Carbon nanotubes (CNT) have advanced chemistry, material science, life science and other research fields. CNTs can be prepared by physical methods such as arc discharge, laser furnace, and chemical vapor deposition techniques. One disadvantage of these physical methods is forming several kinds of CNTs with various diameters, thus uniform CNTs do not form.
Cycloparaphenylenes (CPP), the so-called carbon nanoring, have a cyclic structure formed by linkages of p-substituted benzenes. The CPP attracted researchers in fundamental chemistry and material science, because it is a unit structure of CNT. In fact, Itami et al. successfully synthesized uniform CNTs by a bottom-up procedure starting from CPP as a template compound.1)
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Purity / Analysis Method: | >99.0%(GC) |
Chemical Substance Law (ENCS): 4-17
Product Number: P2207 |
Purity / Analysis Method:
>99.9%(GC)
Product Number: A0405 |
Purity / Analysis Method:
>99.5%(GC)| Chemical Substance Law (ENCS): 4-683
Product Number: A3437 |
Purity / Analysis Method:
>99.5%(GC)| Chemical Substance Law (ENCS): 4-683
Product Number: T3263 |
Purity / Analysis Method:
>99.5%(GC)| Chemical Substance Law (ENCS): 4-17
Product Number: D4401 |
Purity / Analysis Method:
>99.0%(GC)| Chemical Substance Law (ENCS): 4-1873
Product Number: N0951 |
Purity / Analysis Method:
>99.0%(HPLC)
Product Number: P1629 |
Purity / Analysis Method:
>99.0%(GC)
Product Number: P2877 |
Purity / Analysis Method:
>99.0%(GC)| Chemical Substance Law (ENCS): 4-635
Product Number: T2233 |
Purity / Analysis Method:
>99.0%(GC)
Product Number: T0019 |
Purity / Analysis Method:
>99.0%(GC)| Chemical Substance Law (ENCS): 4-17
Product Number: T0020 |
Purity / Analysis Method:
>99.0%(GC)| Chemical Substance Law (ENCS): 4-17
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