期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Characterization of Corrinoid Compounds in the Edible Cyanobacterium <i>Nostoc flagelliforme</i>the Hair Vegetable
1
作者 Fei Teng Tomohiro Bito +4 位作者 Shigeo takenaka hiroyuki takenaka Yuji Yamaguchi Yukinori Yabuta Fumio Watanabe 《Food and Nutrition Sciences》 2014年第4期334-340,共7页
Vitamin B12 contents in the edible cyanobacterium Nostoc flagelliforme, also known as hair vegetable, were assayed using a microbiological method. We detected high vitamin B12 contents in samples of naturally grown ce... Vitamin B12 contents in the edible cyanobacterium Nostoc flagelliforme, also known as hair vegetable, were assayed using a microbiological method. We detected high vitamin B12 contents in samples of naturally grown cells (109.2 ± 18.5 μg/100g dry weight) and cultured cells (120.2 ± 53.6 μg/100g dry weight). However, commercially available hair vegetable samples, which comprised fake substitutes and Nostoc, had variable contents (4.8 - 101.6 μg/100g dry weight) because concomitant fake items contain very low vitamin B12 contents. To evaluate whether natural and cultured N. flagelliforme samples contained vitamin B12 or pseudovitamin B12, corrinoid compounds were purified and identified as pseudovitamin B12 (approximately 72%) and vitamin B12 (approximately 28%) using silica gel 60 TLC bioautography and LC/MS. The results suggested that N. flagelliforme contains substantial amounts of pseudovitamin B12, which is inactive in humans. 展开更多
关键词 EDIBLE Cyanobacteria HAIR VEGETABLE NOSTOC flagelliforme Pseudovitamin B12 Vitamin B12
下载PDF
What Defines a Crystal Structure? Effects of Chalcogen Atoms in 3,7-Bis(methylchalcogeno)benzo[1,2-b:4,5-b′]dichalcogenophene-Based Organic Semiconductors
2
作者 Kazuo Takimiya Kirill Bulgarevich +3 位作者 Kamon Sahara Kiseki Kanazawa hiroyuki takenaka Kohsuke Kawabata 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2022年第21期2546-2558,共13页
To understand the effects of chalcogen atoms on the crystal structure of the series of 3,7-bis(methylchalcogeno)benzo[1,2-b:4,5-b′]dichalcogenophene-based organic semiconductors,three benzodifuran derivatives(1—3)an... To understand the effects of chalcogen atoms on the crystal structure of the series of 3,7-bis(methylchalcogeno)benzo[1,2-b:4,5-b′]dichalcogenophene-based organic semiconductors,three benzodifuran derivatives(1—3)and dimethoxy derivatives of benzodithiophene and benzodiselenophene(4 and 7)were newly synthesized to complete the“3×3 matrix”of the oxygen-,sulfur-,and selenium-derivatives(1—9).The crystal structures of 1—9 were classified into four classes,sandwich pitchedπ-stack(1),dimeric(2 and 3),pitchedπ-stack(4,5,7,8,9),and brickwork structure(6 and 9).The causes for the different crystal structures depending on the chalcogen atoms were investigated by the theoretical calculations,indicating that the chalcogen atoms in the core and substituents primarily affected the packing structures.Although the crystal growth in the vapor phase afforded different polymorphs,the relationship between the crystal structure and the carrier transport property was carefully investigated. 展开更多
关键词 Organic semiconductor Crystal structure Mobility Intermolecular interaction Chalcogen atom
原文传递
PREDICTION OF DIELECTRIC DISPERSION FOR LEAD BASED PEROVSKITES AND STUDY OF LOCAL DIELECTRIC RESPONSE IN 0.75Pb(Mg_(1/3)Nb(2/3))O_(3)-0.25PbTiO_(3)
3
作者 ILYA GRINBERG hiroyuki takenaka +1 位作者 YOUNG-HAN SHIN ANDREW M.RAPPE 《Journal of Advanced Dielectrics》 CAS 2012年第2期121-126,共6页
Relaxors exhibit unique dielectric response properties such as diffuse phase transitions and strong dispersion of the dielectric constant.The origin of these properties is still not fully understood.Here,we review our... Relaxors exhibit unique dielectric response properties such as diffuse phase transitions and strong dispersion of the dielectric constant.The origin of these properties is still not fully understood.Here,we review our work on usingfirst-principles-based methods to elucidate the connections between composition,local structure and dynamics in Pb-based relaxors. 展开更多
关键词 Relaxor dielectric response DYNAMICS relaxation time
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部