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- W2021049327 abstract "In this paper, specific molecular design rules are proposed for highly fluorescent, photostable, conjugated polymer dots (CPDs) applicable for the bioimaging of live cells. CPDs are prepared by nanoprecipitation in water using polydiphenylacetylene (PDPA) derivatives and commercial conjugated polymers. Among these, an amorphous, glassy-state PDPA derivative provides highly porous, coarsened nanoparticles. The nanoparticles are dispersed very well in water, and the polymer chains are either hydrodynamically or thermodynamically stable, with a fully relaxed intramolecular stacked structure. This leads to effective radiative emission decays by restraining collisional quenching and vibrational relaxation to achieve an extremely high fluorescence (FL) quantum efficiency. The FL emission quantum yield is as high as 0.76, which is the highest value among those reported for conventional CPDs. The PDPA-based CPD has a very low photobleaching quantum yield (∼10−9), because of its relatively high ionization potential. This aqueous colloidal solution is useful for bioimaging plant and mammalian cells. The excellent FL quantum efficiency, photostability, and cellular uptake suggest that the present CPD is a very promising probe for bioimaging, particularly for long-term imaging and tracking in live cells or experimental animals." @default.
- W2021049327 created "2016-06-24" @default.
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- W2021049327 date "2014-09-25" @default.
- W2021049327 modified "2023-10-18" @default.
- W2021049327 title "Highly Fluorescent, Photostable, Conjugated Polymer Dots with Amorphous, Glassy-State, Coarsened Structure for Bioimaging" @default.
- W2021049327 cites W1911951716 @default.
- W2021049327 cites W1963667377 @default.
- W2021049327 cites W1969036358 @default.
- W2021049327 cites W1970249122 @default.
- W2021049327 cites W1978226676 @default.
- W2021049327 cites W1980695770 @default.
- W2021049327 cites W1981812704 @default.
- W2021049327 cites W1983435054 @default.
- W2021049327 cites W1983819655 @default.
- W2021049327 cites W1983912118 @default.
- W2021049327 cites W1984778054 @default.
- W2021049327 cites W1987924718 @default.
- W2021049327 cites W1988924259 @default.
- W2021049327 cites W1992046537 @default.
- W2021049327 cites W1992060426 @default.
- W2021049327 cites W1993280274 @default.
- W2021049327 cites W1995724714 @default.
- W2021049327 cites W1996672400 @default.
- W2021049327 cites W2004028065 @default.
- W2021049327 cites W2005266165 @default.
- W2021049327 cites W2005502779 @default.
- W2021049327 cites W2005959585 @default.
- W2021049327 cites W2008135284 @default.
- W2021049327 cites W2010620576 @default.
- W2021049327 cites W2012126608 @default.
- W2021049327 cites W2012912555 @default.
- W2021049327 cites W2014920871 @default.
- W2021049327 cites W2015240500 @default.
- W2021049327 cites W2022495988 @default.
- W2021049327 cites W2023715230 @default.
- W2021049327 cites W2027072466 @default.
- W2021049327 cites W2030410930 @default.
- W2021049327 cites W2032185182 @default.
- W2021049327 cites W2035316871 @default.
- W2021049327 cites W2039026706 @default.
- W2021049327 cites W2040199774 @default.
- W2021049327 cites W2041558666 @default.
- W2021049327 cites W2043752657 @default.
- W2021049327 cites W2046029650 @default.
- W2021049327 cites W2046999240 @default.
- W2021049327 cites W2052114579 @default.
- W2021049327 cites W2052370877 @default.
- W2021049327 cites W2053169144 @default.
- W2021049327 cites W2053718499 @default.
- W2021049327 cites W2057934232 @default.
- W2021049327 cites W2063575064 @default.
- W2021049327 cites W2074703091 @default.
- W2021049327 cites W2075178978 @default.
- W2021049327 cites W2081364440 @default.
- W2021049327 cites W2090741997 @default.
- W2021049327 cites W2093650874 @default.
- W2021049327 cites W2094437628 @default.
- W2021049327 cites W2097951284 @default.
- W2021049327 cites W2100077118 @default.
- W2021049327 cites W2102521642 @default.
- W2021049327 cites W2114303511 @default.
- W2021049327 cites W2115203452 @default.
- W2021049327 cites W2117066441 @default.
- W2021049327 cites W2123711607 @default.
- W2021049327 cites W2128602752 @default.
- W2021049327 cites W2129931358 @default.
- W2021049327 cites W2135715498 @default.
- W2021049327 cites W2143159887 @default.
- W2021049327 cites W2154321074 @default.
- W2021049327 cites W2159182565 @default.
- W2021049327 cites W2159408295 @default.
- W2021049327 cites W2161908857 @default.
- W2021049327 cites W2171559455 @default.
- W2021049327 cites W2324427171 @default.
- W2021049327 cites W2330416922 @default.
- W2021049327 cites W4244176622 @default.
- W2021049327 cites W4383476733 @default.
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- W2021049327 doi "https://doi.org/10.1002/adom.201400347" @default.
- W2021049327 hasPublicationYear "2014" @default.
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