#materialschemistry — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #materialschemistry, aggregated by home.social.
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This technology efficiently converts carbon dioxide from unpurified industrial flue emissions directly into carbon monoxide, a primary building block for synthesizing fuels and chemicals.
#ChemicalEngineering #MaterialsChemistry #EnvironmentalScience #sflorg
https://www.sflorg.com/2026/08/chm08032601.html -
This technology efficiently converts carbon dioxide from unpurified industrial flue emissions directly into carbon monoxide, a primary building block for synthesizing fuels and chemicals.
#ChemicalEngineering #MaterialsChemistry #EnvironmentalScience #sflorg
https://www.sflorg.com/2026/08/chm08032601.html -
This technology efficiently converts carbon dioxide from unpurified industrial flue emissions directly into carbon monoxide, a primary building block for synthesizing fuels and chemicals.
#ChemicalEngineering #MaterialsChemistry #EnvironmentalScience #sflorg
https://www.sflorg.com/2026/08/chm08032601.html -
This technology efficiently converts carbon dioxide from unpurified industrial flue emissions directly into carbon monoxide, a primary building block for synthesizing fuels and chemicals.
#ChemicalEngineering #MaterialsChemistry #EnvironmentalScience #sflorg
https://www.sflorg.com/2026/08/chm08032601.html -
This technology efficiently converts carbon dioxide from unpurified industrial flue emissions directly into carbon monoxide, a primary building block for synthesizing fuels and chemicals.
#ChemicalEngineering #MaterialsChemistry #EnvironmentalScience #sflorg
https://www.sflorg.com/2026/08/chm08032601.html -
A novel catalytic process that converts nitrate from wastewater into ammonia using sunlight, a minimal electrical charge of approximately 1.5 volts, and a highly efficient hybrid material composed of MXene and gold nanoparticles.
#MaterialsChemistry #PhysicalChemistry #Nanotechnology #Photochemistry #sflorg
https://www.sflorg.com/2026/07/chm07292601.html -
A novel catalytic process that converts nitrate from wastewater into ammonia using sunlight, a minimal electrical charge of approximately 1.5 volts, and a highly efficient hybrid material composed of MXene and gold nanoparticles.
#MaterialsChemistry #PhysicalChemistry #Nanotechnology #Photochemistry #sflorg
https://www.sflorg.com/2026/07/chm07292601.html -
A novel catalytic process that converts nitrate from wastewater into ammonia using sunlight, a minimal electrical charge of approximately 1.5 volts, and a highly efficient hybrid material composed of MXene and gold nanoparticles.
#MaterialsChemistry #PhysicalChemistry #Nanotechnology #Photochemistry #sflorg
https://www.sflorg.com/2026/07/chm07292601.html -
A novel catalytic process that converts nitrate from wastewater into ammonia using sunlight, a minimal electrical charge of approximately 1.5 volts, and a highly efficient hybrid material composed of MXene and gold nanoparticles.
#MaterialsChemistry #PhysicalChemistry #Nanotechnology #Photochemistry #sflorg
https://www.sflorg.com/2026/07/chm07292601.html -
A novel catalytic process that converts nitrate from wastewater into ammonia using sunlight, a minimal electrical charge of approximately 1.5 volts, and a highly efficient hybrid material composed of MXene and gold nanoparticles.
#MaterialsChemistry #PhysicalChemistry #Nanotechnology #Photochemistry #sflorg
https://www.sflorg.com/2026/07/chm07292601.html -
I have a few questions for #materialsscience and #materialschemistry people. About #solarpower and #solar cells.
I heard a rumor that the perovskite market is still going? I thought we abandoned that kind of unstable crystal physics? Did you somehow solve the water soluble lead problem?
I saw this thing:
https://www.scientific.net/JNanoR.88.45And:
https://pubs.acs.org/doi/10.1021/acsanm.4c05811Why are you not, quantum cutting with a lanthanide gel inside this? Like, wrapping in a hydrophobic polymer first or something, I mean.
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I have a few questions for #materialsscience and #materialschemistry people. About #solarpower and #solar cells.
I heard a rumor that the perovskite market is still going? I thought we abandoned that kind of unstable crystal physics? Did you somehow solve the water soluble lead problem?
I saw this thing:
https://www.scientific.net/JNanoR.88.45And:
https://pubs.acs.org/doi/10.1021/acsanm.4c05811Why are you not, quantum cutting with a lanthanide gel inside this? Like, wrapping in a hydrophobic polymer first or something, I mean.
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Development of a highly efficient three-dimensional covalent organic framework, designated TU-82-Fe, for the selective electrocatalytic reduction of nitrate pollutants into ammonia.
#Chemistry #MaterialsChemistry #ReticularChemistry #Electrocatalysis #sflorg
https://www.sflorg.com/2026/02/chm02062601.html -
Development of a highly efficient three-dimensional covalent organic framework, designated TU-82-Fe, for the selective electrocatalytic reduction of nitrate pollutants into ammonia.
#Chemistry #MaterialsChemistry #ReticularChemistry #Electrocatalysis #sflorg
https://www.sflorg.com/2026/02/chm02062601.html -
Development of a highly efficient three-dimensional covalent organic framework, designated TU-82-Fe, for the selective electrocatalytic reduction of nitrate pollutants into ammonia.
#Chemistry #MaterialsChemistry #ReticularChemistry #Electrocatalysis #sflorg
https://www.sflorg.com/2026/02/chm02062601.html -
Development of a highly efficient three-dimensional covalent organic framework, designated TU-82-Fe, for the selective electrocatalytic reduction of nitrate pollutants into ammonia.
#Chemistry #MaterialsChemistry #ReticularChemistry #Electrocatalysis #sflorg
https://www.sflorg.com/2026/02/chm02062601.html -
Development of a highly efficient three-dimensional covalent organic framework, designated TU-82-Fe, for the selective electrocatalytic reduction of nitrate pollutants into ammonia.
#Chemistry #MaterialsChemistry #ReticularChemistry #Electrocatalysis #sflorg
https://www.sflorg.com/2026/02/chm02062601.html -
https://www.europesays.com/uk/509071/ Distinct mechanochromic and piezochromic behaviors of thermally activated delayed fluorescence 4CzTPN crystal #HighPressure #HumanitiesAndSocialSciences #IRSpectra #MaterialsChemistry #multidisciplinary #OLED #Photochemistry #PhysicalChemistry #Physics #Science #SolidStateFluorescenceLifetime #ThermallyActivatedDelayedFluorescenceMaterials #UK #UnitedKingdom
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Distinct mechanochromic and piezochromic behaviors of thermally activated delayed fluorescence 4CzTPN crystal
Zhang, X., Chi, Z., Zhang, Y., Liu, S. & Xu, J. Recent advances in mechanochromic lumines…
#NewsBeep #News #Physics #AU #Australia #highpressure #HumanitiesandSocialSciences #IRspectra #Materialschemistry #multidisciplinary #OLED #Photochemistry #PhysicalChemistry #Science #Solidstatefluorescencelifetime #Thermallyactivateddelayedfluorescencematerials
https://www.newsbeep.com/au/222318/ -
Distinct mechanochromic and piezochromic behaviors of thermally activated delayed fluorescence 4CzTPN crystal
Zhang, X., Chi, Z., Zhang, Y., Liu, S. & Xu, J. Recent advances in mechanochromic lum…
#NewsBeep #News #Physics #Highpressure #HumanitiesandSocialSciences #IRspectra #Materialschemistry #multidisciplinary #OLED #Photochemistry #PhysicalChemistry #Science #Solidstatefluorescencelifetime #Thermallyactivateddelayedfluorescencematerials #UK #UnitedKingdom
https://www.newsbeep.com/uk/207823/ -
Bright triplet and bright charge-separated singlet excitons in organic diradicals enable optical read-out and writing of spin states
Photoexcitation in the spin triplet manifold is constrained to similar non-bonding to π/π* ‘bandgap’ excitations as for th…
#NewsBeep #News #Physics #AnalyticalChemistry #AU #Australia #biochemistry #Chemistry/FoodScience #Excitedstates #general #Inorganicchemistry #Materialschemistry #OrganicChemistry #PhysicalChemistry #Science
https://www.newsbeep.com/au/30547/ -
https://www.europesays.com/uk/301819/ Bright triplet and bright charge-separated singlet excitons in organic diradicals enable optical read-out and writing of spin states #AnalyticalChemistry #biochemistry #Chemistry/FoodScience #ExcitedStates #general #InorganicChemistry #MaterialsChemistry #OrganicChemistry #PhysicalChemistry #Physics #Science #UK #UnitedKingdom
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New to this platform. Here are my #introduction #introductions
Me: #Mom #Scientist #Chemist #AssistantProfessor #pink
Born & Raised: #Palatinate #Germany
Lived in: #Mainz #SantaBarbara #California #Seoul #SouthKorea
Now Living: #Tempe #Arizona
Work: #ASU #ArizonaStateUniversity #TUDarmstadt
Worked: #UniMainz #UCSB #SNU
Thinking About: #Chemistry #SolidStateChemistry #MaterialsChemistry #MentalHealth #Fitness
Interests: #workouts #food #travel #coffee #craftbeer #wine #cats -
New to this platform. Here are my #introduction #introductions
Me: #Mom #Scientist #Chemist #AssistantProfessor #pink
Born & Raised: #Palatinate #Germany
Lived in: #Mainz #SantaBarbara #California #Seoul #SouthKorea
Now Living: #Tempe #Arizona
Work: #ASU #ArizonaStateUniversity #TUDarmstadt
Worked: #UniMainz #UCSB #SNU
Thinking About: #Chemistry #SolidStateChemistry #MaterialsChemistry #MentalHealth #Fitness
Interests: #workouts #food #travel #coffee #craftbeer #wine #cats -
New to this platform. Here are my #introduction #introductions
Me: #Mom #Scientist #Chemist #AssistantProfessor #pink
Born & Raised: #Palatinate #Germany
Lived in: #Mainz #SantaBarbara #California #Seoul #SouthKorea
Now Living: #Tempe #Arizona
Work: #ASU #ArizonaStateUniversity #TUDarmstadt
Worked: #UniMainz #UCSB #SNU
Thinking About: #Chemistry #SolidStateChemistry #MaterialsChemistry #MentalHealth #Fitness
Interests: #workouts #food #travel #coffee #craftbeer #wine #cats -
New to this platform. Here are my #introduction #introductions
Me: #Mom #Scientist #Chemist #AssistantProfessor #pink
Born & Raised: #Palatinate #Germany
Lived in: #Mainz #SantaBarbara #California #Seoul #SouthKorea
Now Living: #Tempe #Arizona
Work: #ASU #ArizonaStateUniversity #TUDarmstadt
Worked: #UniMainz #UCSB #SNU
Thinking About: #Chemistry #SolidStateChemistry #MaterialsChemistry #MentalHealth #Fitness
Interests: #workouts #food #travel #coffee #craftbeer #wine #cats -
New to this platform. Here are my #introduction #introductions
Me: #Mom #Scientist #Chemist #AssistantProfessor #pink
Born & Raised: #Palatinate #Germany
Lived in: #Mainz #SantaBarbara #California #Seoul #SouthKorea
Now Living: #Tempe #Arizona
Work: #ASU #ArizonaStateUniversity #TUDarmstadt
Worked: #UniMainz #UCSB #SNU
Thinking About: #Chemistry #SolidStateChemistry #MaterialsChemistry #MentalHealth #Fitness
Interests: #workouts #food #travel #coffee #craftbeer #wine #cats