A revolutionary bench-top standalone hydrogenation reactor, uniquely combining continuous-flow microchemistry with endogenous on-demand hydrogen generation and a disposable catalyst cartridge system. It allows fast and cost-efficient hydrogenation with superior yield when compared to conventional methods.
Continuous hydrogenation reactions are performed in a flow system. The hydrogen gas necessary for the reaction is generated in-situ. Reactions take place on disposable proprietary CatCarts®, packed catalyst columns modeled after conventional HPLC systems, ensuring excellent lab integration and ease of use. Every aspect of the operation on the H-Cube® is controlled and monitored using a touch-screen panel. With no external storage of hydrogen necessary, the H-Cube® may be used safely in almost any laboratory environment, while its minimal "footprint" maximizes available bench space.
Key Features
Advantages
Safer
Efficient
Convenient
The award-winning H-Cube® is now available in stainless steel.
The new model features a number of additions to the original version:
H-Cube® Application Note - Hydrogenation of Different Functional Groups
H-Cube® Application Note - Hydrogenation of Cinnamaldehyde Using Nanoparticle Based Catalyst produced by ComErgen, Inc.
H-Cube® Application Note - Hydrogenation of Dihydropyrimidones
H-Cube® Application Note - Deprotection Reactions
H-Cube® Application Note - Deuteration Reactions
H-Cube® Application Note - Asymmetric Hydrogenation
H-Cube® Application Note - Saturation of Functionalized Pyridines ![]()
O-Cube™ and H-Cube® Application Note - Ozonolysis Combined with Hydrogenation ![]()
H-Cube® Application Note - Catalyst Screening for Sonogashira Coupling ![]()
Links:
[1] http://www.thalesnano.com/products/demonstration-request
[2] http://www.thalesnano.com/products/accessories/timer_and_valve_upgrade
[3] http://www.thalesnano.com/files/file/brochures/products/ThalesNano_H_Cube.pdf
[4] http://www.thalesnano.com/files/file/brochures/applications/ThalesNano_H_Cube_App_Note.pdf
[5] http://www.thalesnano.com/files/file/brochures/applications/H-Cube_App_Note_Cinnamaldehyde.pdf
[6] http://www.comergen.net/
[7] http://www.thalesnano.com/files/H-Cube_App_Note_Dihydropyrimidone(1).pdf
[8] http://www.thalesnano.com/files/file/brochures/applications/HC_App_Note_Deprotection_v_1_1.pdf
[9] http://www.thalesnano.com/files/file/brochures/applications/HC_App_Note_Deuteration.pdf
[10] http://www.thalesnano.com/files/file/brochures/applications/H-Cube_Application_Note_SuzukiSonogashira.pdf
[11] http://www.thalesnano.com/files/file/brochures/applications/ThalesNanoH-CubeAsymmetric.pdf
[12] http://www.thalesnano.com/files/file/brochures/applications/ThalesNanoH-CubeRingSaturationApplicationNoteJav2.pdf
[13] http://www.thalesnano.com/files/file/brochures/applications/O-Cube_And_H-Cube_Application_Note.pdf
[14] http://www.thalesnano.com/files/file/brochures/applications/H-Cube_Sonogashira_ApplicationNote.pdf
[15] http://www.thalesnano.com/files/file/solvent_compatibility.pdf