Sentence examples for cf diameter from inspiring English sources

Exact(8)

Therefore, the transition from hopping to band transport will occur, with a critical oxygen vacancy concentration of about 1.5 × 1021 cm−3 corresponding to a local composition HfO2 – x with x = 0.05. Figure 23e shows the effect of atomic-sized changes in the CF diameter on the obvious change of the CF conductance.

The cylindrical CF diameter was approximately 34 nm, which is useful for nanoscale non-volatile crossbar array applications.

Similar CF diameter of 10 30 nm in a Pt/NiO/Pt structure at a CC of 1 mA was reported by Yun et al. [48].

Celano et al. [13] reported about a 28-nm CF diameter using a Cu/Al2O3/TiN structure at a CC of 10 μA.

Yazdanparast et al. [52] reported the 70-nm CF diameter using a Au/Cu2O3/Au structure at a CC of 10 mA.

According to our previous report [3], the CF diameter is approximately 70 nm in a Cu/GeOx/W structure at a CC of >1 mA.

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Similar(52)

Single carbon fibers (CFs, diameter was about 5 10 μm and the length 15 30 mm) were taken out of the commercial carbon cloth LU-3 (Ukraine) produced by carbonization of polyacrylonitrile cloth and characterized with Young's modulus E~250 GPa and tensile strength 2.5 3.0 GPa.

The carbon materials tested included carbon fibers (CF; 10 μm diameter), carbon nanofibers (CNF; 100 nm diameter), multi-walled carbon nanotubes (MWCNT; 10 nm diameter), and single-walled carbon nanotubes (SWCNT; 1 nm diameter).

The property of spinodal dewetting shown in Fig. 13 cannot be determined solely by the mean droplet diameter (cf. Fig. 14).

A simulation based on SCLC conduction in the low field, F-N tunneling in the high field for both HRS and LRS, and oxygen-vacant CF with a diameter of ~34 nm was developed for all non-linear I-V switching characteristics, which will be very useful to understand the switching mechanism for other RRAM structures and for selector-less nanoscale crossbar architectures.

The data presented here support this hypothesis and further demonstrate that this biofilm preference may even be true for planktonic cultures, where we have observed that the majority of the P. aeruginosa log phase population exists in aggregates with sizes between 10 400 µm diameter (cf. Figure 1).

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