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1 er figure of merit ZT, as compared with neat conjugated polymer.
2 ly(p-phenyleneethynylene) (PPE), a prominent conjugated polymer.
3 articles and may further repair photodamaged conjugated polymer.
4 veness as a side chain in an isoindigo-based conjugated polymer.
5 f the first dithienogermole (DTG)-containing conjugated polymer.
6 rformance criteria required for a successful conjugated polymer.
7 entally benign method for the preparation of conjugated polymers.
8 red as an organic semiconductor prototype of conjugated polymers.
9 characteristics of single strands of common conjugated polymers.
10 etals, metal oxides, metal chalcogenides and conjugated polymers.
11 means of tuning the electronic properties of conjugated polymers.
12 ecular-design guidelines for 'disorder-free' conjugated polymers.
13 rategy, based on the use of light-sensitive, conjugated polymers.
14 of catalyst design for the synthesis of new conjugated polymers.
15 among the highest values for unipolar n-type conjugated polymers.
16 ilding block for the preparation of cationic conjugated polymers.
17 ast to the monolayer ordering found in other conjugated polymers.
18 ythiophenes, providing high-molecular-weight conjugated polymers.
19 yst and LiOH, yielding high molecular weight conjugated polymers.
20 ions allows large-scale preparation of those conjugated polymers.
21 in the realization of targeted imaging using conjugated polymers.
22 y and sensitivity of sensor devices based on conjugated polymers.
23 hexanol for functionalizing and solubilizing conjugated polymers.
24 ution-processable n-type thermoelectric (TE) conjugated polymers.
25 c contacts universally with various scalable conjugated polymers.
26 nations by polymer residues and high cost of conjugated polymers.
27 orphology and charge-transport properties of conjugated polymers.
28 general method to induce memory behavior in conjugated polymers.
29 ote dynamic non-covalent crosslinking of the conjugated polymers.
30 nd decreasing the overall production cost of conjugated polymers.
31 first metal-free multicomponent approach to conjugated polymers.
32 ration of high-molecular-weight, defect-free conjugated polymers.
33 (1) organic semiconductors and in particular conjugated polymers, (2) dopants and counterions, (3) in
35 ostructure of a regioregular thiophene-based conjugated polymer, a small-molecule p-type dopant can b
36 magnitude faster carrier mobility along the conjugated polymer alignment direction than the perpendi
41 PC84 BM) on the performance of low band gap conjugated polymer and fullerene solar cells to gain ins
42 ent significantly reduces the modulus of the conjugated polymer and largely delays the onset of crack
43 he different affinities between the cationic conjugated polymer and various forms of DNA (molecular b
44 gy transfer (FRET) experiments between these conjugated polymers and dye-labeled single-stranded DNA
45 de greater than previously reported for bulk conjugated polymers and far greater than predicted by th
46 remain a long-standing fundamental issue in conjugated polymers and full of challenge since conjugat
47 electron transfer reactions with other donor conjugated polymers and hence may find utility in photov
48 synthesized by encapsulation of hydrophobic conjugated polymers and iron oxide nanoparticles in phos
49 ) analysis on a selection of high-performing conjugated polymers and small molecules found in the lit
51 o macroscopic charge transport mechanisms in conjugated polymers and suggest guidelines for optimizat
52 ool to realize direct aggregation control of conjugated polymers and to investigate the interplay bet
53 ion incorporating high-performance ambipolar conjugated polymers and unipolar small molecules as the
54 ucting blend composed of a small-molecule, a conjugated polymer, and a molecular p-dopant is develope
55 s tend to be randomly distributed within the conjugated polymer, and as a result the transport proper
56 ort based on an individual single crystal of conjugated polymers, and demonstrate the importance of i
59 parallels with inorganic semiconductors than conjugated polymers, and that the key challenge to optim
66 ractions of free charge-carriers in doped pi-conjugated polymers are conceptually described by 1-dime
67 terials based both on small molecules and on conjugated polymers are considered, and their applicatio
70 jugated polymers and full of challenge since conjugated polymers are naturally disordered materials.
73 tructurally planar, and solution-processable conjugated polymers are synthesized and implemented in o
78 ree, multiplexed DNA assay using fluorescent conjugated polymers as a detection probe to illustrate h
79 nt solar concentrator (LSC) utilizing two pi-conjugated polymers as antennae for small amounts of the
84 A new class of ambipolar donor-acceptor pi-conjugated polymers based on a dithienocoronenediimide c
85 ly of soluble narrow band gap donor-acceptor conjugated polymers based on dioxythiophenes and cyanovi
88 Through simple addition of a Lewis acid to a conjugated polymer bearing a Lewis basic heteroatom, the
90 ce strong memory behavior from common p-type conjugated polymers by adding n-type dopant 2-(2-methoxy
91 ive transport study of several high-mobility conjugated polymers by field-effect-modulated Seebeck, t
92 will become a versatile tool in the field of conjugated polymers by providing a desirable atom-econom
93 adiazole) (F8BT [f8-bt]) (electron-acceptor) conjugated polymers, by blending them together or by cov
94 solution-state structures of the BDOPV-based conjugated polymer can be tuned such that it forms a 1D
95 erved when ions are incorporated in films of conjugated polymers can be explained by the formation of
96 c states and mechanical stresses inherent to conjugated polymers can be used to noninvasively measure
100 sitive charge carriers (holes) into a single conjugated polymer chain was observed to be light-assist
106 signal amplification has been advanced using conjugated polymers, chirality in polymers, solvating po
108 wing photoinduced electron transfer from the conjugated polymer, CN-MEH-PPV, to the electron-acceptin
110 mimics natural photosynthetics systems with conjugated polymer component to harvest photons and the
111 port patterned deposition of carbon nanotube/conjugated polymer composites from solution with high na
113 , we examine what makes a "good" solvent for conjugated polymers, concluding that dispersive pi-elect
116 olecular stretchability can be enhanced when conjugated polymers, containing modified side-chains and
117 This approach can be applied to a variety of conjugated polymers covering a photoresponse range from
119 that defines the rigid backbone of this new conjugated polymer (CP) motif gives rise to longer-wavel
121 olymer encapsulated nanoparticles containing conjugated polymers (CP) or fluorogens with aggregation
122 complexes of a family of positively charged conjugated polymers (CPs) and green fluorescent protein
123 c-inorganic hybrid solar cells incorporating conjugated polymers (CPs) and nanocrystals (NCs) offer t
124 novel series of main-chain boron-containing conjugated polymers (CPs), boron "doped" polyacetylenes
125 is using artificial antenna systems, such as conjugated polymers (CPs), dendrimers, and J-aggregates.
127 of diacetylenes can yield nearly defect-free conjugated polymer crystals unattainable by other method
129 ting models for the electronic properties of conjugated polymers do not capture the spatial arrangeme
130 s of solar cells composed of narrow-band-gap conjugated polymer donor/fullerene acceptor blends.
132 chieved based on a single-solution-processed conjugated polymer, DPPT-TT, upon careful optimization o
133 general validity for both conjugated and non-conjugated polymers, e.g. poly(9,9-di-n-octylfluorene-al
135 nanoparticles (NPs) (r = 25 +/- 15 nm) of a conjugated polymer, F8BT, on an ITO electrode in the pre
138 perties and inherent mechanical flexibility, conjugated polymer field-effect transistors (FETs) are p
140 hin-film transistors built on highly aligned conjugated polymer films showed more than three orders o
146 single molecule fluorescence measurements of conjugated polymers for long periods of time in solution
149 ral approach using removable and recoverable conjugated polymers for separating s-SWNTs with little p
151 alities into a majority phase nanostructured conjugated polymer, for example in organic photovoltaic
153 trapping effect reported here for composite conjugated polymer/fullerene NPs presents an opportunity
154 Hz) photoconductivity typically observed for conjugated polymer:fullerene blends (at excitation fluen
161 Solution-processed semiconductors such as conjugated polymers have great potential in large-area e
162 branching of solubilizing side chains in pi-conjugated polymers impacts their self-assembling proper
163 manipulate the light-emission properties of conjugated polymers in a highly controllable manner with
166 ggest a design principle for semicrystalline conjugated polymers in fullerene-composite solar cells i
168 e soluble polymer mimics that of segments of conjugated polymers in semiconducting thin films and wil
170 red by reprecipitation of highly fluorescent conjugated polymers in water and are stable in aqueous s
171 e particularly useful in the synthesis of pi-conjugated polymers in which structural changes are nece
173 revealed that the thin-film morphology of a conjugated polymer inherits the features of its solution
174 and robust, and offers easy access to other conjugated polymer-inorganic semiconductor nanocomposite
175 d to improve upon homogeneously distributing conjugated polymer into an insulating supporting matrix.
176 energy transfer between a suitable dye and a conjugated polymer is characterized by means of steady-s
177 elective nano-optode is proposed, in which a conjugated polymer is used as optical transducer and nan
180 Therefore, while fluorescence quenching of conjugated polymers is sufficiently sensitive to detect
181 fying structure formation in semicrystalline conjugated polymers is the fundamental basis to understa
184 k is synthesized and utilized to construct a conjugated polymer leading to high-performance thick-fil
185 s in films, OLED and OSV devices based on pi-conjugated polymers made of protonated, H-, and deuterat
186 work opens a new way into the development of conjugated polymer materials for enhanced Raman imaging.
187 iew is provided over both small molecule and conjugated polymer materials for which field-effect mobi
188 fine-tune the chemodetection selectivity of conjugated polymer materials toward a desired analytical
189 e have determined the order parameter of the conjugated polymer MEH-PPV (poly[2-methoxy-5-(2'-ethyl-h
190 work reports that nanoparticles made of the conjugated polymer MEH-PPV can generate luminescence per
191 oss-linked molecularly imprinted fluorescent conjugated polymer (MICP) materials that possess an intr
192 nd electronic structural modification of the conjugated polymer motif opens up new opportunities for
193 Tantalum-doped tungsten oxide (Ta-WO x )/conjugated polymer multilayers offer a surprisingly smal
194 ntal breakthrough in generating high-quality conjugated-polymer nanocrystals with extended conjugatio
195 A near-infrared dye was encapsulated in the conjugated polymer nanoparticle to successfully generate
199 this review, we summarize the key aspects of conjugated polymer nanoparticles optical properties and
200 ximately 15 nm diameter), highly fluorescent conjugated polymer nanoparticles were evaluated for nano
206 tivity measurements of an electropolymerized conjugated polymer on a transparent Au substrate in a co
209 cing the polymeric donor PBDTBDD with its 2D-conjugated polymer PBDTBDD-T, the power conversion effic
210 the rational design and synthesis of porous conjugated polymer (PCP) that photocatalytically generat
211 surface functionalization using an inert non-conjugated polymer, perfluoropolyether (PFPE), deposited
212 approach utilizes a cationic, water-soluble conjugated polymer PFBT (poly[9,9'-bis(6''-(N,N,N-trimet
215 regioregular narrow band gap (E(g) ~1.5 eV) conjugated polymer PIPCP was designed and synthesized.
216 synthesis of precisely controlled oligomers, conjugated polymers, planar conjugated polymers, and his
218 hesized polymers: PLGA-b-PEG and alendronate-conjugated polymer PLGA-b-PEG-Ald, which ensured long ci
219 Nanoribbon-shaped nanocomposites composed of conjugated polymer poly(3-hexylthiophene) (P3HT) nanorib
220 lease with a novel organic device based on a conjugated polymer poly(3-hexylthiophene) is presented.
221 thin films (15-250 nm) of the semiconducting conjugated polymer poly(9,9-dioctylfluorene-co-benzothia
222 study the oxidation of nanoparticles of the conjugated polymer poly(9,9-dioctylfluorene-co-benzothia
223 a of excitons in oligomers of the ubiquitous conjugated polymers poly(3-hexylthiophene) (P3HT), poly(
224 layer and its subsequent microstructure of a conjugated polymer [poly(2,5-bis(3-alkylthiophen-2-yl)th
225 the chain orientation of a representative pi-conjugated polymer, poly(3-hexylthiophene) (P3HT), durin
226 r topochemical polymerization to the ordered conjugated polymer, poly(diiododiacetylene) (PIDA).
227 nd absorption spectroscopy on two new chiral conjugated polymers, poly(3,3-bis((S)-2-ethylhexyl)-3,4-
228 he most widely studied electron transporting conjugated polymers, poly{[N,N9-bis(2-octyldodecyl)-naph
230 red phosphorescent iridium complex 13 and a conjugated polymer, polyfluorene, has been investigated
233 tion of DHAP now leads to nearly defect-free conjugated polymers possessing comparable, if not slight
234 salts such as TBAF as an n-dopant of organic conjugated polymers possessing lower LUMO (lowest unoccu
235 ariety and increasing chemical complexity of conjugated polymers proliferating the field of organic s
237 with thiophene resulted in a semicrystalline conjugated polymer, PTNT, with a broad bandgap of 2.2 eV
240 provide useful input for the design rules of conjugated polymers required for improved molecular elec
241 etals such as charge-transfer salts or doped conjugated polymers requires high crystallinity, which i
242 st a wide range of analogous narrow band gap conjugated polymers reveals that this V(oc) value is par
243 ons or two holes occupy a single molecule or conjugated polymer segment, are typically considered to
244 gation, and charge transport anisotropy in a conjugated polymer series differing in architecture and
245 described molecularly imprinted fluorescent conjugated polymers show remarkable air stability and ph
246 r similar schemes employed for cross-linking conjugated polymers since it does not require elevated t
247 wide range of fluorescent materials, such as conjugated polymers, small fluorophores, supramolecular
248 three classes of organic semiconductors: pi-conjugated polymers, small molecules, and composites.
251 port that static quenching of a mannosylated conjugated polymer (sugar-PPE) by Concanavalin A is posi
254 analogous series of solution-processable pi-conjugated polymers that combine the electron-rich dithi
255 photoexcitations in two newly synthesized pi-conjugated polymers that contain intrachain platinum (Pt
256 sive efforts have been made to develop novel conjugated polymers that give improved performance in or
257 Polyphenylenes (PPs) represent a class of conjugated polymers that have been used in applications
259 traditional linear donor-acceptor (D-A) type conjugated polymers, these newly designed polymers have
262 ent synthetic methods for the preparation of conjugated polymers, this Perspective reports advances i
263 le light harvesting may be enhanced in other conjugated polymers through judicious design of the stru
264 and target-inert fluorophores into a single conjugated polymer to avoid leakage or differential phot
265 e, we report a molecular design principle of conjugated polymers to achieve concentration-regulated c
266 edioxythiophene) (PEDOT) is the prototypical conjugated polymer used in the doped state as the hole i
268 duce the singlet-triplet energy gap in fully conjugated polymers, using a donor-orthogonal acceptor m
269 ive nonconjugated polymer that converts to a conjugated polymer via an extensive rearrangement of the
270 irst azaborine oligomers and a corresponding conjugated polymer was accomplished by Suzuki-Miyaura co
271 y(paraphenyleneethynylene) (PPE) fluorescent conjugated polymer was assembled on either a quartz subs
274 ries of six diketopyrrolopyrrole (DPP)-based conjugated polymers, we establish a direct correlation b
278 aterials is numerously focused on the p-type conjugated polymers which are generally synthesized by p
279 is employed as the conjugated side chain in conjugated polymers, which can significantly depress the
282 ctive materials by blending a semiconductive conjugated polymer with an organolead halide perovskite
285 these values are the highest reported for a conjugated polymer with such a broad bandgap and are unp
288 n situ synthetic approach to obtain fully pi-conjugated polymers with degrees of polymerization up to
289 ynthetic methodologies to predictably access conjugated polymers with desired Mn and highlights the i
291 There has been rapid progress in developing conjugated polymers with high transport mobility require
295 vestigate a variety of OSECs ranging from pi-conjugated polymers with strong SOC that contain intrach
297 been reported for solution-processed n-type conjugated polymers, with a thermoelectric power factor
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