| Literature DB >> 21711744 |
Min-Seok Kang1, Sung-Jae Joo, Wook Bahng, Ji-Hoon Lee, Nam-Kyun Kim, Sang-Mo Koo.
Abstract
In this study, nano-scale honeycomb-shapn>ed structures with anti-reflection propn>erties were successfully formed onEntities:
Year: 2011 PMID: 21711744 PMCID: PMC3211295 DOI: 10.1186/1556-276X-6-236
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1Schematic view of the 4H-SiC with different surface structures. (a) Reference cell, (b) micro-honeycomb structures, and (c) nano-honeycomb structures.
Figure 2SEM images of representative "as-manufactured" structures. (a) The image shows the nano-honeycomb structures created by the photolithographic process. The detailed images show the rough surface on the bottom side (b) and the top side (c) of the nano-honeycomb structures created by the ICP-etching process using the gaseous mixture of SF6 + O2.
Figure 3Comparison of spectral reflectivity from 300 to 1000 nm for different surface structures.
Figure 4Contact-mode AFM images of 4H-SiC with different surface structures. (a) Micro-honeycomb structures, (b) nano-scale texturing, and (c) nano-honeycomb structures, as well as (d) RMS curve of the surface roughness.
Figure 54H-SiC photodiode structure and the optical response characteristics. (a) Structure of the 4H-SiC Schottky-type photodiode with an open area of 250 × 250 μm2. (b) Optical response of the 4H-SiC photo-diodes with different surface structures.
Comparison of the Schottky-type ultraviolet photodiode properties for different structures
| Structure | Response (A/W) | ||
|---|---|---|---|
| Reference cell | 1.37 × 10-11 | 5.55 × 10-8 | 75.4 |
| Micro-honeycomb | 1.41 × 10-11 | 6.32 × 10-8 | 85.8 |
| Nano-honeycomb | 1.94 × 10-11 | 2.18 × 10-7 | 259.5 |