Zobrazeno 1 - 10
of 24
pro vyhledávání: '"Theeranuch Nachaithong"'
Autor:
Yonrapach Areerob, Won-Chun Oh, Chaowalit Hamontree, Theeranuch Nachaithong, Supinya Nijpanich, Kongsak Pattarith
Publikováno v:
Scientific Reports, Vol 13, Iss 1, Pp 1-12 (2023)
Abstract A novel tungsten disulfide-molybdenum copper oxide composite supported with graphene quantum dots (WM@GQDs) has been synthesized as a counter electrode (CE) for dye-sensitized solar cells (DSSCs) using a simple and low-cost ultrasonication m
Externí odkaz:
https://doaj.org/article/d19e9500150443719ae3757aa129b734
Autor:
Yonrapach Areerob, Chaowalit Hamontree, Phitchan Sricharoen, Nunticha Limchoowong, Supinya Nijpanich, Theeranuch Nachaithong, Won-Chun Oh, Kongsak Pattarith
Publikováno v:
Scientific Reports, Vol 12, Iss 1, Pp 1-11 (2022)
Abstract Novel MoWO4 with ZnO nanoflowers was synthesized on multi-walled carbon nanotubes (MW-Z@MWCNTs) through a simple hydrothermal method, and this unique structure was applied as a counter electrode (CE) for dye-sensitized solar cells (DSSC) for
Externí odkaz:
https://doaj.org/article/3245d3f7737640798d3f8dcf04762a11
Autor:
Theeranuch Nachaithong, Narong Chanlek, Pairot Moontragoon, Pornjuk Srepusharawoot, Prasit Thongbai
Publikováno v:
Results in Physics, Vol 47, Iss , Pp 106334- (2023)
Low dissipation factor (tanδ) and excellent temperature stability of high dielectric permittivity are obtained in Ti1-x(Co1/3Ta2/3)xO2 ceramics, which were prepared using a mixed oxide method. The unit cell of the rutile TiO2 structure expanded due
Externí odkaz:
https://doaj.org/article/3deca247e29844299775f7d0d6cdbb61
Autor:
Theeranuch Nachaithong, Pornsawan Sikam, Pairot Moontragoon, Prasit Thongbai, Thanayut Kaewmaraya, Zoran Ikonic
Publikováno v:
Engineering and Applied Science Research, Vol 48, Iss 6, Pp 759-765 (2021)
In this work, we have studied optical and dielectric properties of (Ga, Cu)-doped ZnO nanoparticles in both theoretical and experimental aspects. In an experimental approach, we have synthesized ZnO, Ga-doped ZnO, Cu-doped ZnO, and (Ga, Cu)-codoped Z
Externí odkaz:
https://doaj.org/article/19ae973f4e8c4a60a77cd9fd1d72f419
Publikováno v:
Molecules, Vol 27, Iss 18, p 6121 (2022)
The (Zn, Nb)-codoped TiO2 (called ZNTO) nanopowder was successfully synthesized by a simple combustion process and then the ceramic from it was sintered with a highly dense microstructure. The doped atoms were consistently distributed, and the existe
Externí odkaz:
https://doaj.org/article/14bf761db0594d2090d0a6c159ef731a
Autor:
Nattapong Chuewangkam, Theeranuch Nachaithong, Narong Chanlek, Prasit Thongbai, Supree Pinitsoontorn
Publikováno v:
Polymers, Vol 14, Iss 6, p 1140 (2022)
Fly ash (FA) and sugarcane bagasse ash (SCBA) are the wastes from lignite power plants and sugar industries, usually disposed of as landfills. In this research, these wastes were effectively utilized as a construction material, namely geopolymer. The
Externí odkaz:
https://doaj.org/article/9aa26f4aff1045d0a07d8055c6e8c110
Publikováno v:
Molecules, Vol 26, Iss 11, p 3230 (2021)
(Co, Nb) co-doped rutile TiO2 (CoNTO) nanoparticles with low dopant concentrations were prepared using a wet chemistry method. A pure rutile TiO2 phase with a dense microstructure and homogeneous dispersion of the dopants was obtained. By co-doping r
Externí odkaz:
https://doaj.org/article/06d6f13d01f94b70926e5807a2f915e0
Autor:
Theeranuch Nachaithong, Narong Chanlek, Pairot Moontragoon, Pornjuk Srepusharawoot, Prasit Thongbai
Publikováno v:
Results in Physics. 47:106334
Publikováno v:
RSC Advances. 10:24784-24794
Fe3+/Nb5+ co-doped TiO2 (FeNb-TO) nanocrystalline powders were prepared by a combustion process. A pure rutile–TiO2 phase of powders and sintered ceramics with a dense microstructure was achieved. Both co-dopants were homogeneously dispersed in the
Publikováno v:
Molecules
Volume 26
Issue 11
Molecules, Vol 26, Iss 3230, p 3230 (2021)
Volume 26
Issue 11
Molecules, Vol 26, Iss 3230, p 3230 (2021)
(Co, Nb) co-doped rutile TiO2 (CoNTO) nanoparticles with low dopant concentrations were prepared using a wet chemistry method. A pure rutile TiO2 phase with a dense microstructure and homogeneous dispersion of the dopants was obtained. By co-doping r