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21.
Ultrafiltration membranes of poly(acrylonitrile-co-sodium styrenesulfonate) [P(AN-co-SSS)] were prepared by casting the copolymer solution into water. The ultrafiltration rate of P(AN-co-SSS) membranes was controlled by adding poly(ethylene glycol) (PEG) of various molecular weights to the casting solution. The effect of the PEG addition on the membrane properties was examined. By using the P(AN-co-SSS) membranes, which possess various molecular weight cutoff (MWCO) properties, the permeation behaviors of dextran (D) and dextransulfate (DS) were compared. The P(AN-co-SSS) membranes markedly restricted the permeation of DS, owing to electrostatic barrier of the negatively charged groups in the membrane. The electrostatic sieve separation of DS and D, each having similar molecular size, with the membranes was also investigated. The membrane having negatively charged groups effectively rejected to DS with a high permselectivity. © 1994 John Wiley & Sons, Inc. 相似文献
22.
Kyotani M Goto H Suda K Nagai T Matsui Y Akagi K 《Journal of nanoscience and nanotechnology》2008,8(4):1999-2004
A tubular-shaped polyaniline less than 5 microm in length and 170 nm in outer diameter was synthesized by a self-assembly process using D-camphorsulfonic acid as a dopant. A tubular-shaped nanocarbon was prepared from the tubular-shaped polyaniline by means of pyrolysis at 1000 degrees C in argon gas. The structural and electrical properties of the resultant tubular-shaped nanocarbons were investigated using Raman scattering spectrum, X-ray diffraction measurements, scanning and transmission electron microscopes, and a low resistivity meter. The tubular-shaped nanocarbons are very short in length and are an amorphous state. The short length and amorphous tubular-shaped nanocarbon were crystallized to some extent by heat-treatment at 2600 degrees C. The tubular-shaped nanocarbons mentioned in this work are appropriate for mass production, compared to the well-known multi-walled carbon nanotubes. The electrical conductively of the tubular-shaped polyaniline was remarkably improved by the carbonization and was enhanced by the heat-treatment. 相似文献
23.
Niidome T Akiyama Y Shimoda K Kawano T Mori T Katayama Y Niidome Y 《Small (Weinheim an der Bergstrasse, Germany)》2008,4(7):1001-1007
Gold nanorods showing surface plasmon (SP) bands in the near-IR region are used as bioimaging probes that respond to near-IR light in mice. The SP bands of intravenously injected polyethylene glycol-modified gold nanorods are directly monitored from the mouse abdomen by using a spectrophotometer equipped with an integrating sphere. The absorbance at 900 nm from the gold nanorods immediately increases after injection and reaches a plateau. The injection of phosphatidylcholine-modified gold nanorods also increases the absorbance at 900 nm, but the absorbance decreases single exponentially with a 1.3-min half-life. In vivo spectral changes of gold nanorods depend on the surface characteristics, and can be observed in real time using simple spectroscopic measurements. 相似文献
24.
Hidemitsu Aoki Takuro Masuzumi Makoto Hara Daisuke Watanabe Chiharu Kimura Takashi Sugino 《Thin solid films》2010,518(8):2102-2104
We investigated the properties of boron carbon nitride film containing hydrogen (BCNH film) deposited using tris(dimethylamino)boron as the source gas. The dielectric constant (k) of BCNH film decreases with decreasing radio-frequency plasma power used for deposition, and can be as low as 1.8 at 10 W. Thermal desorption spectroscopy analysis shows that the film contains a large amount of hydrogen. Fourier transform infrared spectroscopy shows an absorption band at 2960 cm−1, attributed to the asymmetrical stretching mode of C-H in the methyl group. It is thought that increasing the number of C-H bonds, which have a low polarizability, can achieve a lower k value. 相似文献
25.
Yusaku Nomoto Takuro Matsunaga Takamasa Sakai Masatoshi Tosaka Mitsuhiro Shibayama 《Polymer》2011,52(18):4123-4128
We investigated crystal structure, and thermal, swelling, and deformation behaviors of dried tetrafunctional (polyethylene glycol) gel, Tetra-PEG gel, with narrow molecular distribution. Tetra-PEG gel consists of two kinds of symmetrical tetrahedron-like PEG macromonomers with a fixed molecular weight. In spite of network structure with rather small molecular weight between cross-links (Mc) (≈5000), the dried Tetra-PEG gels were found to be capable of crystallization. The crystalline melting temperature (Tm) and the degree of crystallinity (Xc) of dried Tetra-PEG gels obtained by differential scanning calorimetry (DSC) were substantially constant against the polymer volume fraction at preparation (?0). Furthermore, the corrected elastic modulus (G) of dried Tetra-PEG gels did not depend on ?0. These experimental results indicate that the there exist negligible entanglements in the dried Tetra-PEG network irrespective of ?0. In other words, Tetra-PEG gels do not have significant topological inhomogeneities. 相似文献
26.
27.
Sumiyo Morita Takuro Horii Mika Kimura Takahiro Ochiya Shoji Tajima Izuho Hatada 《International journal of molecular sciences》2013,14(7):14647-14658
Members of the microRNA-29 (miR-29) family directly target the DNA methyltransferases, DNMT3A and DNMT3B. Disturbances in the expression levels of miR-29 have been linked to tumorigenesis and tumor aggressiveness. Members of the miR-29 family are currently thought to repress DNA methylation and suppress tumorigenesis by protecting against de novo methylation. Here, we report that members of the miR-29 family repress the activities of DNA methyltransferases and DNA demethylases, which have opposing roles in control of DNA methylation status. Members of the miR-29 family directly inhibited DNA methyltransferases and two major factors involved in DNA demethylation, namely tet methylcytosine dioxygenase 1 (TET1) and thymine DNA glycosylase (TDG). Overexpression of miR-29 upregulated the global DNA methylation level in some cancer cells and downregulated DNA methylation in other cancer cells, suggesting that miR-29 suppresses tumorigenesis by protecting against changes in the existing DNA methylation status rather than by preventing de novo methylation of DNA. 相似文献
28.
Toshio Hirao Isamu Nashiyama Tomihiro Kamiya Tamotsu Suda Takuro Sakai Tsuyoshi Hamano 《Nuclear instruments & methods in physics research. Section B, Beam interactions with materials and atoms》1997,130(1-4):486-490
Using focused high-energy microbeams of carbon- and oxygen-ions and a high speed, wide bandwidth measurement system, we found a strong dependence of the collected charge and the transient current waveform on the position of ion incidences. Single-event charge is collected by a diffusion mechanism even when the ion strikes a position about 3 4 μm away from the lateral boundary of the p+n-junction area. 相似文献
29.
Takuro Sakai Tsuyoshi Hamano Tamotsu Suda Toshio Hirao Tomihiro Kamiya 《Nuclear instruments & methods in physics research. Section B, Beam interactions with materials and atoms》1997,130(1-4):498-502
Single ion hit system has been installed in heavy ion microbeam system in JAERI Takasaki for analysis of single event phenomenon in semiconductor devices. The detection and control of a single ion injection to a target have been achieved by combining a beam pulsing system with a gated detection system. The microscopic observation of a track detector hit by a single ion periodically, shows the controls of the hit positions and numbers of incident ions are successful. 相似文献
30.
Nitish Mathur Fehmi S. Yasin Matthew J. Stolt Takuro Nagai Koji Kimoto Haifeng Du Mingliang Tian Yoshinori Tokura Xiuzhen Yu Song Jin 《Advanced functional materials》2021,31(13):2008521
In bulk chiral crystals, 3D structures of magnetic skyrmions form topologically protected skyrmion strings (SkS) that have shown potential as magnonic nano-waveguides for information transfer. Although SkS stability is expected to be enhanced in nanostructures of skyrmion-hosting materials, experimental observation and detection of SkS in nanostructures under an applied in-plane magnetic field is difficult. Here, temperature-dependent magnetic field-driven creation and annihilation of SkS in B20 FeGe nanostructures (nanowires and nanoplates) under in-plane magnetic field (H||) are shown and the mechanisms behind these transformations are explained. Unusual asymmetric and hysteretic magnetoresistance (MR) features are observed but previously unexplained during magnetic phase transitions within the SkS stability regime when H|| is along the nanostructure's long edge, which increase the sensitivity of MR detection. Lorentz transmission electron microscopy of the SkS and other magnetic textures under H|| in corroboration with the analysis of the anisotropic MR responses elucidates the field-driven creation and annihilation processes of SkS responsible for such hysteretic MR features and reveals an unexplored stability regime in nanostructures. 相似文献