Data underpinning publication in Chemical Communications - 'Novel time-temperature and 'consume-within' indicator based on gas-diffusion', Mills, A., Graham, A., Hawthorne, D. & Lawrie, K. 10 Nov 2016 In : Chemical Communications. 4 p.
Mills, A. (Creator), Hawthorne, D. (Creator), Graham, A. (Creator), Lawrie, K. (Creator) (11 Nov 2016). Novel time-temperature and 'consume-within' indicator based on gas-diffusion. Queen's University Belfast. Figure_3_Normalised_absorbance_decay_profiles_for_charged_indicator_recovering_at_temperatures_between_2_and_22_degrees_C(.xlsx), Figure_2_Time_vs_Absorbance_data_for_100_pphr_film_activation_at_room_temperature(.xlsx), Figure_4_Photographs_of_an_opened_package_of_beef_with_TTI_indicator_over_72_h(.docx), Figure_1_Time_vs_Absorbance_data_for_100_pphr_film_charging_at_room_temperature(.xlsx), MASTER(.docx). 10.17034/a17528e0-4587-4c74-aef6-eaaf421704f1