Recently tin-based composite oxide materials have received considerable attention as a negative electrode for lithium ion secondary batteries. In this study, nano-sized SnO₂-B₂O₃-P₂O5 particles were synthesized by an Aerosol Flame Deposition(A...
http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.
변환된 중국어를 복사하여 사용하시면 됩니다.
https://www.riss.kr/link?id=A104545522
Jangwon Oh (Hanyang University) ; Kihyun Cho (한양대학교) ; Taewon Lee (한양대학교) ; Insoo Hwang (한양대학교) ; 장시열 (국민대학교) ; 신동욱 (한양대학교)
2008
English
KCI등재,SCIE,SCOPUS
학술저널
52-56(5쪽)
2
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
Recently tin-based composite oxide materials have received considerable attention as a negative electrode for lithium ion secondary batteries. In this study, nano-sized SnO₂-B₂O₃-P₂O5 particles were synthesized by an Aerosol Flame Deposition(A...
Recently tin-based composite oxide materials have received considerable attention as a negative electrode for lithium ion secondary batteries. In this study, nano-sized SnO₂-B₂O₃-P₂O5 particles were synthesized by an Aerosol Flame Deposition(AFD) technique. Single or multi-component amorphous oxide nano particles (soot) were synthesized by supplying metal halide sources such as chloride in the form of gas into an oxy-hydrogen flame. The fine powder obtained was a mixture of crystalline tin oxide and an amorphous phase of B₂O₃ and P₂O5, resulting in a highly dispersed structure with nano-scale interfaces. According to the XRD results, the as-prepared materials seemed to have a semi-amorphous structure and SEM images showed that the average particle size <60 nm. In this study, we investigated the relationship between the structural modification of the tin-based composite oxide and the conductivity as a function of the composition.
참고문헌 (Reference)
1 Z. P. Guo, 146 : 190-194, 2005
2 C. Branci, 135 : 169-174, 2000
3 M. Mohamedi, 46 : 1161-1168, 2001
4 S. C. Nam, 2 : 9-11, 1999
5 B. J. Neudecker, 81 : 27-32, 1999
6 D. H. Hall, 87 : 2033-2041, 2004
7 W. H. Lee, 89 : 102-105, 2000
8 H. Huang, 81 : 362-367, 1999
9 T. Brousse, 145 : 1998
10 S. C. Nam, 84 : 24-31, 1999
1 Z. P. Guo, 146 : 190-194, 2005
2 C. Branci, 135 : 169-174, 2000
3 M. Mohamedi, 46 : 1161-1168, 2001
4 S. C. Nam, 2 : 9-11, 1999
5 B. J. Neudecker, 81 : 27-32, 1999
6 D. H. Hall, 87 : 2033-2041, 2004
7 W. H. Lee, 89 : 102-105, 2000
8 H. Huang, 81 : 362-367, 1999
9 T. Brousse, 145 : 1998
10 S. C. Nam, 84 : 24-31, 1999
11 J. Santos-pena, 97 : 232-234, 2001
12 Y. Idota, 276 : 1395-1397, 1997
Characteristics of lithium titanate fabricated by an organic-inorganic solution route
Formation of titanium hydroxide nanoparticles in supercritical carbon dioxide
학술지 이력
연월일 | 이력구분 | 이력상세 | 등재구분 |
---|---|---|---|
2023 | 평가예정 | 해외DB학술지평가 신청대상 (해외등재 학술지 평가) | |
2022-10-24 | 학회명변경 | 한글명 : 세라믹연구소 -> 청정에너지연구소영문명 : Ceramic Research Institute -> Clean-Energy Research Institute | ![]() |
2020-01-01 | 평가 | 등재학술지 유지 (해외등재 학술지 평가) | ![]() |
2019-08-19 | 학회명변경 | 한글명 : 세라믹공정연구센터 -> 세라믹연구소영문명 : Ceramic Processing Research Center -> Ceramic Research Institute | ![]() |
2011-01-01 | 평가 | 등재학술지 유지 (등재유지) | ![]() |
2006-01-01 | 평가 | SCI 등재 (등재후보1차) | ![]() |
2003-01-01 | 평가 | 등재후보학술지 선정 (신규평가) | ![]() |
학술지 인용정보
기준연도 | WOS-KCI 통합IF(2년) | KCIF(2년) | KCIF(3년) |
---|---|---|---|
2016 | 0 | 0 | 0 |
KCIF(4년) | KCIF(5년) | 중심성지수(3년) | 즉시성지수 |
0 | 0 | 0 | 0 |