.005 HerbinetO. HussonB. FerrariM. GlaudeP.A. Battin-LeclercF. Low Temperature Oxidation of Benzene and Toluene in Mixture With n-Decane Proc. Combust. Inst. 34 2013 297 305 10.1016/j.proci.2012.06.005 367740123762017 Open DOISearch in Google Scholar

Bounaceur, R., I. Da Costa, R. Fournet, F. Billaud, and F. Battin-Leclerc: Experimental and Modeling Study of the Oxidation of Toluene; Int. J. Chem. Kinet. 37 (2005) 25–49. DOI: 10.1002/kin.20047 BounaceurR. Da CostaI. FournetR. BillaudF. Battin-LeclercF. Experimental and Modeling Study of the Oxidation of Toluene Int. J. Chem. Kinet. 37 2005 25 49 10.1002/kin.20047 Open DOISearch in Google Scholar

Zhao, S., Y. Luo, Y. Su, Y. Zhang, and Y. Long: Experimental Investigation of the Oxidative Pyrolysis Mechanism of Pinewood on a Fixed-Bed Reactor; Energy Fuels 28 (2014) 5049–5056. DOI: 10.1021/ef500612q ZhaoS. LuoY. SuY. ZhangY. LongY. Experimental Investigation of the Oxidative Pyrolysis Mechanism of Pinewood on a Fixed-Bed Reactor Energy Fuels 28 2014 5049 5056 10.1021/ef500612q Open DOISearch in Google Scholar

Roubaud, A., O. Lemaire, A. Minetti, and L.R. Sochet: High Pressure Auto-Ignition and Oxidation Mechanisms of o-Xylene, o-Ethyltoluene, and n-Butylbenzene Between 600 and 900 K; Combust. Flame 123 (2000) 561–571. DOI: 10.1016/S0010-2180(00)00174-7 RoubaudA. LemaireO. MinettiA. SochetL.R. High Pressure Auto-Ignition and Oxidation Mechanisms of o-Xylene, o-Ethyltoluene, and n-Butylbenzene Between 600 and 900 K Combust. Flame 123 2000 561 571 10.1016/S0010-2180(00)00174-7 Open DOISearch in Google Scholar

Li, D., F. Berruti, and C. Briens: Autothermal Fast Pyrolysis of Birch Bark with Partial Oxidation in a Fluidized Bed Reactor; Fuel 121 (2014) 27–38. DOI: 10.1016/j.fuel.2013.12.042 LiD. BerrutiF. BriensC. Autothermal Fast Pyrolysis of Birch Bark with Partial Oxidation in a Fluidized Bed Reactor Fuel 121 2014 27 38 10.1016/j.fuel.2013.12.042 Open DOISearch in Google Scholar

Yi, S., Y. Luo, C. Yi, W. Wu, and Y. Zhang: Experimental and Numerical Investigation of Tar Destruction Under Partial Oxidation Environment; Fuel Process. Technol. 92 (2011) 1513–1524. DOI: 10.1016/j.fuproc.2011.03.013 YiS. LuoY. YiC. WuW. ZhangY. Experimental and Numerical Investigation of Tar Destruction Under Partial Oxidation Environment Fuel Process. Technol. 92 2011 1513 1524 10.1016/j.fuproc.2011.03.013 Open DOISearch in Google Scholar

Zhang, Y., S. Kajitani, M. Ashizawa, and Y. Oki: Tar Destruction and Coke Formation During Rapid Pyrolysis and Gasification of Biomass in a Drop-Tube Furnace; Fuel 89 (2010) 302–309. DOI: 10.1016/j.fuel.2009.08.045 ZhangY. KajitaniS. AshizawaM. OkiY. Tar Destruction and Coke Formation During Rapid Pyrolysis and Gasification of Biomass in a Drop-Tube Furnace Fuel 89 2010 302 309 10.1016/j.fuel.2009.08.045 Open DOISearch in Google Scholar

Ogunlaja, A.S., M.S. Abdul-Quadir, P.E. Kleyi, E.E. Ferg, P. Watts, and Z.R. Tshentu: Towards Oxidative Denitrogenation of Fuel Oils: Vanadium Oxide-Catalysed Oxidation of Quinoline and Adsorptive Removal of Quinoline-N-oxide using 2,6-Pyridine-polybenzimidazole Nanofibers; Arab. J. Chem. 12 (2019) 198–214. DOI: 10.1016/j.arabjc.2017.05.010 OgunlajaA.S. Abdul-QuadirM.S. KleyiP.E. FergE.E. WattsP. TshentuZ.R. Towards Oxidative Denitrogenation of Fuel Oils: Vanadium Oxide-Catalysed Oxidation of Quinoline and Adsorptive Removal of Quinoline-N-oxide using 2,6-Pyridine-polybenzimidazole Nanofibers Arab. J. Chem. 12 2019 198 214 10.1016/j.arabjc.2017.05.010 Open DOISearch in Google Scholar

Cetin, E., B. Moghtaderi, R. Gupta, and T.F. Wall: Influence of Pyrolysis Conditions on the Structure and Gasification Reactivity of Biomass Chars; Fuel 83 (2004) 2139–2150. DOI: 10.1016/j.fuel.2004.05.008 CetinE. MoghtaderiB. GuptaR. WallT.F. Influence of Pyrolysis Conditions on the Structure and Gasification Reactivity of Biomass Chars Fuel 83 2004 2139 2150 10.1016/j.fuel.2004.05.008 Open DOISearch in Google Scholar

Lu, L., V. Sahajwalla, C. Kong, and D. Harris: Quantitative X-Ray Diffraction Analysis and its Application to Various Coals; Carbon 39 (2001) 1821–1833. DOI: 10.1016/S0008-6223(00)00318-3 LuL. SahajwallaV. KongC. HarrisD. Quantitative X-Ray Diffraction Analysis and its Application to Various Coals Carbon 39 2001 1821 1833 10.1016/S0008-6223(00)00318-3 Open DOISearch in Google Scholar

Schoening, F.R.L.: X-Ray Structure of Some South African Coals Before and After Heat Treatment at 500 and 1000 °C; Fuel 62 (1983) 1315–20. DOI: 10.1016/S0016-2361(83)80016-7 SchoeningF.R.L. X-Ray Structure of Some South African Coals Before and After Heat Treatment at 500 and 1000 °C Fuel 62 1983 1315 20 10.1016/S0016-2361(83)80016-7 Open DOISearch in Google Scholar

Liu, R.: Research on Biomass Oxidative Torrefaction and Combustion Properties; PhD Thesis, Huazhong University of Science and Technology, Wuhan, China, 2014. LiuR. Research on Biomass Oxidative Torrefaction and Combustion Properties PhD Thesis, Huazhong University of Science and Technology Wuhan, China 2014 Search in Google Scholar

Yan, J., Z. Lei, Z. Li, Z. Wang, S. Ren, S. Kang, X. Wang, and H. Shui: Molecular Structure Characterization of Low-Medium Rank Coals via XRD, Solid State 13C NMR and FTIR Spectroscopy; Fuel 268 (2020) 117038. DOI: 10.1016/j.fuel.2020.117038 YanJ. LeiZ. LiZ. WangZ. RenS. KangS. WangX. ShuiH. Molecular Structure Characterization of Low-Medium Rank Coals via XRD, Solid State 13C NMR and FTIR Spectroscopy Fuel 268 2020 117038 10.1016/j.fuel.2020.117038 Open DOISearch in Google Scholar

Wang, S., L. Wu, X. Hu, L. Zhang, K.M. O’Donnell, C.E. Buckley, and C. Li: An X-Ray Photoelectron Spectroscopic Perspective for the Evolution of O-Containing Structures in Char During Gasification; Fuel Process. Technol. 172 (2018) 209–215. DOI: 10.1016/j.fuproc.2017.12.019. WangS. WuL. HuX. ZhangL. O’DonnellK.M. BuckleyC.E. LiC. An X-Ray Photoelectron Spectroscopic Perspective for the Evolution of O-Containing Structures in Char During Gasification Fuel Process. Technol. 172 2018 209 215 10.1016/j.fuproc.2017.12.019 Open DOISearch in Google Scholar

Perry, D.L. and A. Grint: Application of XPS to Coal Characterization, Fuel 62 (1983) 1024–1033. DOI: 10.1016/0016-2361(83)90135-7 PerryD.L. GrintA. Application of XPS to Coal Characterization Fuel 62 1983 1024 1033 10.1016/0016-2361(83)90135-7 Open DOISearch in Google Scholar

Gardner, S.D., C.S.K. Singamsetty, G.L. Booth, G.-R. He, and C.U. Pittman: Surface Characterization of Carbon Fibers Using Angle-Resolved XPS and ISS; Carbon 33 (1995) 587–595. DOI: 10.1016/0008-6223(94)00144-O GardnerS.D. SingamsettyC.S.K. BoothG.L. HeG.-R. PittmanC.U. Surface Characterization of Carbon Fibers Using Angle-Resolved XPS and ISS Carbon 33 1995 587 595 10.1016/0008-6223(94)00144-O Open DOISearch in Google Scholar

Cerciello, F., O. Senneca, A. Coppola, A. Forgione, P. Lacovig, and P. Salatino: The Influence of Temperature on the Nature and Stability of Surface-Oxides Formed by Oxidation of Char; Renew. Sustain. Energy Rev. 137 (2021) 110595. DOI: 10.1016/j.rser.2020.110595 CercielloF. SennecaO. CoppolaA. ForgioneA. LacovigP. SalatinoP. The Influence of Temperature on the Nature and Stability of Surface-Oxides Formed by Oxidation of Char Renew. Sustain. Energy Rev. 137 2021 110595 10.1016/j.rser.2020.110595 Open DOISearch in Google Scholar

Liang, J.Y., T.T. Qu, K. Xiang, Y. Zhang, S.Y. Chen, Y.C. Cao, M.J. Xie, and X.F. Guo: Microwave Assisted Synthesis of Camellia Oleifera Shell-Derived Porous Carbon with Rich Oxygen Functionalities and Superior Supercapacitor Performance; Appl. Surf. Sci. 436 (2018) 934–940. DOI: 10.1016/j.apsusc.2017.12.142 LiangJ.Y. QuT.T. XiangK. ZhangY. ChenS.Y. CaoY.C. XieM.J. GuoX.F. Microwave Assisted Synthesis of Camellia Oleifera Shell-Derived Porous Carbon with Rich Oxygen Functionalities and Superior Supercapacitor Performance Appl. Surf. Sci. 436 2018 934 940 10.1016/j.apsusc.2017.12.142 Open DOISearch in Google Scholar

eISSN:
2719-9509
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
General Interest, Life Sciences, other, Physics