Matches in SemOpenAlex for { <https://semopenalex.org/work/W2016840579> ?p ?o ?g. }
- W2016840579 endingPage "5506" @default.
- W2016840579 startingPage "5500" @default.
- W2016840579 abstract "Silver nanoplates, with average thickness of 20−30 nm and average size tunable from 40 to 300 nm, have been synthesized via a simple room-temperature solution-phase chemical reduction method in the presence of appropriate concentrations of cetyltrimethylammonium bromide (CTAB) and silver seeds. On the surface of the (111) basal plane of these single-crystal nanoplates are adsorbed CTAB molecules, accounting for the anisotropic formation of plates and their head-to-head self-assembled network superstructures. The size-sensitive in-plane dipole plasmon absorption bands of the nanoplates can be shifted to ∼1000 nm in the near-IR region when the aspect ratio of nanoplates reached 9, opening new possibilities for various near-IR-related applications. The mechanisms of the nanoplate formation were studied by varying the concentrations of different reaction components or substituting them with other counterparts. Br- anions, as well as silver seeds, have been found indispensable for nanoplate formation. The reaction started from the CTAB micelle-stabilized silver bromide particles that have contact silver seeds, continued through catalytic reductions regulated by CTAB molecules adsorbed on the (111) plane of the seeds, and finally extended the growth within the (111) plane. Studies from the effects of pH and different reducing agents also support the above conclusions. The detailed scenario for the formation of other shaped particles such as rod or spherical polycrystalline particles is also discussed." @default.
- W2016840579 created "2016-06-24" @default.
- W2016840579 creator A5030648709 @default.
- W2016840579 creator A5079790473 @default.
- W2016840579 date "2004-04-14" @default.
- W2016840579 modified "2023-10-09" @default.
- W2016840579 title "Silver Nanoplates: Size Control in Two Dimensions and Formation Mechanisms" @default.
- W2016840579 cites W1964917040 @default.
- W2016840579 cites W1965722947 @default.
- W2016840579 cites W1967484722 @default.
- W2016840579 cites W1970994785 @default.
- W2016840579 cites W1976627842 @default.
- W2016840579 cites W1978363318 @default.
- W2016840579 cites W1979232921 @default.
- W2016840579 cites W1987280028 @default.
- W2016840579 cites W1988993758 @default.
- W2016840579 cites W1992211258 @default.
- W2016840579 cites W1997042037 @default.
- W2016840579 cites W2005889082 @default.
- W2016840579 cites W2006882472 @default.
- W2016840579 cites W2008877991 @default.
- W2016840579 cites W2009716963 @default.
- W2016840579 cites W2010287396 @default.
- W2016840579 cites W2010467127 @default.
- W2016840579 cites W2018533798 @default.
- W2016840579 cites W2019341862 @default.
- W2016840579 cites W2020343586 @default.
- W2016840579 cites W2021269428 @default.
- W2016840579 cites W2021735434 @default.
- W2016840579 cites W2023097912 @default.
- W2016840579 cites W2023265504 @default.
- W2016840579 cites W2024496934 @default.
- W2016840579 cites W2025404656 @default.
- W2016840579 cites W2025669689 @default.
- W2016840579 cites W2029141895 @default.
- W2016840579 cites W2030040624 @default.
- W2016840579 cites W2034054545 @default.
- W2016840579 cites W2037183046 @default.
- W2016840579 cites W2037336220 @default.
- W2016840579 cites W2037610775 @default.
- W2016840579 cites W2038498485 @default.
- W2016840579 cites W2042076247 @default.
- W2016840579 cites W2046352850 @default.
- W2016840579 cites W2049474409 @default.
- W2016840579 cites W2050811997 @default.
- W2016840579 cites W2052130118 @default.
- W2016840579 cites W2054733410 @default.
- W2016840579 cites W2055285265 @default.
- W2016840579 cites W2055826030 @default.
- W2016840579 cites W2055998340 @default.
- W2016840579 cites W2058009528 @default.
- W2016840579 cites W2060604247 @default.
- W2016840579 cites W2060613971 @default.
- W2016840579 cites W2065989808 @default.
- W2016840579 cites W2066662991 @default.
- W2016840579 cites W2067688031 @default.
- W2016840579 cites W2067765423 @default.
- W2016840579 cites W2069015247 @default.
- W2016840579 cites W2069833170 @default.
- W2016840579 cites W2071066344 @default.
- W2016840579 cites W2074452951 @default.
- W2016840579 cites W2077792494 @default.
- W2016840579 cites W2078642274 @default.
- W2016840579 cites W2080885140 @default.
- W2016840579 cites W2080940452 @default.
- W2016840579 cites W2081037276 @default.
- W2016840579 cites W2082445165 @default.
- W2016840579 cites W2083742811 @default.
- W2016840579 cites W2094744372 @default.
- W2016840579 cites W2112165279 @default.
- W2016840579 cites W2112168354 @default.
- W2016840579 cites W2115797520 @default.
- W2016840579 cites W2122727913 @default.
- W2016840579 cites W2123605247 @default.
- W2016840579 cites W2125044103 @default.
- W2016840579 cites W2147422239 @default.
- W2016840579 cites W3098806771 @default.
- W2016840579 cites W4234612215 @default.
- W2016840579 cites W4236005266 @default.
- W2016840579 cites W4238837542 @default.
- W2016840579 doi "https://doi.org/10.1021/jp031077n" @default.
- W2016840579 hasPublicationYear "2004" @default.
- W2016840579 type Work @default.
- W2016840579 sameAs 2016840579 @default.
- W2016840579 citedByCount "232" @default.
- W2016840579 countsByYear W20168405792012 @default.
- W2016840579 countsByYear W20168405792013 @default.
- W2016840579 countsByYear W20168405792014 @default.
- W2016840579 countsByYear W20168405792015 @default.
- W2016840579 countsByYear W20168405792016 @default.
- W2016840579 countsByYear W20168405792017 @default.
- W2016840579 countsByYear W20168405792018 @default.
- W2016840579 countsByYear W20168405792019 @default.
- W2016840579 countsByYear W20168405792020 @default.
- W2016840579 countsByYear W20168405792021 @default.
- W2016840579 countsByYear W20168405792022 @default.
- W2016840579 countsByYear W20168405792023 @default.
- W2016840579 crossrefType "journal-article" @default.