Results 261 to 270 of about 3,307,945 (309)
Heating the Cold: Overcoming Immunotherapy Resistance in Microsatellite-Stable Colorectal Cancer: A Systematic Review. [PDF]
Bartusik-Aebisher D +3 more
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Metabolic sovereignty through oxidative hostility: a mechanistic perspective on how cancer engineers stromal dependency via ROS-mediated lysosomal reprogramming. [PDF]
Alfarouk KO, Alshahrani S.
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Starch Selection in Sweet Food Systems: A Texture-Driven Framework Across Confectionery and Dessert Matrices. [PDF]
Pournemati N +3 more
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Full-Spectrum-Activated Confining Aerogel With Dual-Scale Photothermal Regulation for Ultra-Efficient Low-Temperature Water Purification. [PDF]
Ni J +7 more
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Interstellar Ice Chemistry Yields Elusive Sulfinothioic Acid (HS(O)SH). [PDF]
McAnally M +5 more
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Microwave-Controlled Cold Chemistry
Ion-molecule reactions proceed with highly rotational-state-specific rate coefficients and are amenable to stereodynamical control at low temperatures. We introduce a scheme to control cold ion-molecule chemistry with microwaves based on the coherent transfer of molecular rotational-state populations.
Valentina Zhelyazkova +2 more
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Toward Cold Chemistry with Magnetically Decelerated Supersonic Beams
Chemical Reviews, 2012Edvardas Narevicius, Mark G. Raizen
exaly +3 more sources
Physical Chemistry Chemical Physics, 2008
Collisions of molecules in a thermal gas are difficult to control. Thermal motion randomizes molecular encounters and diminishes the effects of external radiation or static electromagnetic fields on intermolecular interactions. The effects of the thermal motion can be reduced by cooling molecular gases to low temperatures. At temperatures near or below
openaire +2 more sources
Collisions of molecules in a thermal gas are difficult to control. Thermal motion randomizes molecular encounters and diminishes the effects of external radiation or static electromagnetic fields on intermolecular interactions. The effects of the thermal motion can be reduced by cooling molecular gases to low temperatures. At temperatures near or below
openaire +2 more sources
2016
Abstract This chapter focuses on the underlying chemistry that takes place in cold or nonthermal plasma. First, the primary electron-induced collision processes are identified for oxygen-nitrogen mixtures mainly at atmospheric pressure. Then the chemistry initiated by the species from these processes is described for the production of nitrogen oxides ...
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Abstract This chapter focuses on the underlying chemistry that takes place in cold or nonthermal plasma. First, the primary electron-induced collision processes are identified for oxygen-nitrogen mixtures mainly at atmospheric pressure. Then the chemistry initiated by the species from these processes is described for the production of nitrogen oxides ...
openaire +3 more sources

