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Nanoconfinement Allows a Less Active Cascade Catalyst to Pr..:
Samuel V. Somerville (14322757) ; Peter B. O'Mara (10097384) ; Tania M. Benedetti (5746283)...
https://figshare.com/articles/journal_contribution/Nanoconfinement_Allows_a_Less_Active_Cascade_Catalyst_to_Produce_More_C_sub_2_sub_Products_in_Electrochemical_CO_sub_2_sub_Reduction/21809719. , 2023
https://figshare.com/articles/journal_contribution/Nanoconfinement_Allows_a_Less_Active_Cascade_Catalyst_to_Produce_More_C_sub_2_sub_Products_in_Electrochemical_CO_sub_2_sub_Reduction/21809719. , 2023
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Electrocatalytic Conversion of Glycerol to Oxalate on Ni Ox..:
Dulce M. Morales (5749079) ; Daliborka Jambrec (1539850) ; Mariya A. Kazakova (11895493)...
https://figshare.com/articles/journal_contribution/Electrocatalytic_Conversion_of_Glycerol_to_Oxalate_on_Ni_Oxide_Nanoparticles-Modified_Oxidized_Multiwalled_Carbon_Nanotubes/17731735. , 2022
https://figshare.com/articles/journal_contribution/Electrocatalytic_Conversion_of_Glycerol_to_Oxalate_on_Ni_Oxide_Nanoparticles-Modified_Oxidized_Multiwalled_Carbon_Nanotubes/17731735. , 2022
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3
Control of Marine Bacteria and Diatom Biofouling by Constan..:
Jana Schwarze (4222684) ; Wolfgang Schuhmann (76166) ; Axel Rosenhahn (321950)
https://figshare.com/articles/journal_contribution/Control_of_Marine_Bacteria_and_Diatom_Biofouling_by_Constant_and_Alternating_Potentials/14748775. , 2021
https://figshare.com/articles/journal_contribution/Control_of_Marine_Bacteria_and_Diatom_Biofouling_by_Constant_and_Alternating_Potentials/14748775. , 2021
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4
Real-Time Measurement of Cellobiose and Glucose Formation d..:
Hucheng Chang (8090126) ; Lena Wohlschlager (9949615) ; Florian Csarman (9949618)...
https://figshare.com/articles/journal_contribution/Real-Time_Measurement_of_Cellobiose_and_Glucose_Formation_during_Enzymatic_Biomass_Hydrolysis/14632627. , 2021
https://figshare.com/articles/journal_contribution/Real-Time_Measurement_of_Cellobiose_and_Glucose_Formation_during_Enzymatic_Biomass_Hydrolysis/14632627. , 2021