Reprospher (Maisch) |
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(Ultrareines Kieselgel mit modernsten Modifizierungen.
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% Carbon |
Endcapping |
Mat. No. |
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with 100A° pores | |||||||
Reprospher 100 C18, 1.8 µm | 16% |
endc. |
rs118.9e. |
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Reprospher 100 C18, 2 µm | 16% |
endc. |
rs12.9e. |
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Reprospher 100 C18, 2.5 µm | 16% |
endc. |
rs125.9e. |
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Reprospher 100 C18, 3 µm | 16% |
endc. |
rs13.9e. |
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Reprospher 100 C18, 5 µm | 16% |
endc. |
rs15.9e. |
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Reprospher 100 C18, 10 µm | 16% |
endc. |
rs10.9e. |
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Reprospher 100 C18-DE, 1.8 µm | 16% |
double endc.* |
rs118.9de. |
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Reprospher 100 C18-DE, 2 µm | 16% |
double endc.* |
rs12.9de. |
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Reprospher 100 C18-DE, 2.5 µm | 16% |
double endc.* |
rs125.9de. |
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Reprospher 100 C18-DE, 3 µm | 16% |
double endc.* |
rs13.9de | ||||
Reprospher 100 C18-DE, 5 µm | 16% |
double endc.* |
rs15.9de. |
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Reprospher 100 C18-DE, 10 µm | 16% |
double endc.* |
rs10.9de | ||||
Reprospher 100 C18-Aqua, 1.8 µm | 12% |
pol.Gr.+ endc. |
rs118.9aq. |
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Reprospher 100 C18-Aqua, 2 µm | 12% |
pol.Gr.+ endc. |
rs12.9aq. |
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Reprospher 100 C18-Aqua, 2.5 µm | 12% |
pol.Gr.+ endc. |
rs125.9aq. |
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Reprospher 100 C18-Aqua, 3 µm | 12% |
pol.Gr.+ endc. |
rs13.9aq. |
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Reprospher 100 C18-Aqua, 5 µm | 12% |
pol.Gr.+ endc. |
rs15.9aq. |
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Reprospher 100 C18-Aqua, 10 µm | 12% |
pol.Gr.+ endc. |
rs10.9aq. |
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Reprospher 100 C18-Aqua-DE, 3 µm | 12% |
pol.Gr.+ double endc. |
rs13.9aq. |
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Reprospher 100 C18-NE, 1.8 µm | 15% |
not endc. |
rs118.90. |
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Reprospher 100 C18-NE, 5 µm | 15% |
not endc. |
rs15.90 |
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Reprospher 100 C18-T, 5 µm | 20% |
polymer-C18-de |
rs15.9t |
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Reprospher 100 Phenyl, 1.8 µm | 9% |
double endc.* |
rs118.pde. |
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Reprospher 100 Phenyl, 2 µm | 9% |
double endc.* |
rs12.pde. |
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Reprospher 100 Phenyl, 2.5 µm | 9% |
double endc.* |
rs125.pde. |
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Reprospher 100 Phenyl, 3 µm | 9% |
double endc.* |
rs13.pde. |
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Reprospher 100 Phenyl, 5 µm | 9% |
double endc.* |
rs15.pde. |
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Reprospher 100 Phenyl, 10 µm | 9% |
double endc.* |
rs10.pde. |
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Reprospher 100 C8-Aqua, 1.8 µm | 8% |
pol.Gr.+ endc. |
rs118.8aq. |
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Reprospher 100 C8-Aqua, 2 µm | 8% |
pol.Gr.+ endc. |
rs12.8aq. |
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Reprospher 100 C8-Aqua, 2.5 µm | 8% |
pol.Gr.+ endc. |
rs125.8aq. |
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Reprospher 100 C8-Aqua, 3 µm | 8% |
pol.Gr.+ endc. |
rs13.8aq. |
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Reprospher 100 C8-Aqua, 5 µm | 8% |
pol.Gr.+ endc. |
rs15.8aq. |
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Reprospher 100 C8-Aqua, 10 µm | 8% |
pol.Gr.+ endc. |
rs10.8aq. |
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Reprospher 100 C8, 1.8 µm | 10% |
endc. |
rs118.8e. |
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Reprospher 100 C8, 2 µm | 10% |
endc. |
rs12.8e |
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Reprospher 100 C8, 2.5 µm | 10% |
endc. |
rs125.8e |
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Reprospher 100 C8, 3 µm | 10% |
endc. |
rs13.8e. |
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Reprospher 100 C8, 5 µm | 10% |
endc. |
rs15.8e. |
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Reprospher 100 C8, 10 µm | 10% |
endc. |
rs10.8e. |
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Reprospher 100 C8-DE, 1.8 µm | 10% |
double endc.* | rs118.8de. | ||||
Reprospher 100 C8-DE, 2 µm | 10% |
double endc.* | rs12.8de. | ||||
Reprospher 100 C8-DE, 2.5 µm | 10% |
double endc.* | rs125.8de. | ||||
Reprospher 100 C8-DE, 3 µm | 10% |
double endc.* | rs13.8de. | ||||
Reprospher 100 C8-DE, 5 µm | 10% |
double endc.* | rs15.8de. | ||||
Reprospher 100 C8-NE, 5 µm | 9% |
not endc. |
rs.15.80 |
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Reprospher 100 C4-Aqua, 5 µm | 6% |
pol.Gr.+ endc. |
rs15.4aq. |
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Reprospher 100 CN, 1.8 µm | rs118.C0 |
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Reprospher 100 CN, 3 µm | rs13.C0 |
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Reprospher 100 CN, 5 µm | rs15.C0 |
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Reprospher HILIC-P, 5 µm | HILIC for Peptides |
rs15.HCP | |||||
Reprospher HILIC-A, 5 µm | HILIC for Acids |
rs15.HCA |
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Reprospher Acidosil-S | SO3H-Silica |
rs15.sh |
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Reprospher Acidosil-C | COOH-Silica |
rs15.ch |
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Wide-Pore Phases (for Biopolymers, Proteins + Peptides) | |||||||
with 200A° pores | |||||||
Reprospher 200 C18-DE, 3 µm | 10 % |
double endc.* |
rs23.9de |
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Reprospher 200 C18-Aqua, 5 µm | 5 % |
pol.Gr.+ endc. |
rs25.9aq |
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with 300A° pores | |||||||
Reprospher 300 C18-Aqua, 5 µm | 4 % |
pol.Gr.+ endc. |
rs35.9aq |
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Reprospher 300 C18, 5 µm | 6 % |
endc. |
rs35.9e. |
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Reprospher 300 C18-TN, 5 µm | 11 % |
polymer-C18 |
rs35.9tn. |
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*Modified with 2 endcappings: the first endcapping takes place in the liquid-form and the second additional endcapping takes place in gas-form, which makes the phases much more based deactivated than conventional single step endcapping techniques. These phases are more "inert" and more pH stable than those manufactured using with conventional endcapping techniques. |
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