Showing 12,481 - 12,500 results of 226,904 for search '(( a ((teer decrease) OR (a decrease)) ) OR ( i ((largest decrease) OR (larger decrease)) ))', query time: 1.73s Refine Results
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  5. 12485

    Molecular Origin of Photovoltaic Performance in Donor-<i>block</i>-Acceptor All-Conjugated Block Copolymers by Kendall A. Smith (1477033)

    Published 2015
    “…All-conjugated block copolymers may be an effective route to self-assembled photovoltaic devices, but we lack basic information on the relationship between molecular characteristics and photovoltaic performance. Here, we synthesize a library of poly­(3-hexyl­thiophene) (P3HT) <i>block</i> poly­((9,9-dialkyl­fluorene)-2,7-diyl-<i>alt</i>-[4,7-bis­(alkyl­thiophen-5-yl)-2,1,3-benzo­thiadiazole]-2′,2″-diyl) (PFTBT) donor-<i>block</i>-acceptor all-conjugated block copolymers and carry out a comprehensive study of processing conditions, crystallinity, domain sizes, and side-chain structure on photovoltaic device performance. …”
  6. 12486
  7. 12487

    Molecular Origin of Photovoltaic Performance in Donor-<i>block</i>-Acceptor All-Conjugated Block Copolymers by Kendall A. Smith (1477033)

    Published 2015
    “…All-conjugated block copolymers may be an effective route to self-assembled photovoltaic devices, but we lack basic information on the relationship between molecular characteristics and photovoltaic performance. Here, we synthesize a library of poly­(3-hexyl­thiophene) (P3HT) <i>block</i> poly­((9,9-dialkyl­fluorene)-2,7-diyl-<i>alt</i>-[4,7-bis­(alkyl­thiophen-5-yl)-2,1,3-benzo­thiadiazole]-2′,2″-diyl) (PFTBT) donor-<i>block</i>-acceptor all-conjugated block copolymers and carry out a comprehensive study of processing conditions, crystallinity, domain sizes, and side-chain structure on photovoltaic device performance. …”
  8. 12488
  9. 12489

    Molecular Origin of Photovoltaic Performance in Donor-<i>block</i>-Acceptor All-Conjugated Block Copolymers by Kendall A. Smith (1477033)

    Published 2015
    “…All-conjugated block copolymers may be an effective route to self-assembled photovoltaic devices, but we lack basic information on the relationship between molecular characteristics and photovoltaic performance. Here, we synthesize a library of poly­(3-hexyl­thiophene) (P3HT) <i>block</i> poly­((9,9-dialkyl­fluorene)-2,7-diyl-<i>alt</i>-[4,7-bis­(alkyl­thiophen-5-yl)-2,1,3-benzo­thiadiazole]-2′,2″-diyl) (PFTBT) donor-<i>block</i>-acceptor all-conjugated block copolymers and carry out a comprehensive study of processing conditions, crystallinity, domain sizes, and side-chain structure on photovoltaic device performance. …”
  10. 12490

    Molecular Origin of Photovoltaic Performance in Donor-<i>block</i>-Acceptor All-Conjugated Block Copolymers by Kendall A. Smith (1477033)

    Published 2015
    “…All-conjugated block copolymers may be an effective route to self-assembled photovoltaic devices, but we lack basic information on the relationship between molecular characteristics and photovoltaic performance. Here, we synthesize a library of poly­(3-hexyl­thiophene) (P3HT) <i>block</i> poly­((9,9-dialkyl­fluorene)-2,7-diyl-<i>alt</i>-[4,7-bis­(alkyl­thiophen-5-yl)-2,1,3-benzo­thiadiazole]-2′,2″-diyl) (PFTBT) donor-<i>block</i>-acceptor all-conjugated block copolymers and carry out a comprehensive study of processing conditions, crystallinity, domain sizes, and side-chain structure on photovoltaic device performance. …”
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    AVP levels decline despite persistent hypotension following hemorrhagic shock. by Carrie A. Sims (4532332)

    Published 2017
    “…<p>Pituitary and serum AVP levels were sampled at baseline (Sham), Severe Shock, after 60 minutes of resuscitation (60R) and at 18 hours post resuscitation (n = 6–7 per time point). (<b>A</b>) Posterior pituitary levels (pg/ml ± SEM) of AVP decrease during hemorrhagic shock and were significantly depressed at both 60R and at 18 hours. …”
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