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The performance for GaN-based light-emitting diodes (LEDs) with specially designed composite electron blocking layers (CEBLs) that are inserted between the InGaN/GaN multiple quantum wells (MQWs) and the top p-GaN layer was studied intensively.
By use of BBO, calcite crystals together with specially designed composite phase delay plates and dichroic beamsplitters, high quality third harmonic ultra-violet pulses within 300 nm can be generated by the two schemes.
Compared with the composite laminate with a normally drilled hole, it was found that the strength of the specially designed composite laminate increases markedly, which is of important significance to the design of high-performance composites.
GaN thin films, undoped, Si- and Mg-doped, and InGaN GaN multiple quantum well (MQW) structures have been grown on Si (001) substrates with specially designed composite intermediate layers consisting of an ultra-thin amorphous Si layer and a GaN/AlGaN multilayered buffer by low pressure metalorganic chemical vapor deposition.
The Wilhelm Tell technique is a novel instrumented anterior lumbar interbody fusion (ALIF) procedure using a specially designed composite carbon fibre cage and a single short-threaded cancellous screw that obliquely passes through the upper adjacent vertebral body, the interbody cage itself and through the lower adjacent vertebral body.
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These multiple functionalities were created with specially designed graphene composite by growing sodium metaborate (NaBO2·xH2O) crystals into graphene oxide (GO) layer during their reduction, which works synergistically as a surface binder, a flame-retardant additive, and an antibacterial agent.
These specially designed MWCNT-TiO2 composite NW-based photoelectrodes have great potential as an effective charge transfer medium to inherently enhance the photovoltaic performance of DSSCs.
They include the processing of specially designed alloys and composites, the combination of forming and joining processes as well as reduction of production costs and energy consumption.
For this purpose, the system used a specially designed language called Generic Composite Event Rule Markup Language (GCERML).
A specially designed microstructure in the composite membrane with a porous hydrophobic layer and a relatively dense hydrophilic layer is proposed for lipase immobilization.
The original athletes didn't have specially designed Nike trainers or composite materials to make there javelins, discuses or other equipment lighter.
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CEO of Professional Science Editing for Scientists @ prosciediting.com