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1 ent in 29 eyes (74%) and 86% remained single-layered.
2                     Recently, we showed that layered 2D polymers known as 2D covalent organic framewo
3      To date, only a few naturally occurring layered 2D ternary materials have been explored.
4 h a special focus on novel extra-large pore, layered (2D), nanocrystalline, and hierarchical (mesopor
5                 However, previously proposed layered accumulation of organic matter within aggregate
6               Herein, a screen-printed three-layered all-nanoparticle network was developed as a rigi
7  involves suppressing the nucleation of both layered and 3D perovskites inside the perovskite solutio
8       Furthermore, multiple operators can be layered and interconnected to encode order-independent,
9 atially sensitive magnetic sensor to map out layered antiferromagnetic domain structures at zero magn
10 trength by ~50% and that the transition from layered antiferromagnetic to ferromagnetic order tunes t
11  particular, atomically thin CrI(3) exhibits layered antiferromagnetism, in which adjacent ferromagne
12                   We study the cylindrically layered architecture found in the spicules of the marine
13                                          The layered architecture of stiff biological materials often
14 eV) that originate from the locally crumpled layered architecture.
15 rstanding the link between organic-inorganic layered architectures and toughness could help to identi
16 aals heterostructures form a unique class of layered artificial solids in which physical properties c
17  the tested conditions, this recruitment cue layered atop of the distinct evolutionary trajectories o
18 stigate the electronic structure of the five-layered Ba(2)Ca(4)Cu(5)O(10)(F,O)(2), which has inner co
19 ) The nature of an outcrop of thick, crudely layered, bouldery sandstone and mudstone breccia 10-20 k
20 itic carbon restrains edge reconstruction in layered BP particles to ensure open edges for fast Li(+)
21 al muscle constructs were able to form multi-layered bundles with aligned myofibers.
22 g release assay, we demonstrated that the bi-layered capsule could produce longer-term local drug adm
23 port the development of a polymeric based bi-layered capsule that could address these challenges by e
24 ulations reveal that the presence of N-doped layered carbon on the surface of the nano-Cu particles r
25                               Even for fully layered cases, the large mutual solubility could make th
26 s of electrolytes can be used with a Ni-rich layered cathode (NMC 811) to obtain over 100 cycles at a
27                          High-energy Li-rich layered cathode materials (~900 Wh kg(-1) ) suffer from
28 to address the instability of highly charged layered cathode materials.
29 ntal and theoretical analyses reveal that Li-layered cathodes are more resistant to radiation-induced
30 cts and microstructures evolve in Na- and Li-layered cathodes with 3d transition metals.
31 ansformations, such as amorphization than Na-layered cathodes.
32 f Li-transition metal antisite defects in Li-layered cathodes.
33  as W(110):H(1 x 1) and Bi(114), to quasi-2D layered chalcogenides, and high-dimensional surfaces suc
34 n additive tuning effect on the responses of layered circuits compared to single-layer sponges.
35                                       A five-layered CNN was trained and fine-tuned on a dataset of 3
36                             We prepared this layered composite of GO/G through low-damage plasma trea
37   Ni-rich LiNi(1-x-y) Mn(x) Co(y) O(2) (NMC) layered compounds are the dominant cathode for lithium i
38 age hysteresis compared with ordered Li-rich layered compounds.
39                        Our data suggest that layered condensates of histone-modifying enzymes generat
40 entation of an array of two-dimensional (2D) layered conductive metal-organic frameworks (MOFs) as dr
41 studies have focused on unraveling the multi-layered connections between, and the coordination of, th
42 set pressure for appreciable conductivity in layered copper-halide perovskites can decrease by ca. 50
43 terfacial absorption, making multifunctional layered core-shell structures attractive for energy-conv
44 s pars principalis (AONpP), is a simple, two layered cortex with an outer plexiform and inner cell zo
45 p-type semiconductor Si(2)Te(3) has a unique layered crystal structure with hexagonal closed-packed T
46              Propagating photonic modes make layered crystal waveguides attractive for photonic circu
47               Van-der Waals (vdW) atomically layered crystals can act as optical waveguides over a br
48 lass of materials-van der Waals nanowires of layered crystals-in which a tunable interlayer twist evo
49                                              Layered Cu-Cl perovskites require pressures >50 GPa to s
50 ons of out-of-plane magnetoresistance in the layered delafossites PdCoO(2) and PtCoO(2) The oscillati
51 trong sorption of Tl onto vacancy-containing layered delta-MnO(2) at low dissolved Tl(I) concentratio
52 e adult mouse and rat brain flatmaps provide layered diagrammatic representation of CNS divisions, ac
53 sible active sites for hydrogen reactions on layered dichalcogenides at lower dimensions.
54 teract with each other, contrary to reported layered donor-acceptor electrical conductors.
55  framework (2D-Co-MOF) based on well-defined layered double cores that are strongly connected by inte
56 a naturally occurring green rust, that is, a layered double hydroxide (LDH) containing iron (Fe).
57          In this study, a magnesium-aluminum layered double hydroxide coated on graphene oxide nanosh
58  (NiFeN(x)) catalysts, synthesized from NiFe layered double hydroxide nanosheet arrays on three-dimen
59 en rust" (GR), a redox-active Fe(II)-Fe(III) layered double hydroxide, is a potential environmentally
60                            Iron-doped nickel layered double hydroxides (LDHs) are among the most acti
61                          NiFe and CoFe (MFe) layered double hydroxides (LDHs) are among the most acti
62 n this protocol, metal-containing anions and layered double hydroxides are employed to control the co
63 vated using nickel foils, GaIn eutectic, and layered double hydroxides as model materials.
64 opment of new structural and compositions in layered double perovskite halides enhances the understan
65 rough the rational design and preparation of layered electrode materials with improved performance.
66 mechanism at high potentials in conventional layered electrodes involving both cationic and anionic r
67 ies arise from a highly ordered structure of layered electron-rich conjugated thiophene ring backbone
68                                          The layered electronic structure and appropriately designed
69  the number of atoms and nanoarchitecture of layered elemental precursors enabled the selective synth
70 ts unique structural nature, the vertical 2D layered FAL structure has excellent gas uptake performan
71     The dense crystal packing of CQDs in the layered fashion suppresses local molecular rotations and
72 ppropriately designed band alignment in this layered ferroelectric heterostructure provide an opportu
73 ocedure and a computational model of a three-layered fibrous scaffold for prolonged drug release.
74 arbon liquid injection of OVD secured single-layered flaps intraoperatively and postoperatively.
75     The core adopts a previously unseen four-layered fold, which encloses a large nonproteinaceous de
76  We have successfully grown centimeter-sized layered [Formula: see text] single crystals under high o
77 ad of a Jahn-Teller distortion even for this layered [Formula: see text] system.
78 (1) the ability to generate condensates with layered functional topologies, and (2) the ability to ge
79    This is the first time that active double-layered furcellaran/gelatin hydrolysate films containing
80 that shade avoidance is regulated by a three-layered gas-and-brake mechanism of bHLH protein interact
81                          The potential of 2D layered GeAs for many applications such as anisotropic p
82 intrinsic nonlinear optical properties of 2D layered GeAs have not been explored yet.
83 omising learning approach suitable for multi-layered genomic data integration, given its robustness t
84 d structural tensions created from the multi-layered geometry of the building blocks.
85      A newly introduced two-dimensional (2D) layered germanium arsenide (GeAs) has attracted growing
86 is study we developed a uniform, large-area, layered graphene composite of graphene oxide/graphene (G
87 ristics are in sharp contrast with those for layered graphene.
88                      In situ measurements of layered growth reveal that undissolved silica nanopartic
89 y the identification of conditions promoting layered growth, which correlates to the use of sodium as
90                                       Hybrid layered halide perovskites have achieved impressive perf
91                         Two-dimensional (2D) layered halide perovskites have recently attracted wides
92  photoluminescence that may be attained from layered halide perovskites, with an emphasis on how the
93                              However, single-layered helical oligomers with biochemical and ultrastru
94 he skyrmionic devices based on van der Waals layered heterostructures.
95 x-layered parahippocampal isocortex to three-layered hippocampal allocortex.
96                                       Though layered hybrid lead-halide perovskite materials have dem
97                                              Layered hybrid metal-halide perovskites with non-centros
98 ermodynamic equilibrium states is desired in layered hybrid perovskite films to direct charge transpo
99 t two-dimensional (2D) and weak van der Waal layered hybrids.
100                              In recent years layered hydroxides (LHs) have been studied for a range o
101 n disks under realistic conditions, that is, layered ices irradiated by soft X-rays.
102 rwent vitrectomy using a semicircular single-layered ILM inverted flap assisted by a sub-perfluorocar
103 end themselves against pathogens using a two-layered immune system.
104 t light is an ideal external stimulus on the layered In(2) O(3) system, and its electronic structure
105 ate a 30-fold enhancement of sensitivity via layered inkjet dispense.
106  and novel optoelectronic applications using layered inorganic-organic and other metal organic framew
107 rage our open-source code to expand upon our layered interactive technology and/or apply it in new wa
108 nd litre plots through the implementation of layered interactivity.
109                                   We utilize layered interfacial polymerization to prepare physically
110 form layers of monomineralic anorthosites in layered intrusions are products of the chamber replenish
111 -ray scattering measurements reveal that the layered ionic aggregates in PES23Li, PES23Na, and PES23C
112    We demonstrate here that the lithium-rich layered iron sulfide Li(2)FeS(2) as well as a new struct
113 cise control over their morphology (bulk vs. layered) is presented.
114 lectronic coupling to flat-band phonons in a layered kagome paramagnet, CoSn.
115                                              Layered kagome-lattice 3d transition metals are emerging
116                            Cathodes based on layered LiMO(2) are the limiting components in the path
117                                         This layered liquid recruits Rad6 and the nucleosomal substra
118 ty exchange field is highly sensitive to the layered magnetic structure as a whole.
119                                    These 2-D layered material derived quantum dots are synthesized vi
120 ithium-rich nickel-manganese-cobalt (LirNMC) layered material is a promising cathode for lithium-ion
121   Lead Iodide (PbI(2)) is a large bandgap 2D layered material that has potential for semiconductor ap
122  to minimize this confinement, a vertical 2D layered material was designed and synthesized, with a ro
123 , alkali metal ions can move in and out of a layered material with the charge being compensated for b
124           Black phosphorus (BP), an emerging layered material, has recently been explored for a wide
125 ntial" that captures the key interactions of layered materials and makes it possible to predict the s
126 ws this phenomenon can be quite prevalent in layered materials and reveals how to identify prospectiv
127 ymers, nanotubes, nanowires, two-dimensional layered materials and van der Waals heterojunctions with
128 fundamental property of two-dimensional (2D) layered materials and van der Waals heterostructures due
129                               Traditionally, layered materials are grown on flat substrates; growing
130 ls (vdW) heterostructures formed by stacking layered materials can accelerate scientific and technolo
131 heds light on a promising design strategy of layered materials for high-kinetics charge storage.
132                                Therefore, 2D layered materials have been explored as diffusion barrie
133 nsient heat transport in two-dimensional and layered materials in a wide temperature range.
134 would contribute to the broad adoption of 2D layered materials in industry.
135                  Identifying two-dimensional layered materials in the monolayer limit has led to disc
136 tion method and its versatility to different layered materials may open doors for automating the fabr
137 ltrathin two-dimensional (2D) semiconducting layered materials offer great potential for extending Mo
138                  Planar two-dimensional (2D) layered materials such as graphene, metal-organic framew
139  these twist-induced phenomena are common to layered materials such as transition-metal dichalcogenid
140 set of zeolite structures exist as naturally layered materials where postsynthesis steps can be used
141 ent a general model describing the growth of layered materials with screw-dislocation spirals on non-
142 y of its layer transfer process to different layered materials without requiring a specialized stamp-
143 of such monolayer structured two-dimensional layered materials, including semiconductors, metals, and
144 ures of atomically thin two-dimensional (2D) layered materials, namely molybdenum disulfide and black
145 ur, we studied its growth on two-dimensional layered materials.
146 k can be fully generalized to other emergent layered materials.
147 e oxygen-loss-induced voltage fade in LirNMC layered materials.
148 easibility of bromine intercalation on these layered materials.
149 rmodynamic properties of van der Waals (vdW) layered materials.
150                         MXenes, derived from layered MAX phases, are a class of two-dimensional mater
151                    Here, we describe a multi-layered mechanism by which H3K27me3 is globally lost fro
152 tering physics and difficult to interpret in layered media.
153 s show the presence of EVs delimited by a bi-layered membrane, in accordance with the morphology and
154                                        A new layered mesoporous Zr-MOF of composition [Zr(30)O(20)(OH
155 s present a facile approach to tailor hybrid layered metal halide perovskites with potential for spin
156 imiting cases of a periodic metal-dielectric layered metamaterial, from which a metal can continuousl
157 h absorption of electromagnetic waves in its layered, metamaterial-like structure.
158        Phyllosilicates, strongly anisotropic layered minerals, are abundant in these rocks, where the
159              Hexagonal birnessite, a typical layered Mn oxide (LMO), can adsorb and oxidize Mn(II) an
160 e intercalation causes colossal reduction in layered MnBDC band gap while it has no observable effect
161                                         Once layered MnBDC is stabilized, topotactic intercalation ch
162 basis of this definition, we conceptualize a layered model of essential oral health care that integra
163 esults demonstrate that high conductivity in layered MOFs does not necessarily require a metal-ligand
164 us in physics; transition metal oxides(1,2), layered molecular crystals(3) and trapped-ion arrays(4)
165                                          Few-layered molybdenum disulfide (MoS(2)) nanosheets are poi
166 sition-metal dichalcogenides, MX(2), and non-layered monochalcogenides, REX, where M = Ta, Nb, RE = S
167     HRTEM reveals the existence of hexagonal layered MoS(2) formation on the spherical shaped TiO(2)
168 2) nanosheets to form a quartz microrods@few-layered MoS(2) hierarchical heterostructure (QMSH).
169 rovide an internal electric field to the few-layered MoS(2) nanosheets surrounding the quartz MR surf
170                          Ti3C2, the first 2D layered MXene, was isolated in 2011.
171 thelium, stroma, vascularized mucosa and two-layered myometrium.
172 nisms of the sulfur anionic redox process in layered NaCr(2/3)Ti(1/3)S(2), which occur through the fo
173 rticles, nanowires, nano- or microbelts, few-layered nanosheets, nano- or microplates, thin films, si
174 y of African savannah herbivores using multi-layered network analysis.
175 ir characteristics and are linked in a multi-layered network representing the social structure-includ
176 thod for tomographic reconstruction of dense layered objects, with range of projection angles limited
177                        In this study, a dual layered OC interface was bioprinted using a newly develo
178   The highly ordered structure of the single-layered oligomers and their likeness to the matrix layer
179 various photonic structures, including multi-layered, opal, and chiral structures, as well as photoni
180 higher ionic conductivity than the isotropic layered or hexagonal morphologies.
181 l, biological and mechanical insults, a mono-layered or stratified epithelium that forms tight juncti
182 truction is commonly observed in nickel-rich layered oxide battery cathode materials, causing unsatis
183 s K[Formula: see text] dynamics in honeycomb layered oxide material [Formula: see text] using mainly
184 rge quantity of diffraction patterns in many layered oxide particles, including geometrically necessa
185 ies of the detected oxides suggests that the layered oxide scale function as an efficient conductor o
186 l lithium chemistry of a high-nickel lithium layered oxide, Li(Ni(0.91) Co(0.06) Mn(0.03) )O(2) (NCM9
187 ctrochemical properties of lithium-excessive layered-oxide electrodes.
188                                 Lithium-rich layered oxides (LLOs) are prospective cathode materials
189 ynthesis and handling of high-nickel (>90 %) layered oxides and their use as high-energy-density cath
190                              Li- and Mn-rich layered oxides are among the most promising cathode mate
191           Oxygen-anion redox in lithium-rich layered oxides can boost the capacity of lithium-ion bat
192 slocations may facilitate redox reactions in layered oxides during initial charging.
193 sible oxygen redox reactions in conventional layered oxides for high-capacity lithium-ion batteries.
194                                      P2-type layered oxides suffer from an ordered Na(+) /vacancy arr
195 ally resolved charge distribution in lithium layered oxides with different grain crystallographic arr
196 ectrode materials, especially for sodium-ion layered oxides, motivating the exploration of high compo
197 lity and fast capacity decay in most P2-type layered oxides.
198 a solution toward the design of alkali metal layered oxides.
199 understanding fundamental defect dynamics in layered oxides.
200 radual cytoarchitectural transition from six-layered parahippocampal isocortex to three-layered hippo
201 rozen-hydrated specimens of rotavirus double-layered particles and HIV-1 virus-like particles under l
202 , the entorhinal cortex presents a clear six-layered pattern.
203   The mechanism of white-light emission from layered Pb-X (X = Cl or Br) perovskites following UV exc
204  mechanistic pathways for the formation of a layered (Pb(0.5)Sn(0.5)Se)(1+delta)(TiSe(2)) (m) heteros
205  doping effects through demonstrating double-layered PEA(2)PbI(4)/PEA(2)SnI(4) heterostructure when s
206                                  A series of layered peripheral checkpoints maintain self-reactive B
207                                          The layered perovskite templates the solid-state phase conve
208  which can be a general design rule to align layered perovskites along the out-of-plane direction in
209 found that in-plane exciton diffusivities in layered perovskites are sensitive to both the number of
210 re we report a templated growth mechanism of layered perovskites from 3D-like perovskites which can b
211                                              Layered perovskites have been employed for various optoe
212 s which surprisingly templates the growth of layered perovskites, enabled by the periodic corner-shar
213 on diffusion by modifying organic cations in layered perovskites.
214 al strategy to manipulate the orientation of layered perovskites.
215 dary (APB) and twin boundary (TB) separating layered phases played an important role on phase change.
216 e Li/transition metal (TM) ion mixing in the layered phases was detected to induce the rock-salt phas
217 We find that the intensification of metallic layered phenomena above thunderstorms is associated with
218                        Here we exfoliate the layered pigment CaCuSi(4)O(10) (Egyptian Blue, EB) via b
219  to deliver across the lignin-rich and multi-layered plant cell wall that poses the dominant physical
220 monly plaque rupture, intraplaque cavity, or layered plaque.
221 ith H(2) under moderate conditions to form a layered polyanionic hydride BaGa(2)H(2), effectively cat
222  critical for better understanding the multi-layered processes that underlie immune function and dysf
223  sense galacturonic acid to initiate a multi-layered program towards successful mammalian infection.
224 els in the research area was determined by a layered random sampling method.
225 ultralow kappa(L) value in the all-inorganic layered RP perovskite Cs(2)PbI(2)Cl(2).
226 a(L)) in the single crystal of all-inorganic layered Ruddlesden-Popper (RP) perovskite, Cs(2)PbI(2)Cl
227                               We synthesized layered Ruddlesden-Popper FA(n+1)Pb(n)X(3n+1) (FA = form
228 ent tunneling barrier and domain size on few-layered Ruddlesden-Popper perovskite.
229 n unconventional paramagnetic metal, and the layered Ruddlesden-Popper phases R(4)Ni(3)O(10), (R = La
230 rol the microstructure of solution-processed layered Ruddlesden-Popper-phase perovskite films based o
231 It is demonstrated that the introduced three-layered scaffold delays the drug release process and can
232       Macroscale structures (e.g., tubes and layered scaffolds) are fabricated from these materials t
233  we incorporate rather thick two-dimensional layered semiconducting crystals for reliable vertical di
234 he valley pseudospin via magnetic dopants in layered semiconducting materials, paving the way toward
235                  Here, bottom-up synthesized layered semiconductor (Ge(1-) (x) Sn(x) S) nanoribbons w
236 of single, multi-walled carbon nanotubes and layered sheets in the coating.
237 mbic phase of GeSe, a structural analogue of layered SnSe (space group: Pnma), has recently attracted
238                             The promising P2-layered sodium transition metal oxides (P2-Na(x)TmO(2))
239 he understanding of these highly anisotropic layered soft organic perovskite materials under extreme
240 as well as other structurally complex, e.g., layered solids that are relevant in diverse areas of che
241             ACsN combines camera physics and layered sparse filtering to significantly reduce the mos
242 ed on two different configurations for multi-layered structure approach, with the intention to reduce
243                              The original 3D layered structure can be restored by a solvothermal proc
244 her the MTOC at the nuclear envelope as a bi-layered structure generating two pools of microtubules w
245 3 mm in diameter showed the development of a layered structure in which a concentric filamentous cyan
246                           Large folds in the layered structure indicate that the merging of the two c
247                                              Layered structure of bone, cartilage and the bone-cartil
248 dependent on a complex interplay between the layered structure of the starting crystal, the thermodyn
249                                          The layered structure of this compound coupled with uniquely
250                                   Due to the layered structure of vdW materials, the polaritons can e
251 ormation of a blastocyst, an organised multi-layered structure ready for implantation.
252 erovskite ferroelectrics, Bi(2) WO(6) with a layered structure shows a great potential to preserve it
253      The proposed scheme includes a graphene layered structure that is driven by a quantum microwave
254  and folded, presents a thin eggshell with a layered structure that lacks a prismatic layer and disti
255 phenethylammonium lead iodide (2D-PEPI) have layered structure that resembles multiple quantum wells
256              This compound crystallizes in a layered structure where Cu atoms forming dimers are sand
257 ps ephemeral, of transitional objects with a layered structure whereby a metal-rich core is enclosed
258 Remarkably, the developed capsules have a bi-layered structure which ensures the structural integrity
259     It is composed of a self-biased magnetic layered structure with perpendicular magnetic anisotropy
260          The combined effect of soft elastic layered structure, abundance of low energy optical phono
261                             By virtue of the layered structure, van der Waals (vdW) magnets are sensi
262                          By creating a multi-layered structure, we were able to create a low powered
263 on Li depletion, the APB extended across the layered structure, while Li/transition metal (TM) ion mi
264                                The PLC has a layered structure, with two editing modules forming a fl
265 ffusion lengths and strain introduced by the layered structure.
266 all effects, because of their characteristic layered structures composed of noble metal A and strongl
267 consumption devices motivates the search for layered structures that stabilize chiral spin textures s
268 r systems for synthesizing novel, metastable layered structures with new functionalities.
269 of DNMT3A and DNMT3B, we here report a multi-layered substrate-recognition mechanism underpinning the
270 out sutures showed that they supported multi-layered surface epithelialization.
271 ium cations (Al(3+)) was incorporated into a layered surface film comprising a partially "hydrated" M
272 via fractal-like paths, allows for patterned layered surface structures.
273 t images of fully crystalline materials with layered surfaces are evidence of classical growth by mol
274 nality prompted exploration of expanding non-layered ternary chalcogenides into the 2D realm.
275                   It either remains a single-layered, thinning epithelium called "Rauber's layer," wh
276 he delicate morphology of e.g. fragile, mono-layered three-dimensional organoids.
277 nd distortion compared to any other reported layered tin iodide perovskite.
278                    Here we present three new layered tin iodide perovskites templated by chiral (R/S-
279 assumptions, anisotropic RBC scattering, and layered tissues may confound classical DOF.
280 cay during cycling, which is associated with layered-to-spinel phase transition and oxygen redox reac
281 l support for the dominant theory that multi-layered tooth enameloid facilitated evolutionary diversi
282  potential cellular examples and discuss how layered topologies and self-regulation may impact key bi
283 rcuits are demonstrated by integrating multi-layered transistors on a single chip using sequential li
284 mposition close to Ta(1.6)Te, derived from a layered transition metal dichalcogenide, are isolated wi
285 d, and then the potential of atomically thin layered transition metal dichalcogenides as next-generat
286 l disassembly and simultaneous reordering of layered transition-metal dichalcogenides, MX(2), and non
287                               Substituted Li-layered transition-metal oxide (LTMO) electrodes such as
288                            Alloying selected layered transitional metal trichalcogenides (TMTCs) with
289  crystallinity and permanent porosity of the layered two-dimensional (2D) structure were established.
290                                          The layered two-dimensional molecularly woven material has l
291          Muong Nong-type (MN) tektites are a layered type of tektite associated to the Australasian s
292 tability, and decent washability, the single-layered ultra-soft smart textile is simultaneously capab
293                    Here, we present a single-layered, ultra-soft, smart textile for all-around physio
294 nscript-based annotation of TEs that we have layered upon the existing high-quality community standar
295                                         Pure layered V(2) O(5) has a high theoretical capacity (585 m
296               Two-dimensional materials from layered van der Waals (vdW) crystals hold great promise
297                                              Layered van der Waals (vdW) materials belonging to the M
298          In this study, we selected a common layered zeolite, the MWW framework, to explore methods o
299 prove to be more broadly applicable to other layered zeolites.
300 ed by substituting Ca by H in a beta-CaGe(2) layered Zintl phase through topochemical deintercalation

 
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