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Surface of CuO nanoparticles modified by p-benzoquinone for N2 selective membrane
December 7, 2022, 12:51 pm 수정 삭제



Juyeong Lee, Hiesang Sohn and Sang Wook Kang*, Membranes, 2022, 12, 1229-1239, Surface of CuO nanoparticles modified by p-benzoquinone for N2 selective membrane, impact factor = 4.562

CuO modified by 7,7,8,8-tetracyano quinodimethane and its application to CO2 separation
November 24, 2022, 10:16 am 수정 삭제



Juyeong Lee, Sang Wook Kang*, International Journal of Molecular Sciences 2022, 23, 14583-14592, CuO modified by 7,7,8,8-tetracyano quinodimethane and its application to CO2 separation, impact factor = 6.208

Improvement of stability for cellulose polymer by calcium oxide for application to porous materials
September 13, 2022, 2:45 pm 수정 삭제



Hye Ji Lee and Sang Wook Kang*, Cellulose 2022, 29, 8319–8327, Improvement of stability for cellulose polymer by calcium oxide for application to porous materials, impact factor = 6.123

Composites of poly(vinyl pyrrolidone) and polarized Ag nanoparticles for CO2 separation
August 26, 2022, 1:44 pm 수정 삭제



Beom Jun Kim and Sang Wook Kang*, Korean Journal of Chemical Engineering 2022, 39(9), 2542-2547, Composites of poly(vinyl pyrrolidone) and polarized Ag nanoparticles for CO2 separation, impact factor = 3.146

Formation of Nanochannels Using Polypropylene and Acetyl-cellulose for Stable Separators
August 5, 2022, 11:19 am 수정 삭제



Hye Ji Lee, Younghyun Cho and and Sang Wook Kang*, Membranes 2022, 12, 764-773, Formation of Nanochannels Using Polypropylene and Acetyl-cellulose for Stable Separators, impact factor = 4.562

Low-cost process to utilize sodium salts for porous cellulose materials
August 2, 2022, 11:01 am 수정 삭제



Hwa Jin Lee, Younghyun Cho and Sang Wook Kang*, Journal of Industrial and Engineering Chemistry 2022, 113, 368-372, Low-cost process to utilize sodium salts for porous cellulose materials, impact factor = 6.760

Interactions of Ag Particles Stabilized by 7,7,8,8-Tetracyanoquinodimethane with Olefin Molecules in Poly(ether-block-amide)
June 28, 2022, 10:26 am 수정 삭제



Minsu Kim, Younghyun Cho and Sang Wook Kang*,, Molecules, 2022, 27, 4122-4131, Interactions of Ag particles stabilized by 7,7,8,8-tetracyanoquinodimethane with olefin molecules in poly(ether-block-amide), impact factor = 4.412

Synthesis of surface-tuned polyacrylonitrile particles and its application to CO2 separation
April 12, 2022, 9:34 am 수정 삭제


Tae-Gyun Kwon, Beom Jun Kim, Oong Hyeon Jo, Beom-Goo Kang and Sang Wook Kang*, Journal of Industrial and Engineering Chemistry 2022, 109, 155-160, Surface-tuned polyacrylonitrile particles for CO2 separation, impact factor = 6.064

Stable cellulose-separator with CaO on nanoporous polypropylene by water-treated channels
April 12, 2022, 9:30 am 수정 삭제


Hye Ji Lee and Sang Wook Kang*,, Polymer 2022, 247, 124781-124786, Stable cellulose-separator with CaO on nanoporous polypropylene by water-treated channels, impact factor = 4.430

Thermally stable and highly porous separator based on cellulose acetate by glycolic acid
February 3, 2022, 3:42 pm 수정 삭제



So Hee Kim and Sang Wook Kang*, Polymer 2022, 242, 124592-124596, Thermally stable and highly porous separator based on cellulose acetate by glycolic acid, impact factor = 4.430

Blocking chemical warfare agent simulants by graphene oxide/polymer multilayer membrane based on hydrogen bonding and size sieving effect
January 27, 2022, 10:31 am 수정 삭제



Youna Kim, Moonhyun Choi, Jiwoong Heo, Sungwon Jung, Dongwon Ka, Hyeji Lee, Sang Wook Kang, Heesoo Jung, Sangmin Lee, Youngho Jin, Jinkee Hong, Journal of Hazardous Materials 2022, 427, 127884, Blocking Chemical Warfare Agents by Graphene Oxide/Polymer Multilayer Membrane Based on Hydrogen Bonding and Size Sieving Effect, impact factor = 10.588

Accelerated CO2 transport on the surface-tuned Ag nanoparticles by p-benzoquinone
January 27, 2022, 10:24 am 수정 삭제



Beom Jun Kim and Sang Wook Kang*Journal of Industrial and Engineering Chemistry, 2022, 106, 311-316, Accelerated CO2 transport on the surface-tuned Ag nanoparticles by p-benzoquinone, impact factor = 6.064