Matches in SemOpenAlex for { <https://semopenalex.org/work/W3139181818> ?p ?o ?g. }
- W3139181818 endingPage "7560" @default.
- W3139181818 startingPage "7549" @default.
- W3139181818 abstract "Abstract In this work, we successfully demonstrate high‐yield synthesis of high‐quality gold nanorods (Au NRs) with width ranging from 6.5 nm to 175 nm by introducing heptanol molecules as secondary templating agents during cetyltrimethylammonium bromide‐templated, seeded growth method. The results show that an appropriate concentration of heptanol molecules not only alter the micellization behavior of CTAB in water, but also help silver ions impact the symmetry‐breaking efficiency of additional Au−NP seeds in addition to enhancing the utilization of gold precursors. Moreover, the generality and versatility of the present strategy for synthesis of Au NRs with flexible controlled dimensions are further demonstrated by successful synthesis of Au NRs with the assistance of other fatty alcohols with properly long alkyl chains. Furthermore, when arrays of vertically aligned Au NRs with large width (AVA−Au 120×90 NRs) are used as SERS substrates, they can achieve the ultralow limit of detection for crystal violet (10 −16 M) with good reliability and reproducibility, and the rapid detection and identification of residual harmful substances." @default.
- W3139181818 created "2021-03-29" @default.
- W3139181818 creator A5034421443 @default.
- W3139181818 creator A5044553510 @default.
- W3139181818 creator A5052821031 @default.
- W3139181818 creator A5070446912 @default.
- W3139181818 creator A5084900658 @default.
- W3139181818 creator A5088999183 @default.
- W3139181818 date "2021-04-14" @default.
- W3139181818 modified "2023-09-28" @default.
- W3139181818 title "Synthesis of Uniform Gold Nanorods with Large Width to Realize Ultralow SERS Detection" @default.
- W3139181818 cites W1964250581 @default.
- W3139181818 cites W1975727123 @default.
- W3139181818 cites W1976351574 @default.
- W3139181818 cites W1984198171 @default.
- W3139181818 cites W1986594966 @default.
- W3139181818 cites W1990781930 @default.
- W3139181818 cites W1995541548 @default.
- W3139181818 cites W1997883658 @default.
- W3139181818 cites W2007824897 @default.
- W3139181818 cites W2025295644 @default.
- W3139181818 cites W2028470294 @default.
- W3139181818 cites W2037198211 @default.
- W3139181818 cites W2038476511 @default.
- W3139181818 cites W2039591716 @default.
- W3139181818 cites W2048371286 @default.
- W3139181818 cites W2056661809 @default.
- W3139181818 cites W2060761279 @default.
- W3139181818 cites W2062055925 @default.
- W3139181818 cites W2062504376 @default.
- W3139181818 cites W2066748728 @default.
- W3139181818 cites W2073188227 @default.
- W3139181818 cites W2073985842 @default.
- W3139181818 cites W2094964781 @default.
- W3139181818 cites W2099101006 @default.
- W3139181818 cites W2130786144 @default.
- W3139181818 cites W2137037774 @default.
- W3139181818 cites W2234648718 @default.
- W3139181818 cites W2240690531 @default.
- W3139181818 cites W2266419967 @default.
- W3139181818 cites W2322811648 @default.
- W3139181818 cites W2324160691 @default.
- W3139181818 cites W2326613470 @default.
- W3139181818 cites W2327664693 @default.
- W3139181818 cites W2333578679 @default.
- W3139181818 cites W2333737670 @default.
- W3139181818 cites W2514959201 @default.
- W3139181818 cites W2556535195 @default.
- W3139181818 cites W2560348876 @default.
- W3139181818 cites W2583325467 @default.
- W3139181818 cites W2615037279 @default.
- W3139181818 cites W2761332684 @default.
- W3139181818 cites W2767957031 @default.
- W3139181818 cites W2768509700 @default.
- W3139181818 cites W2784574862 @default.
- W3139181818 cites W2791487154 @default.
- W3139181818 cites W2792699430 @default.
- W3139181818 cites W2795365828 @default.
- W3139181818 cites W2811082996 @default.
- W3139181818 cites W2811247482 @default.
- W3139181818 cites W2885741661 @default.
- W3139181818 cites W2891844257 @default.
- W3139181818 cites W2894549396 @default.
- W3139181818 cites W2900554159 @default.
- W3139181818 cites W2919684530 @default.
- W3139181818 cites W2923051677 @default.
- W3139181818 cites W2926186356 @default.
- W3139181818 cites W2943863251 @default.
- W3139181818 cites W2962218204 @default.
- W3139181818 cites W2971763914 @default.
- W3139181818 cites W2974892258 @default.
- W3139181818 cites W2979650873 @default.
- W3139181818 cites W2988550442 @default.
- W3139181818 cites W3007020939 @default.
- W3139181818 cites W4244408677 @default.
- W3139181818 cites W4251325471 @default.
- W3139181818 cites W4251368766 @default.
- W3139181818 doi "https://doi.org/10.1002/chem.202005422" @default.
- W3139181818 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/33769618" @default.
- W3139181818 hasPublicationYear "2021" @default.
- W3139181818 type Work @default.
- W3139181818 sameAs 3139181818 @default.
- W3139181818 citedByCount "3" @default.
- W3139181818 countsByYear W31391818182022 @default.
- W3139181818 countsByYear W31391818182023 @default.
- W3139181818 crossrefType "journal-article" @default.
- W3139181818 hasAuthorship W3139181818A5034421443 @default.
- W3139181818 hasAuthorship W3139181818A5044553510 @default.
- W3139181818 hasAuthorship W3139181818A5052821031 @default.
- W3139181818 hasAuthorship W3139181818A5070446912 @default.
- W3139181818 hasAuthorship W3139181818A5084900658 @default.
- W3139181818 hasAuthorship W3139181818A5088999183 @default.
- W3139181818 hasConcept C119128265 @default.
- W3139181818 hasConcept C126201875 @default.
- W3139181818 hasConcept C127413603 @default.
- W3139181818 hasConcept C134121241 @default.
- W3139181818 hasConcept C171250308 @default.
- W3139181818 hasConcept C178790620 @default.