Sentence examples for material achieved high from inspiring English sources

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For one- or two-level short instrumented posterolateral fusion, our previous studies showed that autologous laminectomy bone (ALB) with synthetic osteoconductive material achieved high fusion success [ 4].

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PTCB, PTCH and PTCO redox-active materials achieved high gravimetric specific capacitances of 147.7, 218.7 and 509.8 F g−1, respectively, at a current density of 2.5 mA cm−2 in three-electrode cell configurations.

The combined effect of an enhanced O redox process and limited TM content often results in small TM-based redox capacities in disordered Li-excess materials, and the remaining capacity is delivered by O redox processes when these materials achieve high capacity (Fig. 1a 6,7,8,9,10.

SnO2/α-Fe2O3 (SFO) nanotubes with different Sn/Fe molar ratios have been synthesized by a facile single-capillary electrospinning route, followed by heat treatment at 500 °C for 2 h, for the improvement of one-dimensional α-Fe2O3 based sensing materials achieving high performance.

Encouragingly, devices with 4T- FN-Br 2 as interfacial material achieved a high power conversion efficiency of 8.4T- FN-Br 2on thieno[3,4T- FN-Br 2ene/benzodithiophene (PTB7): [6,6]-phenyl-C71-butyric asinterfacialster (PC71Bmaterialght-hachievedg layer.

Pre-hardened steel and conventional tool steel were investigated in order to highlight the advantages of selecting correct material to achieve high performance tools with respect of chatter resistance.

This strategy seems a promising route to make full utilization of raw material and achieve high concentration of sugars in the hydrolysate of Jatropha hulls.

To the best of our knowledge, this is the first time a few-layered MoS2/AB composite has been used as an anode material for achieving high specific capacity.

Thanks to the large accessible surface area provided by GO, more ions can transport onto the material surface, achieving high electric-double-layer capacitance in aqueous electrolytes.

We then noticed that the thin film-based oxide materials could be efficient thermoelectric materials to achieve high performance in thermoelectric devices.

Geopolymerization of natural aluminosilicate minerals exhibiting low reactivity typically require supplementary cementitious materials to achieve high strength.

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