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1 d data processing and long-wavelength energy harvesting.
2 age is a worthwhile approach to solar energy harvesting.
3 ng, plant nutrient acquisition, and resource harvesting.
4 lticellular macroalgae are more suitable for harvesting.
5 calisation, photon transportation and energy harvesting.
6 opium alkaloid-containing latex, e.g. during harvesting.
7 itive deionization, and electrochemical heat harvesting.
8 ss transformation optics, sensing, and light harvesting.
9 sors like increased shipping and subsistence harvesting.
10 allaphotocatalysis that are enabled by light harvesting.
11 d photonics, quantum technologies and energy harvesting.
12 r applications in flexible, low-power energy harvesting.
13 ng a strong effect on applications in energy-harvesting.
14 ntamination concentration level and order of harvesting.
15 important role in opto-electronics and light harvesting.
16 or performing rapid quality control of fruit harvesting.
17 e foundation for photocatalysis(1,2), energy harvesting(3) and photodetection(4), among other technol
18  discuss the advantages and disadvantages of harvesting a soft tissue graft from the tuberosity and t
19 sis and sensing technologies, but the energy harvesting abilities of these devices are limited by eac
20 pressure sensitivity, and vibrational energy harvesting ability, which can power miniature wearable e
21 ostructures shows energy migration and light-harvesting across the interfaces of linearly connected s
22 yroelectric figure of merits for sensing and harvesting, along with a relative permittivity of e33sig
23  cells are partiuclarly sensitive to exciton harvesting and are thus, a useful platform for the chara
24 ently exhibiting bio-electrocatalytic energy harvesting and charge storing.
25                             Though the light-harvesting and charge-separation functions of these prot
26 -) (x) nanosheets host, which enhances light harvesting and chemical adsorption of CO(2) molecules dr
27  or hole transport channels for solar energy harvesting and conversion, but their insufficient charge
28 lay mechanisms of polychromatic solar energy harvesting and conversion.
29 d highly active D-A systems for solar energy harvesting and conversion.
30 sing hub, pivotal to the regulation of light harvesting and cyclic electron transfer that protect aga
31 ramatically alter the landscape through tree harvesting and dam building.
32 - defined by habitual planting, cultivation, harvesting and dependence of a farmer on a crop - is kno
33 roduce a highly miniaturized wireless energy-harvesting and digital communication electronics for thi
34  which may control the balance between light harvesting and dissipation in vivo.
35 ansition that regulates photosynthetic light harvesting and electron transfer.
36 losely related to the understanding of light-harvesting and energy transfer processes that occur with
37 ative applications such as atmospheric water harvesting and heat transfer that uses water as a refrig
38 ew possibilities in applications such as fog harvesting and heat transfer.
39 le novel schemes for highly efficient energy harvesting and interconversion.
40  tryptophans to form networks for both light harvesting and light perception.
41 lligence, on group performance on a resource harvesting and management game involving either a negati
42  endow smart textiles with mechanical energy harvesting and multifunctional self-powered sensing capa
43 mal insulation, promoting effective sunlight harvesting and offering comfortable indoor lighting.
44 terials with promising applications in light harvesting and photocatalysis.
45 ng the role of specific carotenoids in light-harvesting and photoprotection, obligating the need for
46 ability to perfectly balance efficient light harvesting and photoprotection.
47 in photosynthesis, primarily providing light-harvesting and photoprotective energy dissipation functi
48  shape of storage roots poses constraints on harvesting and post-harvest processing.
49                         Photosynthetic light harvesting and reaction centre proteins from both kingdo
50 covalent organic frameworks (COFs) for water harvesting and report here a new porous, two-dimensional
51                                        Light harvesting and secondary metabolite biosynthetic pathway
52 or lightweight, elastic and conformal energy harvesting and storage devices.
53 ilicon ICs, printed antennas, printed energy harvesting and storage modules, and printed displays, ar
54  re-entered at 20 weeks for bone core biopsy harvesting and subsequent implant placement.
55 esidue of olive tree pruning and olive fruit harvesting and that are usually removed by either burnin
56 electronic-nuclear mixing in efficient light-harvesting and the different functionalities of Chl a an
57 wave transport required for efficient energy harvesting and vibration mitigation devices.
58  alternative powering methods such as energy harvesting and wireless power transfer.
59 as poor exciton dissociation, limited photon harvesting, and high recombination losses.
60 he optimization of patient conditioning, HSC harvesting, and HSC transduction has further improved th
61 including unidirectional propagation, energy harvesting, and mechanical computation.
62 ns across chemistry, physics, optics, energy harvesting, and medicine.
63 ding many involved in nutrient uptake, light harvesting, and nitrogen metabolism.
64 one-dimensional (1D) lamellar network, light-harvesting, and non-toxicity to mention a few.
65  from land-use change as well as production, harvesting, and transportation.
66 ucing the optical cross-section of the light-harvesting antenna by selectively reducing chlorophyll b
67                   At full sunlight the light-harvesting antenna captures photons at a rate nearly 10
68 inhardtii phosphorylates components of light-harvesting antenna complex II (LHCII).
69 e that the N >= 9 carotenoids found in light-harvesting antenna complexes represent a vital compromis
70  PSII suggested a constitutively small light-harvesting antenna size relative to other green algae.
71 ve determined that there is an optimal light-harvesting antenna size that results in the greatest who
72                By surveying a range of light harvesting antenna sizes achieved by reduction in chloro
73 lorophyll b levels and correspondingly light-harvesting antenna sizes by light-activated Nab1 repress
74 l control system to dynamically adjust light-harvesting antenna sizes for enhanced photosynthetic per
75 ced electron transfer from the excited light-harvesting antenna to Eu(III) was investigated.
76 behavior of the Eu(III) center and the light-harvesting antenna were studied using cyclic voltammetry
77                                Smaller light-harvesting antenna, however, may not exhibit optimal pho
78 cess light conditions and binds to the light-harvesting antenna, triggering the dissipation of captur
79                            We show how light-harvesting antennae can be tuned to maximize power conve
80                                Natural light-harvesting antennae employ a dense array of chromophores
81 ize molecular systems, such as certain light-harvesting antennas, with cartwheeling charge motion upo
82 ical materials offer a new avenue for energy harvesting applications.
83 lized in a WSM toward low-temperature energy harvesting applications.
84 the further development of sustainable light-harvesting applications.
85 s study was to evaluate the influence of two harvesting approaches on the donor site vascular injury.
86 ioxythiophene) required for effective energy harvesting are too hard and brittle for seamless integra
87  contamination as well as in authorized clam harvesting areas.
88                            Calcium carbonate harvesting as well as trawling activities threatens this
89 ow to design soft materials containing light-harvesting assemblies and catalysts to generate fuels an
90 emarkable efficiency of supramolecular light-harvesting assemblies within photosynthetic organisms.
91 ng tunneling events, and, ultimately, energy harvesting at the atomic scales.
92 agoon sites subjected to prohibition of clam harvesting because of chemical contamination as well as
93        This work provides a universal energy-harvesting building block that can be integrated with va
94 esicles to study the impact of MGDG on light harvesting by LHCII.
95 the genetic legacy of large-scale commercial harvesting by reconstructing, on a global scale, the rec
96 ents a paradigm shift for large-scale energy harvesting by TENGs.
97                 Instead, the increased light harvesting capacity of PSI is largely due to the more ef
98                Likewise, the increased light harvesting capacity of PSII upon dephosphorylation was f
99  new solutions for arresting translation and harvesting cells in order to overcome them.
100 pulations of this species through commercial harvesting, changing the phenotype of wild plants in an
101             Amino acid residues of the light-harvesting chlorophyll a/b-binding proteins involved in
102 ne essential for the biogenesis of the light harvesting chlorophyll-binding proteins (LHCP), the most
103                   Cultural control of CBB by harvesting, cleanup of abscised fruits, and chemical spr
104 t-induced phosphorylation in the minor light harvesting complex (LHC) antenna protein LHCB6, which wa
105 otic and biotic stresses widely reduce light harvesting complex (LHC) gene expression in higher plant
106 s by their photosynthetic pigments and light-harvesting complex (Lhc) proteins, the latter of which a
107 ed and spectroscopically characterized light-harvesting complex 2 (LH2) from Rhodobacter sphaeroides
108 es, but transcript accumulation of the LIGHT HARVESTING COMPLEX B nuclear genes LHCB1.2 and LHCB2.3 w
109 idated by immunoblot analysis were two light harvesting complex binding proteins 1 and 3, Rubisco act
110  each of the OHPs when residues of the light-harvesting complex chlorophyll-binding motif required fo
111 lamydomonas reinhardtii (Cr) and on Cr light-harvesting complex II (LHCII) in thylakoid lipid bilayer
112  technique that incorporates the major light-harvesting complex II (LHCII) into compositionally well-
113 tion energy transfer (EET) dynamics of light-harvesting complex II (LHCII) with two-dimensional elect
114 n by changes in the phosphorylation of light harvesting complex II (LHCII), which cause a decrease in
115 the mixed vibronic Q(y)-Q(x) states of light-harvesting complex II.
116 el for the energy transfer between the light-harvesting complex LH1 and the reaction center in purple
117                         Members of the light-harvesting complex protein family participate in multipl
118 gae by protein subunits called LHCSRs (Light Harvesting Complex Stress Related), homologous to the Li
119 lation of photoprotective pigments and light-harvesting complex stress-related proteins was not negat
120 ng chlorophyll b levels and peripheral light-harvesting complex subunits.
121 lex Stress Related), homologous to the Light Harvesting Complexes (LHC), constituting the antenna sys
122                         Photosynthetic light-harvesting complexes (LHCs) of higher plants, moss, and
123                           Like natural light-harvesting complexes (LHCs), the precise arrangement mod
124  starts with the capture of photons by light-harvesting complexes (LHCs).
125 f the antenna rings of chlorophylls in light-harvesting complexes (LHCs).
126 ems (PSI and PSII) from the associated light-harvesting complexes (LHCs).
127 hotosystems in which recombinant plant light harvesting complexes are covalently locked with reaction
128 have shown that the arrangement of the light-harvesting complexes I (LHCIs) differs substantially in
129 mbles the first and the third helix of light-harvesting complexes, including a chlorophyll-binding mo
130  >= 9 carotenoids normally utilized in light-harvesting complexes, zeta-carotene does not quench exci
131 ne of which acts as a quencher for the light-harvesting complexes.
132 ase while depleted in photosystems and light-harvesting complexes.
133 bing phycourobilin (PUB), within their light-harvesting complexes.
134 tional machinery and downregulation of light harvesting components with increasing light intensity an
135                                      Illegal harvesting coupled with habitat degradation has contribu
136 per presents a study of the influence of the harvesting date on concentrations of odorants in Moriste
137 brid n-PS/Ag layers might be useful in light-harvesting devices and photodetectors, since the overall
138 ials, and their broad applications in energy harvesting devices and self-powered sensors.
139   We also demonstrate the creation of energy harvesting devices, such as large area catalytically act
140 y to fabricate high-efficient thermal energy harvesting devices.
141  and can accelerate the fabrication of light-harvesting devices.
142                                       Forest harvesting did not significantly affect soil carbon stoc
143  based on a pool of randomly oriented, light-harvesting donor molecules that funnel all excitation qu
144 xperimental results indicate that the energy harvesting efficiency is improved by two orders of magni
145 hotosynthetic and potentially modulate light harvesting efficiency.
146 ritical to the energy transfer and the light-harvesting efficiency.
147 onjugated polymers and improving their light harvesting efficiency.
148 een exploited for color conversion, sunlight harvesting, electron photoemission, and advanced imaging
149 stem (independent of atmospheric oxygen) for harvesting energy and carbon from dilute organics in was
150                        Various studies about harvesting energy for future energy production have been
151 arding the utilization of smart textiles for harvesting energy from renewable energy sources on the h
152                                              Harvesting energy from the environment offers the promis
153  copper electrode, and a glass substrate for harvesting energy in oil/water multiphases is reported.
154 se for handling small amounts of matter, for harvesting energy, for manufacturing materials and for s
155  molecular separation, energy storage, light harvesting, etc.
156            The kangaroo rats were capable of harvesting far greater amounts of resources under the sa
157 , for example, in low-power, wearable energy harvesting for internet-of-things applications.
158 432 meets the requirements desired for water harvesting from air in that it exhibits an S-shaped wate
159 setup thus helps to distinguish the electron harvesting from some side effects due to quinones in rea
160                    It offers the high-energy harvesting functionality of micro-PMFCs with the high-po
161 plications including (photo)catalysis, light harvesting, gas separation and storage, chemosensing, en
162 was associated with a higher leakage in both harvesting groups (P = 0.02).
163          Sites affected by historical timber harvesting had greater combustion rates due to faster ca
164 ction of these beats in photosynthetic light-harvesting has been extensively debated.
165                                              Harvesting heat from the environment into electricity ha
166                                      Combine harvesting helped to significantly reduce harvesting los
167  Owing to the LSPR-enhanced broadband photon harvesting, high monomer conversion (>99 %) was achieved
168 dial growth response to cyclical understorey harvesting in overstorey oaks (Quercus sp.), so-called s
169                                        Light-harvesting in photosynthesis is accompanied by photoprot
170 nizing principle giving rise to robust light harvesting in the presence of dynamic light conditions a
171 emonstrated principle may be used for energy harvesting in various nanodevices operating at GHz and s
172 dney filtration process); osmosis and energy harvesting (in particular, osmotic power and blue energy
173                                       Energy harvesting is a concept which makes dissipated heat usef
174  implantable medical devices with electrical harvesting is a great challenge.
175   An integrated device for water wave energy harvesting is also presented, confirming its feasibility
176 rstanding the fundamental processes of light-harvesting is crucial to the development of clean energy
177 rrent Internet-of-Things era, on-chip energy harvesting is highly attractive, and to be effective, de
178                               When rainwater harvesting is utilized as an alternative water resource
179 d that in order to achieve efficient triplet harvesting it is critical to engineer the surface of the
180 nding studies have been performed with LIGHT-HARVESTING-LIKE3 proteins, and the pigment-binding abili
181 hough MOFs are promising materials for water harvesting, little research has been done to address the
182 ne harvesting helped to significantly reduce harvesting loss in a range of 3 to 7% (by weight of the
183 e used to construct the framework capable of harvesting low-energy green light to power the rotary mo
184 hich provides robust regulation of the light-harvesting machinery.
185 eneous and heterogeneous catalysts and light harvesting materials, among others.
186 urfactants, surface functionalization, light harvesting materials, non-linear optics, charge storing
187 guide the discovery of next-generation water harvesting materials.
188 er-efficient cropping patterns and rainwater harvesting may yield better results in a shorter period.
189                As an emerging technology for harvesting mechanical energy, low surface charge density
190                        Looking beyond energy harvesting, metal-halide perovskites offer great opportu
191 es suitable lipid induction, cultivation and harvesting methods for industry adoption.
192 ently unachievable using conventional energy harvesting methods.
193 ly friendly alternative to traditional water harvesting methods.
194                Herein, we report a new light-harvesting mixed-ligand Zr(IV)-based metal-organic frame
195  recent advances in the development of light harvesting nanoparticles for solar-to-heat conversion, w
196 h composition of stable supramolecular light-harvesting nanotubes enabled by tunable (~4.3-4.9 nm), u
197 , we find that all 18 tryptophans form light-harvesting networks and funnel their excitation energy t
198  mode of obtaining consent to supplement the harvesting of adequate tissues for transplant if adequat
199                                       Timely harvesting of bone tissue after tumor cell injection and
200 The analysis explains why frequent intensive harvesting of coffee is by far the most effective and ec
201       Nanoparticle-based clusters permit the harvesting of collective and emergent properties, with a
202             Thirty-six patients who required harvesting of CTG were enrolled in this randomized clini
203 otide (NAD(+)) is essential not only for the harvesting of energy from substrates but also for an arr
204 o system developed here, MGDG controls light harvesting of LHCII by modulating the hydrostatic latera
205                                    Selective harvesting of older males could have detrimental effects
206 ency, which allows us to achieve luminescent harvesting of the dark triplet excitons.
207 eavage into the culture supernatant allowing harvesting of the produced proteins.
208 dely underestimated obstacle to quantitative harvesting of the SF products.
209 he reaction protocol involves the successful harvesting of visible light by TETPY assemblies to catal
210 ous fabric architectures for sensing, energy harvesting, or thermal management.
211 ration mechanism for photosensing and energy harvesting over broad wavelength range.
212        Here, we have improved the electrical harvesting performance of twisted carbon nanotube yarn,
213                                              Harvesting period, maturity stage, sample preparation, e
214 to the underlying principles governing light-harvesting phenomena and can accelerate the fabrication
215 ss many technologies, including solar energy harvesting, photochemistry, and optogenetics.
216  in many biological processes, such as light harvesting, photoprotection and visual attraction in pla
217 tensive pigment diversity within their light-harvesting phycobilisomes enables them to utilize variou
218 orophyll-a (chl-a), which is the major light harvesting pigment that absorbs light in the blue and re
219 for characterization of the density of light harvesting pigments in coral.
220 henyl pyridinium derivative (NPS) as a light-harvesting platform.
221                         It is based on light-harvesting polymeric nanoparticles (NPs) encapsulating g
222 nt driven AWC and forecast atmospheric water harvesting potential (L/m(2)/day).
223 s enhanced clam production despite increased harvesting pressure.
224 c digestion (AD) is the most reliable energy harvesting process to achieve waste-to-energy.
225 r instant light response and efficient light-harvesting properties, precise regulation of biological
226 of axial organic heterostructures with light-harvesting properties.
227 ntum coherence and exciton dynamics in light-harvesting protein complexes and semiconducting material
228 nts, the alignment and assembly of the light-harvesting protein machinery in the green leaf optimize
229 to analyze gene sequences for putative light-harvesting proteins in C. meneghiniana, and to elucidate
230       Rhodopsins are the most abundant light-harvesting proteins.
231 ers to yield highly efficient and stable NIR-harvesting PSCs.
232     Photosynthesis achieves near unity light-harvesting quantum efficiency yet it remains unknown whe
233 ophene-based 2D CCP-Th exhibits a wide light-harvesting range (up to 674 nm), a optical energy gap (2
234                                    The light-harvesting-reaction center complex (LH1-RC) from the pur
235 an external reader without wire, battery, or harvesting/regulating element.
236 id whose S1 state plays a significant energy-harvesting role.
237               The advent of multiple exciton harvesting schemes and prolonging exciton lifetimes to i
238  influence of several parameters such as the harvesting season, the geographical origin, the species
239 upling the nitrogenase MoFe protein to light-harvesting semiconductor nanomaterials replaces the natu
240                         We have performed EV harvesting, size analysis by nanoparticle tracking analy
241  sustainable, and cost-effective strategy of harvesting solar energy by solar heating during the dayt
242  an efficient, flexible and always-on energy-harvesting solution, which is indispensable for self-pow
243 application of electrode materials in energy-harvesting/storage devices, ranging from solar cells to
244 tions ranging from sustainability and energy harvesting/storage to tissue engineering and additive ma
245 trate the feasibility of a continuous energy-harvesting strategy that is less restricted by location
246  applications for sensors, actuators, energy harvesting, stretchable and flexible electronics, and en
247 the pigment-protein complexes, are active in harvesting sunlight and in photoprotection.
248 line, which is aided by their superior light-harvesting system and high affinity to iron.
249 or into the NPS-SC4AD co-assembly, the light-harvesting system becomes near-infrared (NIR) emissive (
250            However, the best practical light-harvesting system could only be discovered by empirical
251 bes in a slipped manner, an artificial light-harvesting system with a two-step sequential Forster res
252 oach of designing efficient artificial light-harvesting systems and constructing highly emissive orga
253                                        Light-harvesting systems are an important way for capturing, t
254 e construction of efficient artificial light-harvesting systems based on supramolecular peptide nanot
255                             Artificial light-harvesting systems in aqueous media which mimic nature a
256 rity with structurally related natural light-harvesting systems.
257 one of our understanding of artificial light-harvesting systems.
258 ch is essential for the preparation of light-harvesting systems.
259 to develop highly efficient artificial light-harvesting systems.
260 T) or the epithelialized free gingival graft harvesting technique (FGGT).
261 palate was assigned to receive the trap-door harvesting technique (TDT) or the epithelialized free gi
262              The influence of the vein-graft harvesting technique on long-term clinical outcomes has
263                                      Optimal harvesting techniques, intraoperative preservation strat
264      However, existing moisture-based energy-harvesting technologies can produce only intermittent, b
265 and laser resonators(4), for improving light-harvesting technologies(5-7 and for other applications4,
266 er, the advancement of present osmotic power-harvesting technologies, specifically pressure-retarded
267 mpact a broad range of electronic and energy-harvesting technologies.
268 orm for the highly anticipated osmotic power-harvesting technologies.
269 as great potential for application in energy harvesting technology because the transverse geometry of
270                       As a new-era of energy harvesting technology, the enhancement of triboelectric
271  light on high-performance mechanical energy harvesting technology.
272 transporting membranes show great promise in harvesting the "blue" osmotic energy between river water
273 de application needs to be maintained before harvesting the crop.
274  change and sampled the soils annually after harvesting the maize over the following 6 years (from 20
275 ly because of the high costs associated with harvesting the polymer from pathogen culture.
276                      The results showed that harvesting time and roasting methods significantly (P <=
277 ctive components increased with increases in harvesting time except for tannin and vitamin C that sho
278 otype but individuating the most appropriate harvesting time is essential to obtain high quality frui
279 ate the effects of processing (roasting) and harvesting time on the bioactive components (lutein, zea
280 eing useful for human health and the optimum harvesting time to retain high quantities of most phenol
281 ity of orange colour increased with delay in harvesting time.
282  and vitamin C increased with an increase in harvesting time.
283 n lipid bilayers switches LHCII from a light-harvesting to a more energy-quenching mode that dissipat
284 ime 4.36 min, particle size 23 mm, time from harvesting to steaming 2 h leading to a residual activit
285 ations, such as medical imaging, self-energy-harvesting touch screens and invisible robotic devices.
286 e potential health risks associated with the harvesting, trade, and consumption of bushmeat in Sub-Sa
287 factors allowed introduction of an important harvesting trait in modern tomato.
288 f a dielectric elastomer actuator and energy-harvesting transducer.
289 nterfaces and extended long-wavelength light harvesting via spatially indirect interfacial absorption
290 ndwidth and high efficiency including energy harvesting, virtual reality and information processing d
291 as greater in non-harvested populations, and harvesting was one of the major causes of mortality for
292  combination with other sensor materials for harvesting waste energy from mechanical and thermal sour
293 aking it attractive to develop materials for harvesting water from air to address the imminent water
294 present the concept of high-frequency energy harvesting where the dissipated heat in a sample excites
295 als.(2) An under-explored area is commercial harvesting, which in animals can exert a strong selectio
296 ar water purification, and atmospheric water harvesting, which showcase the unprecedented technologic
297 iverse stimuli in an effort to balance light harvesting with utilizable light energy for carbon fixat
298                                              Harvesting year had a stronger influence on the chemical
299 sition, no study has addressed the effect of harvesting year on elderberries composition and bioactiv
300  properties as well as vineyards terroir and harvesting years.
301 ve likely also suffered strong pressure from harvesting, yet the potential for evolutionary change in

 
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