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1  and crystallographic orientation of TES-ADT spherulites.
2 t by fabricating arrays of devices on single spherulites.
3 thereby increasing the GB density of TES-ADT spherulites.
4 in the different-sized cores observed in the spherulites.
5 Maltese-cross" extinction pattern typical of spherulites.
6 tion with salt concentration is observed for spherulites.
7                        In the center of each spherulite, a "core" of less regularly oriented material
8                                              Spherulites, a common crystalline superstructure found i
9                The gels are characterized by spherulite and other bilayer defects consistent with a l
10 al-algal communities that produce aragonitic spherulites and encase the dinoflagellates as endolithic
11 orrelation between coverage of a device with spherulites and its performance.
12 lution and that concurrent amorphous phases, spherulites, and microfibers are not building blocks for
13 lysis, and optical polarimetry show that the spherulites are composed of helicoidal crystallites twis
14 l is observed, whose size decreases when the spherulites are formed in the presence of increasing con
15   The microstructure of mannitol ring-banded spherulites compares favorably to that of high polymers
16 idone) (PVP) or D-sorbitol, form ring-banded spherulites composed of handed helical fibrils, where th
17                                          The spherulites contain a large quantity of well defined amy
18    The linear optical properties of sorbitol spherulites containing the azo dye amaranth were analyze
19                             Devices with 82% spherulite coverage reach a power conversion efficiency
20 nd kinetics of bovine insulin amyloid fibril spherulites formed in the presence and absence of differ
21                   D-sorbitol forms so-called spherulites from under-cooled melts.
22              Images of transmittance of dyed spherulites in polarized light were recorded with a CCD
23                                The dyeing of spherulites is thus a general method of solute alignment
24          The formation of amyloid-containing spherulite-like structures has been observed in some ins
25                                              Spherulites obviate the substantial experimental complex
26         Crystal optical properties of banded spherulites of 21 different compounds--molecular crystal
27                                       Banded spherulites of aspirin have been crystallized from the m
28  likened to that leading to the formation of spherulites of polyethylene, in agreement with observati
29 t of short-fragment (146-bp) DNA cholesteric spherulite pitch as a function of osmotic pressure, aver
30                      Plane sections of doped spherulites present all orientations of an electric dipo
31 ependence follows azimuthal rotations of the spherulite radii around the wave vector, while absorbanc
32                                  The general spherulite structure consists of radially oriented amylo
33 e show in both coral and synthetic aragonite spherulites that crystal growth by attachment of ACC par
34  of low-angle grain boundaries within single spherulites, we find intraspherulitic charge transport t
35 ng of these blends leads to the formation of spherulites, which consist of a network of anthradithiop

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