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1 rystal dissolution led to the release of non-centrosymmetric AB cylindrical diblock co-micelles.
2 es reveal clear evidence of the formation of centrosymmetric aggregates in concentrated solutions and
3           This approach is illustrated using centrosymmetric alpha-glycine crystals doped with minute
4 metmyoglobin reconstituted with a variety of centrosymmetric and pseudocentrosymmetric hemins have be
5 vation of helical spin texture in monolayer, centrosymmetric and semiconducting PtSe2 film without th
6 mplexes in crystals of types A and B are all centrosymmetric and share a common ring conformation.
7                                 We show that centrosymmetric atomic structures can be determined with
8 values for members of the series made of two centrosymmetric benzene-like units are a clear signature
9 ctivity and dynamics of the surface state in centrosymmetric Bi2Se3.
10 ly transform into the bulk soap structure, a centrosymmetric bilayer with an orthorhombic herringbone
11 he other hand, the spin splitting is zero in centrosymmetric bulk and even-number few-layer beta-type
12  on alpha-H2CO3, we do not find evidence for centrosymmetric (C(2h)) carbonic acid dimers here.
13 d [XeOXeOXe](2+) salts are consistent with a centrosymmetric (C2h) cation geometry.
14  of topological nodal-line states in the non-centrosymmetric compound PbTaSe2 with strong spin-orbit
15  without inversion symmetry by combining two centrosymmetric compounds, utilizing periodic anion-vaca
16 the properties that originate from their non-centrosymmetric crystal lattice-but also lend their crys
17 he riddle of anomalous polar behavior of the centrosymmetric crystal of alpha-glycine is resolved by
18 rast to the alpha-form, the gamma-form has a centrosymmetric crystal structure in which the hydrogen-
19 wnmillerite-structured TMOs known to display centrosymmetric crystal structures in their bulk, Ca2Fe2
20  MoS(2) (refs 11, 12), a two-dimensional non-centrosymmetric crystal with direct energy gaps at two v
21 y Hall conductivity in monolayer MoS2, a non-centrosymmetric crystal, cannot be easily tuned, which p
22 ized phases characteristic of diffraction by centrosymmetric crystals.
23  whereas the K, Rb, Cs, and Tl analogues are centrosymmetric (CS) and nonpolar.
24 e ordered in noncentrosymmetric KNaNbOF5 and centrosymmetric CsNaNbOF5.
25  These nanostructures grow to form long, non-centrosymmetric cylindrical A-B and A-B-C block co-micel
26 as a finite dipole moment in contrast to the centrosymmetric D(3d) cluster) can be controlled by usin
27  d33>10 pm V(-1), when incorporated in a non-centrosymmetric DA multilayer stack.
28 ulfur ylide-mediated epoxidation, provided a centrosymmetric diepoxide.
29 hillic interaction reside at the core of the centrosymmetric dimer.
30 d 14 were obtained as orange solids and have centrosymmetric dimeric structures in the solid state wi
31 ows an antiparallel molecular packing (i.e., centrosymmetric dimers) in its crystalline state, which
32 n the triclinic space group P in the form of centrosymmetric dimers, {[Pt(en)(ACRAMTU-S)(adenine-N3)]
33 e exhibits zero spin splitting because it is centrosymmetric down to a single layer.
34 system which was designed exclusively from a centrosymmetric dye possessing desirable two-photon prop
35 s located inside the cavity of the ring in a centrosymmetric fashion: the 1:1 complexes pack in conti
36 udies show that each complex crystallizes in centrosymmetric form with the expected six-coordinate ge
37                                          The centrosymmetric H(aq)(+) ions are linked via short H bon
38                                   First, the centrosymmetric h0l set was assigned phases by symbolic
39                              Conversely, the centrosymmetric heterotypes with the same formula MVOF(4
40 scribed enables the rational creation of non-centrosymmetric, high aspect ratio, colloidally stable c
41 hieve hierarchical control of high-order non-centrosymmetric hybrid nanostructures.
42 f corresponding compounds, some of which are centrosymmetric in the crystalline state.
43 asymmetric form ArSnSn(H)2Ar relative to the centrosymmetric isomer [ArSn(mu-H)]2 as a result of the
44 trast to graphene, monolayer MoS(2) is a non-centrosymmetric material with a direct energy gap.
45 latform to study magnetic Weyl fermions in a centrosymmetric material.
46  local atomic site asymmetries and therefore centrosymmetric materials may exhibit previously overloo
47 the second order susceptibility vanishes for centrosymmetric materials under the dipole approximation
48 -1) that far exceeds thin films and bulk non-centrosymmetric materials.
49 arch for spintronics materials mainly to non-centrosymmetric materials.
50       In particular, we investigate in-plane centrosymmetric meta-atom designs where the approximatio
51                    Optical nonlinearities in centrosymmetric metals are dominated by conduction elect
52 ynthesis was the first desymmetrization of a centrosymmetric molecule in natural product synthesis: J
53 ay structural determination which revealed a centrosymmetric MoMo quadruply bonded molecule.
54 ctural to one another but crystallize in the centrosymmetric monoclinic space group C2/c.
55                                          Non-centrosymmetric nanostructures consisting of multiple fu
56 icles from soft matter, the formation of non-centrosymmetric nanostructures with shape anisotropy rem
57 ar interactions, which promote a locally non-centrosymmetric NLO-active organization.
58 hromophore dipolar interactions that promote centrosymmetric organization.
59 e, these materials are best described in the centrosymmetric orthorhombic Pnma space group.
60 nds are isostructural and crystallize in the centrosymmetric orthorhombic space group Pbam (no. 55, Z
61                 Ca2CdSb2 crystallizes in the centrosymmetric orthorhombic space group Pnma (No. 62, Z
62 , including two nitrates, all of which adopt centrosymmetric packing arrangements.
63  chains, whereas the larger Cs(+) favors the centrosymmetric packing.
64       Recent experiments in polycrystalline, centrosymmetric perovskites (for example, (Ba, Sr)TiO3)
65 second harmonic generation establishes a non-centrosymmetric point group for Pbn+1(Ti0.5Fe0.5)nO3(n+1
66 nge of other material systems possessing non-centrosymmetric point groups.
67 lutions and, as a result, crystallizing in a centrosymmetric polymorph (polymorph alpha) for which th
68                                    These non-centrosymmetric pores, and the universal presence of fle
69  halorhodopsin is determined directly in its centrosymmetric projection using 6.0-A-resolution electr
70 rived A2BB'O6 family, exemplified by the non-centrosymmetric (R3) Ni3TeO6-type Mn(2+)2Fe(3+)Mo(5+)O6,
71 ion analysis demonstrate the presence of non-centrosymmetric regions arising from the off-centering o
72             While PbSe nanocrystals have the centrosymmetric rocksalt lattice, they can lack central
73 reduction of B2 gives a radical anion with a centrosymmetric semiquinoidal structure, while two-elect
74  iron(II) center in the protein itself and a centrosymmetric six-coordinate iron(II) site upon additi
75       Furthermore, while 1 crystallizes in a centrosymmetric space group, 2 and 3 crystallize in pola
76 e structure, containing L- and D-dimers in a centrosymmetric space group, revealed unexpected homolog
77 rescent protein (eYFP) could be explained by centrosymmetric stacking of the chromophoric Tyr66 and t
78                                            A centrosymmetric stress cannot induce a polar response in
79 ntermetallic semiconductor that adopts a non-centrosymmetric structure in the tetragonal I42m space g
80 embles in a one-dimensional, monoclinic C2/c centrosymmetric structure where two equilibrium position
81 crystalline materials can also possess a non-centrosymmetric structure which gives rise to the second
82              X-ray crystallography reveals a centrosymmetric structure, where the dimeric unit is bri
83 ches above 500 GM in spite of its completely centrosymmetric structure.
84 ted by a two-photon mechanism and highly non-centrosymmetric structures such as collagen generate str
85 ems, an ongoing challenge is to generate non-centrosymmetric structures.
86 ricity is, for example, possible only in non-centrosymmetric structures.
87        Moreover, as LnPtBi compounds are non-centrosymmetric superconductors, our discovery further h
88     Li(6)CuB(4)O(10) crystallizes in the non-centrosymmetric triclinic space group P1 (No. 1).

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