1 |
Poly (N-isopropylacrylamide) grafted temperature responsive PET membranes: An ultrafast method for membrane processing using KrF excimer laser at 248 nm Tiwari A, Sancaktar E Journal of Membrane Science, 552, 357, 2018 |
2 |
Nanodrilling of fused silica using nanosecond laser radiation Lorenz P, Zajadacz J, Bayer L, Ehrhardt M, Zimmer K Applied Surface Science, 351, 935, 2015 |
3 |
Chemical evolution of InP/InGaAs/InGaAsP microstructures irradiated in air and deionized water with ArF and KrF lasers Liu N, Dubowski JJ Applied Surface Science, 270, 16, 2013 |
4 |
KrF-excimer laser irradiation on the soda-lime silicate glass Zhang J, Dong W, Zhang YL, Sheng JW International Journal of Hydrogen Energy, 34(7), 3197, 2009 |
5 |
Determination of the debris produced from poly(ethylene terephthalate) during KrF excimer laser ablation Shin DS, Lee JH, Suh J, Kim TH Applied Surface Science, 252(6), 2319, 2006 |
6 |
Effects of 248 nm excimer laser irradiation on the properties of Mg-doped GaN Wang XC, Lim GC, Liu W, Soh CB, Chua SJ Applied Surface Science, 252(5), 2071, 2005 |
7 |
UV-irradiation-induced refractive index increase of Ge-doped silica films Zhang LT, Xie WF, Hou Y, Li AW, Zheng J, Zheng W, Zhang YS Materials Science Forum, 475-479, 1837, 2005 |
8 |
Removal of the photoresist (PR) and metallic-polymer in the concave-typed storage node using the excimer laser Kim HJ, Kim DJ, Ryu JK, Pak SS Applied Surface Science, 228(1-4), 100, 2004 |
9 |
The onset of optical breakdown in KrF-laser-irradiated silica glass surfaces Kawaguchi Y, Narazaki A, Sato T, Niino H, Yabe A, Langford SC, Dickinson JT Applied Surface Science, 197, 50, 2002 |
10 |
Laser-induced optical emission of carbon plume by excimer and Nd : YAG laser irradiation Shinozaki T, Ooie T, Yano T, Zhao JP, Chen ZY, Yoneda M Applied Surface Science, 197, 263, 2002 |