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The data retention of approximately 103 s is also observed under a low operation current of 1 nA (Figure 9b).
Under a low operation potential −0.05 V, this sensor exhibits an ultrasensitive ability (1726.8 μA mM−1 cm−2), stability and low detection limit (1.5 μM) in H2O2 analysis.
The cross-point memory device has self-compliance bipolar resistive switching phenomena of consecutive 100 cycles with narrow distribution of high resistance state (HRS), low resistance state (LRS), good device-to-device uniformity, excellent P/E cycles of >10,000, and good data retention with resistance ratio of 100 after 104 s under a low operation voltage of ±3.5 V.
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These devices showed forming-free resistive switching with excellent switching uniformity (>95% yield) over 1,000 dc cycles (approximately 1,000 ac cycles) under low operation voltage/current of ±2 V/200 μA.
The cross-point memory device shows self-compliance bipolar resistive switching phenomena of consecutive 100 cycles with narrow distribution of LRS and HRS, excellent P/E cycles of >10,000, and good data retention of >104 s with resistance ratio >102 under low operation voltage of ±3 V.
The saturated mean field-effect mobility of 0.16 cm2/V s of the short-channel polymer devices remains over one month resulting in air-stable OFET arrays with high on/off ratio over 106 and powerful current density exceeding 0.3 A/cm2 under low operation voltage, both of which meet the requirements for such applications as driving organic light-emitting diodes in active-matrix displays.
The advantages of MPPC over conventional phototubes are its small size, low operation voltage, functionality under a high magnetic field, and low cost.
Repeatable switching cycles and data retention of approximately 103 s under a low CC of 1 nA were obtained for the Cu TE devices, which are very useful for low-power operation of high-density nonvolatile nanoscale memory applications.
We detail the design and operation of a compact, discharge light polarimeter for metastability exchange optical pumping of 3He gas near 1 torr under a low magnetic field.
It is demonstrated that a low-pressure operation is feasible with the fuel cell device under test, but that its range of stable operation changes between both operating modes.
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