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62. A new framework for indoor air chemistry measurements: Towards a better understanding of indoor air pollution

Carslaw, N., G. Bekö, S. Langer, C. Schoemaecker, V. G. Mihucz, M. Dudzinska, P. Wiesen, S. Nehr, K. Huttunen, X. Querol and D. Shaw

     Indoor Environments 1(1): 100001.https://doi.org/10.1016/j.indenv.2023.100001 (2024)

61. Rate constant and branching ratio of the reaction of ethyl peroxy radicals with methyl peroxy radicals.

     Cuihong Zhang, Chuanliang Li, Weijun Zhang, Xiaofeng Tang, Laure Pillier, et al..

     Physical Chemistry Chemical Physics, 25 (27),pp.17840−17849 (2023)

60. Perspective: The atmosphere of the human body

C Schoemaecker and N. Carslaw

Science 377(6610): 1045-1046.doi:10.1126/science.add8461 (2022)

59. Techniques for measuring indoor radicals and radical precursors

E. G Alvarez, N. Carslaw, S. Dusanter, P. Edwards, V. Gábor Mihucz, D. Heard, J. Kleffmann, S. Nehr, C. Schoemacker and D. Venables

Applied Spectroscopy Reviews 57(7): 580.10.1080/05704928.2022.2087666 (2022)

58. Rate Constant and Branching Ratio for the Reactions of the Ethyl Peroxy Radical with Itself and with the Ethoxy Radical

M Shamas, M. Assali, C. Zhang, X. Tang, W. Zhang, L. Pillier, C. Schoemaecker and C. Fittschen ACS Earth and Space Chemistry 6(1): 181-188.10.1021/acsearthspacechem.1c00343 (2022).

57. Absolute Absorption Cross-Section of the Ã←X˜ Electronic Transition of the Ethyl Peroxy Radical and Rate Constant of Its Cross Reaction with HO2

C Zhang, M Shamas, M Assali, X Tang, W Zhang, L Pillier, C Schoemaecker and C Fittschen

Photonics, 88, 296 (2021)

56. Atmospheric reactivity of biogenic volatile organic compounds in a maritime pine forest during the LANDEX episode 1 field campaign

K Mermet, E Perraudin, S Dusanter, S. Sauvage, T. Léonardis, P-M Flaud, S. Bsaibes, J Kammer, V Michoud, A Gratien, M Cirtog, M Al Ajami, F Truong, S Batut, C Hecquet, J-F Doussin,

C Schoemaecker, V Gros, N Locoge, E Villenave

Science of The Total Environment, 756, 144129 (2021)

55. Water does not catalyze the reaction of OH radicals with ethanol

     I Weber, H Bouzidi, B Krumm, C Schoemaecker, A Tomas, C Fittschen

Physical Chemistry Chemical Physics, 22,14,7165-7168 (2020)

54. Variability of OH reactivity in the Landes maritime Pine forest: Results from the LANDEX campaign 2017

S Bsaibes, M Al Ajami, K Mermet, F Truong, S Batut, C Hecquet, S Dusanter, T Léonardis, S Sauvage, J Kammer, P-M Flaud, E Villenave, N Locoge, V Gros, C Schoemaecker

Atmospheric Chemistry and Physics, 20,3,1277-1300 (2020)

53. Investigation on the near-field evolution of industrial plumes from metalworking activities

A Setyan, P. Flament, N. Locoge, K. Deboudt, V. Riffault, L. Y. Alleman, C. Schoemaecker, J. Arndt, P. Augustin, R. M. Healy, J. C. Wenger, F. Cazier, H. Delbarre, D. Dewaele, P. Dewalle, M. Fourmentin, P. Genevray, C. Gengembre, T. Leonardis, H. Marris and S. Mbengue

Science of The Total Environment 668, 443-456, (2019).

52. Water Vapor Does Not Catalyze the Reaction between Methanol and OH Radicals.

W Chao, J. Jr-Min Lin, K. Takahashi, A. Tomas, L. Yu, Y. Kajii, S. Batut, C. Schoemaecker and C. Fittschen

Angewandte Chemie, 131, 15, 5067-5071 (2019)

51. ROOOH: the Missing Piece of the Puzzle for OH measurements in low NO Environments.

C Fittschen, M Al Ajami, S Batut, V Ferracci, S Archer-Nicholls, AT Archibald, C Schoemaecker Atmos. Chem. Phys., 19, 1, 349-362 (2019)

50.       Experimental and theoretical investigation of the reaction of RO2 radicals with OH radicals: Dependence of the HO2 yield on the size of the alkyl group.

     E Assaf, C Schoemaecker, L Vereecken, C Fittschen

     International Journal of Chemical Kinetics, 50, 670-680 (2018)

49. The reaction of hydroxyl and methylperoxy radicals is not a major source of atmospheric methanol.

RL Caravan, MAH Khan, J Zador, L Sheps, IO Antonov, B Rotavera, K Ramasesha, K Au, M-W Chen, D Rosch, DL Osborn, C Fittschen, C Schoemaecker, M Duncianu, A Grira, S Dusanter, A Tomas, CJ Percival, DE Shallcross, CA Taatjes

Nature Communications 9: 4343. (2018)

48.Impact of material emissions and sorption of volatile organic compounds on indoor air quality in a low energy building: Field measurements and modeling.

M Rizk, F Guo, M Verriele, M Ward, Dusanter S, N Blond, N Locoge, Schoemaecker C

Indoor Air 28: 924-935 (2018)

47. Absorption Spectrum and Absorption Cross Sections of the 21 band of HO2 between 20 and 760 Torr Air in the Range 6636 and 6639 cm-1.

E. Assaf, L Liu, C Schoemaecker, C Fittschen.

Journal of Quantitative Spectroscopy and Radiative Transfer, 211,107-114 (2018).

 

46. Impact of the spectral and spatial properties of natural light on indoor gas-phase chemistry: Experimental and modeling study.

M Blocquet, F Guo, M Mendez, M Ward, S Coudert, S Batut, C Hecquet, N Blond, C Fittschen, C Schoemaecker

Indoor Air, 28,426-440 (2018)

 

45. The reaction of fluorine atoms with methanol: yield of CH3O/CH2OH and rate constant of the reactions CH3O + CH3O and CH3O + HO2.

E Assaf, C Schoemaecker, L Vereecken, C Fittschen

Physical Chemistry Chemical Physics, doi: 10.1039/C7CP05770A, (2018)

 

44. Reactive indoor air chemistry and health—A workshop summary.

JR Wells, C Schoemaecker, N Carslaw, MS Waring, JE Ham, I Nelissen, P Wolkoff

International Journal of Hygiene and Environmental Health, 220, 1222-1229 (2017)

 

43.Comparison of OH reactivity measurements in the atmospheric simulation chamber SAPHIR.

H Fuchs, A Novelli, M Rolletter, A Hofzumahaus, EY Pfannerstill, S Kessel, A Edtbauer, J Williams, V Michoud, S Dusanter, N Locoge, N Zannoni, V Gros, F Truong, R Sarda-Esteve, DR Cryer, CA Brumby, LK Whalley, D Stone, PW Seakins, DE Heard, C Schoemaecker, M Blocquet, S Coudert, S Batut, C Fittschen, AB Thames, WH Brune, C Ernest, H Harder, JBA Muller, T Elste, D Kubistin, S Andres, B Bohn, T Hohaus, F Holland, X Li, F Rohrer, A Kiendler-Scharr, R Tillmann, R Wegener, Z Yu, Q Zou, A Wahner

Atmospheric Measurement Techniques, 10, 4023-4053 (2017)

 

42.Rate constants of the reaction of C2–C4 peroxy radicals with OH radicals.

E Assaf, S Tanaka, Y Kajii, C Schoemaecker, C Fittschen

Chemical Physics Letters, 684, 245-249 (2017)

 

41.The Reaction between CH3O2 and OH Radicals: Product Yields and Atmospheric Implications.

E Assaf, L Sheps, L Whalley, D Heard, A Tomas, C Schoemaecker, C Fittschen

Environmental Science & Technology, 51, 2170-2177 (2017)

 

40.Measurement of line strengths in the à 2A’ ← X˜ 2A” transition of HO2 and DO2.

E Assaf, O Asvany, O Votava, S Batut, C Schoemaecker, C Fittschen

Journal of Quantitative Spectroscopy and Radiative Transfer, 201, 161-170 (2017)

 

39. Analysis of HONO formation mechanisms indoors based on measurements and the INCA-Indoor

model

M. Mendez, D. Amedro, N. Blond, D. Hauglustaine, P. Blondeau, C. Afif, C. Fittschen,

C. Schoemaecker

Indoor Air, 27, 443-451 (2017)

 

38. Identification of the major HOx radical pathways in an indoor air environment

M. Mendez, D. Amedro, N. Blond, D. Hauglustaine, P. Blondeau, C. Afif, C. Fittschen,

C. Schoemaecker

Indoor Air, 27, 434-442 (2017)

 

37. Rate Constant of the Reaction between CH3O2 Radicals and OH Radicals Revisited

E. Assaf, B. Song, A. Tomas, C. Schoemaecker, C. Fittschen

The Journal of Physical Chemistry A, 120, 8923−8932 (2016)

 

36. Portable novel micro-device for BTEX real-time monitoring: assessment during a field campaign in a low consumption energy junior high school classroom

R. Nasreddine, V. Person, C. Serra, C. Schoemaecker, S. Le Calvé

Atmospheric Environment, 126, 211-217 (2016)

 

35. The MERMAID study: indoor and outdoor average pollutant concentrations in 10 low-energy school buildings in France.

M Verriele, C Schoemaecker, B Hanoune, N Leclerc, S Germain, V Gaudion, N Locoge

Indoor Air, 26, 702-713 (2016)

 

34. Fast Sorption Measurements of VOCs on Building Materials: Part 2 -Comparison between FLEC and CLIMPAQ Methods

M. Rizk, M. Verriele, M. Mendez, N. Blond, S. Dusanter, C. Schoemaecker, P. Blondeau, S. Le Calvé, N. Locoge.

Building and Environment, 99, 239-251 (2015)

 

33. Fast sorption measurements of volatile organic compounds on building materials: Part 1 - Methodology developed for field applications

M. Rizk, M. Verriele, S. Dusanter, C. Schoemaecker, S. Le Calvé, N. Locoge

Building and Environment, 99, 200-209 (2015)

 

32. Assessment of the impact of oxidation processes on indoor air pollution using the new time-resolved INCA-Indoor model

M. Mendez, N. Blond, P. Blondeau, S. Schoemaecker, D. Hauglustaine

Atmospheric Environment, 122, 521-530 (2015)

 

31. Intercomparison of the Comparative Reactivity Method (CRM) and Pump-Probe technique for

measuring total OH reactivity in an urban environment

R. F. Hansen, M. Blocquet, C. Schoemaecker, T. Léonardis, N. Locoge, C. Fittschen, B. Hanoune,

P. S. Stevens, V. Sinha, S. Dusanter

Atmospheric Measurement Technique, 8 (10), 4243 (2015)

 

30. Experimental Determination of the Rate Constant of the Reaction of C2H5O2 with OH Radicals

E. P. Faragó, B. Viskolcz, C. Schoemaecker, C. Fittschen

Chemical Physics Letters, 619, 196 (2015)

 

29. Photolysis of CH3CHO at 248 nm: Evidence of Triple Fragmentation from Primary Quantum Yield of

CH3 and HCO radicals and H atoms

P. Morajkar, A. Bossolasco, C. Schoemaecker, C. Fittschen

The Journal of Chemical Physics, 140, 214308 (2014)

 

28. Rate constant of the reaction between CH3O2 and OH radicals

A. Bossolasco, E. P. Faragó, C. Schoemaecker, C. Fittschen

Chemical Physics Letters, 593, 7 (2014)

 

27. Direct Measurement of the Equilibrium Constants of the Reaction of Formaldehyde and

Acetaldehyde with HO2 Radicals

P. Morajkar, C. Schoemaecker, M. Okumura, C. Fittschen

International Journal of Chemical Kinetics, DOI: 10.1002/kin.20817 (2013)

 

26. Quantitative IBBCEAS Measurements of I2 in the Presence of Aerosols

O. Johansson, H. Mutelle, A. E. Parker, S. Batut, P. Demaux, C. Schoemaecker, C. Fittschen

Applied Physics B: Lasers and Optics, DOI: 10.1007/s00340-013-5536-9 (2013)

 

25. Absorption Spectrum and Absolute Absorption Cross Sections of CH3O2 Radicals and CH3I

molecules in the wavelength range 7473 – 7497 cm-1

E. P. Faragó, B. Viskolcz, C. Schoemaecker, C. Fittschen

Journal of Physical Chemistry A, 117 (48), 12802-12811 (2013)

 

24. Quantification of OH and HO2 Radicals during the Low-Temperature Oxidation of Alkanes by FAGE Technique

M. Blocquet, C. Schoemaecker, D. Amedro, O. Herbinet, F. Battin-Leclerc, C. Fittschen

Proceedings of the National Academy of Sciences, 110 (50), 20014-20017 (2013)

 

23. Experimental and Modelling Study of the Oxidation of n-Butane in a Jet Stirred Reactor using cw-CRDS Measurements

C. Bahrini, P. Morajkar, C. Schoemaecker, O. Frottier, O. Herbinet, P.-A. Glaude, F. Battin-Leclerc, C. Fittschen

Physical Chemistry Chemical Physics, 15 (45), 19686-19698 (2013)

 

22. Unexpectedly High Indoor Hydroxyl Radical Concentrations associated with Nitrous Acid

E. Gomez Alvarez, D. Amedro, C. Afif, S. Gligorovski, C. Schoemaecker, C. Fittschen,

J.-F. Doussin, H. Wortham

Proceedings of the National Academy of Sciences, 110 (33), 13294-13299 (2013)

 

21 Note: A laser-flash photolysis and laser-induced fluorescence detection technique for measuring total HO2 reactivity in ambient air.

K Miyazaki, Y Nakashima, C Schoemaecker, C Fittschen, Y Kajii

Review of Scientific Instruments, 84, 076106 (2013)

 

20. Absolute Absorption Cross sections of selected lines of formaldehyde, CH2O, around 6625 cm−1

P. Morajkar, C. Schoemaecker, C. Fittschen

Journal of Molecular Spectroscopy, 281, 18-23 (2012)

 

19. Quantification of hydrogen peroxide during the low-temperature oxidation of alkanes

C. Bahrini, O. Herbinet, P.-A. Glaude, C. Schoemaecker, C. Fittschen, F. Battin-Leclerc

JACS, 134, 11944-11947 (2012)

 

18. Detection of some stable species during the oxidation of methane by coupling a jet-stirred reactor (JSR) to cw-CRDS

C. Bahrini, O. Herbinet, P.-A. Glaude, C. Schoemaecker, C. Fittschen, F. Battin-Leclerc

Chem. Phys. Letters, 534 (0), 1-7 (2012)

 

17. Photocatalytic Decomposition of H2O2 on Different TiO2 Surfaces Along with the Concurrent Generation of HO2 Radicals Monitored Using Cavity Ring Down Spectroscopy

J. Yi, C. Bahrini, C. Schoemaecker, C. Fittschen, W. Choi

Journal of Physical Chemistry C, 116 (18), 10090-10097 (2012)

 

16. Formation of HO2 radicals from the 248 nm Two-Photon Excitation of different aromatic hydrocarbons in the presence of O2

C. Jain, P. Morajkar, C. Schoemaecker, C. Fittschen

Journal of Physical Chemistry A, 116 (24), 6231-6239 (2012)

 

15. Atmospheric and kinetic studies of OH and HO2 by the FAGE technique

D. Amedro, K. Miyazaki, A. Parker, C. Schoemaecker, C. Fittschen

Journal of Environmental Sciences, 24 (1), 78-86 (2012)

 

14. Yield of HO2 radicals in the OH-initiated oxidation of SO2

C. Jain, C. Schoemaecker, C. Fittschen

Zeitschrift für Physikalische Chemie, 225 (9-10), 1105-1115 (2011)

 

13. Measurement of absolute absorption cross sections for HONO in the near infrared region by cw-CRDS technique coupled to laser photolysis

C. Jain, P. Morajkar, C. Schoemaecker, B. Viskolcz, C. Fittschen

The Journal of Physical Chemistry A, 115 (39), 10720-10728 (2011)

 

12. Direct Observation of OH Radicals after 565 nm multi-photon excitation of NO2 in the presence of H2O

D. Amedro, A. E. Parker, C. Schoemaecker, C. Fittschen

Chemical Physics Letters, 513 (1-3), 12-16 (2011)

 

11. OH reactivity measurements by FAGE

A. Parker, D. Amedro, C. Schoemaecker, C. Fittschen

EEMJ-Journal of Environmental Engineering and Management, 10 (1), 107-114 (2011)

 

10. Simultaneous, time resolved measurements of OH and HO2 radicals by coupling of high repetition rate LIF and cw-CRDS techniques to a laser photolysis reactor and its application to the photolysis of H2O2

A. Parker, C. Jain, C. Schoemaecker, P. Szriftgiser, O. Votava, C. Fittschen

Applied Physics B: Lasers and Optics, 103 (3), 725-733 (2011)

 

9. HO2 radical formation from the photoexcitation of a benzene and oxygen mixture at 248 nm; an energy dependence study

C. Jain, A. Parker, C. Schoemaecker, C. Fittschen

ChemPhysChem, 11 (18), 3867-3873 (2010)

 

8. Direct detection of HO2 radicals in the vicinity of TiO2 photocatalytic surfaces using cw-CRDS

C Bahrini, A Parker, C Schoemaecker, C Fittschen

Applied Catalysis B: Environmental, 99 (3-4), 413-419 (2010)

 

7.   Kinetics of the reaction of OH radicals with CH3OH and CD3OD studied by laser photolysis coupled to high repetition rate laser induced fluorescence

A Parker, C Jain, C. Schoemaecker, C Fittschen

Reaction Kinetics and Catalysis Letters, 96 (2), 291-297 (2009)

           

6.  On the direct formation of HO2 radicals after 248 nm irradiation of benzene C6H6 in the presence of O2

A Aluculesei, A Tomas, C Schoemaecker, C Fittschen

Applied Physics B: Lasers and Optics, 92 (3), 379-385 (2008)

 

5.         (2+1) REMPI on molecular nitrogen through the 1S+g (II)-state

J. Bominaar, C. Schoemaecker, N. Dam, J.J Ter Meulen, G.C. Groenenboom

Chemical Physics Letters 435, 242-246 (2007)

 

4.  Determination of the ratio of soot refractive index function E(m) at the two wavelengths 532 and 1064 nm by Laser Induced Incandescence

E. Therssen E., Y. Bouvier Y., C.Schoemaecker-Moreau, X. Mercier, P. Desgroux, M. Ziskind, C. Focsa

Applied Physics B 89, 417-427 (2007)

 

3.  Two-color laser induced incandescence and Cavity Ring-Down Spectroscopy for sensitive and quantitative imaging of soot and PAHs in flames.

Schoemaecker-Moreau C, Therssen E. Mercier X., Pauwels J-F., Desgroux P.

Applied Physics B 78, 485-492 (2004)

 

2. Quantitative measurements of CH radical in atmospheric sooting diffusion flames.

Moreau (ép Schoemaecker) C., Therssen E., Desgroux P., Pauwels J-F. Chapput A., Barg M.

Applied Physics B 76, 597- 602 (2003)

 

1. Quantification of stable minor species in confined flames by cavity ring-down spectroscopy :application to NO

Pillier L., Moreau (ép Schoemaecker) C. Mercier X., Desgroux P., Pauwels J-F.

Applied Physics B 74, 427-434, 2002