Publication |
Sentence |
Publish Date |
Extraction Date |
Species |
Yulong Chen, Li Liu, Qingyuan Yang, Shipeng Wen, Liqun Zhang, Chongli Zhon. Computational study of nanoparticle dispersion and spatial distribution in polymer matrix under oscillatory shear flow. Langmuir : the ACS journal of surfaces and colloids. vol 29. issue 45. 2014-06-11. PMID:24125041. |
interestingly, at high interfacial strength, we observed that the nps can be distributed on several layers in the polymer matrix, forming the pncs with sandwich-like structures. |
2014-06-11 |
2023-08-12 |
Not clear |
Andrew Sylvester, Balakrishnan Sivaraman, Partha Deb, Anand Ramamurth. Nanoparticles for localized delivery of hyaluronan oligomers towards regenerative repair of elastic matrix. Acta biomaterialia. vol 9. issue 12. 2014-06-10. PMID:23917150. |
ha-o released from the nps led to dose-dependent increases in elastic matrix synthesis, and the recruitment and activity of lysyl oxidase, the enzyme which cross-links elastin precursor molecules into mature fibers/matrix. |
2014-06-10 |
2023-08-12 |
rat |
Ruitao Zhou, M P Srinivasa. In situ synthesis and immobilization of metallic nanoparticles on a calixarene monolayer. Langmuir : the ACS journal of surfaces and colloids. vol 29. issue 42. 2014-06-06. PMID:24093762. |
a covalently immobilized calix[7]hydroquinone monolayer was used as the host matrix to synthesize metallic nps using an in situ redox process. |
2014-06-06 |
2023-08-12 |
Not clear |
Kiyofumi Katagiri, Ryuichi Takabatake, Kei Inumar. Robust infrared-shielding coating films prepared using perhydropolysilazane and hydrophobized indium tin oxide nanoparticles with tuned surface plasmon resonance. ACS applied materials & interfaces. vol 5. issue 20. 2014-06-02. PMID:24025399. |
robust infrared (ir)-shielding coating films were prepared by dispersing indium tin oxide (ito) nanoparticles (nps) in a silica matrix. |
2014-06-02 |
2023-08-12 |
Not clear |
Kiyofumi Katagiri, Ryuichi Takabatake, Kei Inumar. Robust infrared-shielding coating films prepared using perhydropolysilazane and hydrophobized indium tin oxide nanoparticles with tuned surface plasmon resonance. ACS applied materials & interfaces. vol 5. issue 20. 2014-06-02. PMID:24025399. |
coating films composed of a continuous silica matrix homogeneously dispersed with ito nps were obtained using perhydropolysilazane (phps) as a precursor. |
2014-06-02 |
2023-08-12 |
Not clear |
Vinh Quang Nguyen, Masayuki Ishihara, Yasutaka Mori, Shingo Nakamura, Satoko Kishimoto, Masanori Fujita, Hidemi Hattori, Yasuhiro Kanatani, Takeshi Ono, Yasushi Miyahira, Takemi Matsu. Preparation of size-controlled silver nanoparticles and chitosan-based composites and their anti-microbial activities. Bio-medical materials and engineering. vol 23. issue 6. 2014-05-30. PMID:24165550. |
the bactericidal and anti-fungal activities of the ag np/chitosan composites increased as the amount of ag nps in the chitosan matrix increased. |
2014-05-30 |
2023-08-12 |
Not clear |
Qin Li, Rongping Zeng, Kyle J Myers, Berkman Sahiner, Marios A Gavrielides, Nicholas Petric. Relating Fisher information to detectability of changes in nodule characteristics with CT. Information processing in medical imaging : proceedings of the ... conference. vol 23. 2014-05-23. PMID:24684001. |
the noise is assumed to be multivariate gaussian and the noise power spectrum (nps) method is used to estimate the covariance matrix for the fisher information calculation. |
2014-05-23 |
2023-08-12 |
Not clear |
Frédéric A Miéville, Gregory Bolard, Shelley Bulling, François Gudinchet, François O Bochud, François R Verdu. Effects of computing parameters and measurement locations on the estimation of 3D NPS in non-stationary MDCT images. Physica medica : PM : an international journal devoted to the applications of physics to medicine and biology : official journal of the Italian Association of Biomedical Physics (AIFB). vol 29. issue 6. 2014-05-19. PMID:22858431. |
a 25 × 25 × 40 mm(3) voi associated with dfov = 200 mm (lx,y,z = 64, bx,y = 0.391 mm with 512 × 512 matrix) and a first-order detrending method to reduce structured noise led to an accurate nps estimation. |
2014-05-19 |
2023-08-12 |
Not clear |
Taeyjuana Curry, Tamir Epstein, Ron Smith, Raoul Kopelma. Photothermal therapy of cancer cells mediated by blue hydrogel nanoparticles. Nanomedicine (London, England). vol 8. issue 10. 2014-05-06. PMID:23432340. |
the aim of this study was to investigate in vitro the utility of biologically compatible, nontoxic and cell-specific targetable hydrogel nanoparticles (nps), which have coomassie® brilliant blue g dye (sigma-aldrich, mo, usa) covalently linked into their polyacrylamide matrix, as candidates for photothermal therapy (ptt) of cancer cells. |
2014-05-06 |
2023-08-12 |
Not clear |
Wei-Wei Zhao, Zheng-Yuan Ma, Jing-Juan Xu, Hong-Yuan Che. In situ modification of a semiconductor surface by an enzymatic process: a general strategy for photoelectrochemical bioanalysis. Analytical chemistry. vol 85. issue 18. 2014-04-22. PMID:23984980. |
specifically, the enzymatic hydrolysis of ascorbic acid 2-phosphate by alkaline phosphatase is allowed to interact on the tio2 nanoparticles (nps) matrix. |
2014-04-22 |
2023-08-12 |
Not clear |
Dan Ding, Jie Liu, Guangxue Feng, Kai Li, Yong Hu, Bin Li. Bright far-red/near-infrared conjugated polymer nanoparticles for in vivo bioimaging. Small (Weinheim an der Bergstrasse, Germany). vol 9. issue 18. 2014-04-18. PMID:23625815. |
formulation of pfbtdbt10 using 1,2-distearoyl-sn-glycero-3-phosphoethanolamine-n-[methoxy(polyethylene glycol)-2000] (dspe-peg2000 ) and dspe-peg5000-folate as the encapsulation matrix yielded cp-loaded dspe-peg-folic acid nanoparticles (cpdp-fa nps) with bright fr/nir fluorescence (27% quantum yield) and a large stoke's shift of 233 nm in aqueous solution. |
2014-04-18 |
2023-08-12 |
mouse |
José A Jiméne. Influence of Ag nanoparticles on the luminescence dynamics of Dy3+ ions in glass: the "plasmonic diluent" effect. Physical chemistry chemical physics : PCCP. vol 15. issue 40. 2014-04-15. PMID:24036991. |
this work demonstrates that metallic nanoparticles (nps) embedded in rare-earth (re) co-doped dielectrics are able to produce an effect analogous to a reduction in the effective concentration of the luminescent re ions in the matrix, herein coined the "plasmonic diluent" effect. |
2014-04-15 |
2023-08-12 |
Not clear |
José A Jiméne. Influence of Ag nanoparticles on the luminescence dynamics of Dy3+ ions in glass: the "plasmonic diluent" effect. Physical chemistry chemical physics : PCCP. vol 15. issue 40. 2014-04-15. PMID:24036991. |
this produces a dy(3+) deactivation effect analogous to a lowering in the effective concentration of emitting dy(3+) ions in the matrix, i.e., the metal nps play a role as a "plasmonic diluent" in the glass system with respect to the luminescent re ions. |
2014-04-15 |
2023-08-12 |
Not clear |
Christian O Dimkpa, Drew E Latta, Joan E McLean, David W Britt, Maxim I Boyanov, Anne J Anderso. Fate of CuO and ZnO nano- and microparticles in the plant environment. Environmental science & technology. vol 47. issue 9. 2014-03-25. PMID:23540424. |
the environmental fate of metal oxide particles as a function of size was assessed by comparing the behavior of cuo or zno nanoparticles (nps) to that of the corresponding microparticles (mps) in a sand matrix, with and without wheat (triticum aestivum l.) growth. |
2014-03-25 |
2023-08-12 |
Not clear |
Suresh Kumar Kailasa, Hui-Fen W. Surface modified BaTiO3 nanoparticles as the matrix for phospholipids and as extracting probes for LLME of hydrophobic proteins in Escherichia coli by MALDI-MS. Talanta. vol 114. 2014-03-10. PMID:23953472. |
in this paper, we report the dual function of 12-hydroxy octadecanoic acid (hoa)-modified barium titanate nanoparticles (batio3 nps) as the matrix for phospholipids (pls) and as hydrophobic affinity probes for liquid-liquid microextraction (llme) of hydrophobic proteins in escherichia coli prior to their identification by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (maldi-ms). |
2014-03-10 |
2023-08-12 |
Not clear |
Suresh Kumar Kailasa, Hui-Fen W. Surface modified BaTiO3 nanoparticles as the matrix for phospholipids and as extracting probes for LLME of hydrophobic proteins in Escherichia coli by MALDI-MS. Talanta. vol 114. 2014-03-10. PMID:23953472. |
the surface modified batio3 nps acted as multifunctional probes (as extracting probes and as the matrix) for the analysis of pls by maldi-ms. |
2014-03-10 |
2023-08-12 |
Not clear |
Suresh Kumar Kailasa, Hui-Fen W. Surface modified BaTiO3 nanoparticles as the matrix for phospholipids and as extracting probes for LLME of hydrophobic proteins in Escherichia coli by MALDI-MS. Talanta. vol 114. 2014-03-10. PMID:23953472. |
compared to 2,5-dihydroxybenzoic acid (2,5-dhb), the hoa-modified batio3 nps provided good pls mass spectra with similar or improved signal-to-noise (s/n) ratio, which demonstrated the potentiality of hoa-modified batio3 nps as a pls purpose matrix. |
2014-03-10 |
2023-08-12 |
Not clear |
Debanjan Polley, Arnab Ganguly, Anjan Barman, Rajib Kumar Mitr. Polarizing effect of aligned nanoparticles in terahertz frequency region. Optics letters. vol 38. issue 15. 2014-02-25. PMID:23903132. |
we report the polarizing behavior of aligned ni nanoparticles (nps) having average diameter of 165±15 nm in ~210 μm thick polyvinyl alcohol (pva) matrix in the frequency range of 0.2-1.6 thz. |
2014-02-25 |
2023-08-12 |
Not clear |
Minglu Liu, Robert Y Wan. Phase change nanocomposites with tunable melting temperature and thermal energy storage density. Nanoscale. vol 5. issue 16. 2014-02-21. PMID:23835614. |
these composites consist of a monodisperse ensemble of bi nanoparticles (nps) embedded in a polyimide (pi) resin matrix. |
2014-02-21 |
2023-08-12 |
Not clear |
Minglu Liu, Robert Y Wan. Phase change nanocomposites with tunable melting temperature and thermal energy storage density. Nanoscale. vol 5. issue 16. 2014-02-21. PMID:23835614. |
the bi nps operate as the phase change component whereas the pi resin matrix prevents nanoparticle coalescence during melt-freeze cycles. |
2014-02-21 |
2023-08-12 |
Not clear |