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1 oxyl and sulfate groups of GAGs to trivalent neodymium.
2 e earth elements (REE) cerium, lanthanum and neodymium.
3 ses a significant challenge for recycling of neodymium.
4 do not represent the largest application of neodymium.
5 s to be the youngest to yield variability in neodymium-142 ((142)Nd), the decay product of short-live
7 lts with subchondritic initial neodymium-144/neodymium-143 values become common only after 300 millio
8 A negative array between thorium/cerium and neodymium-143/neodymium-144 indicates that significant a
9 ray between thorium/cerium and neodymium-143/neodymium-144 indicates that significant amounts of the
10 ntinental basalts with subchondritic initial neodymium-144/neodymium-143 values become common only af
13 the HTHH eruption released up to 0.16 kt of neodymium and 32 kt of iron into the SPG, which is compa
15 is paper estimates the annual waste flows of neodymium and dysprosium from permanent magnets, the mai
16 nd future potential of a secondary supply of neodymium and dysprosium from recycling of NdFeB magnets
17 The results show that the current amount of neodymium and dysprosium in NdFeB magnets present in the
21 the United States and in the Japan arc have neodymium and osmium isotopic compositions that are cons
24 lectronic nf(3) (C(5)Me(5))(3)M complexes of neodymium and uranium, compounds which have unconvention
25 ug mL(-1)), praseodymium (0-350 mug mL(-1)), neodymium), and HNO(3) (2-4 M) with varying corrosion pr
27 B) method by employing radiogenic strontium, neodymium, and hafnium isotopes to accurately differenti
30 rare earth element abundances and strontium, neodymium, and oxygen isotope compositions of inorganic
34 de to form the ABC rings of tetracycle 65, a neodymium-catalyzed internal aminal formation for the co
37 Series of curium, americium, europium, and neodymium complexes with five different polyoxometalate
40 of closure temperature, TC, to the samarium-neodymium decay system in garnet for the purpose of cons
41 A hybrid dual-stage bismuth-doped fiber and neodymium-doped fiber amplifier with high optical gain a
44 rm posterior capsule opacification (PCO) and neodymium-doped yttrium aluminium garnet (Nd:YAG) capsul
45 on was achieved through the performance of a neodymium-doped yttrium aluminum garnet (ND: YAG) laser
46 ed a retinal burn from a handheld Q-switched neodymium-doped yttrium aluminum garnet (Nd:YAG) laser p
48 ates of intraocular lens (IOL) decentration, neodymium-doped yttrium aluminum garnet capsulotomy for
49 terior segment laser photocoagulation and no neodymium-doped yttrium aluminum garnet laser capsulotom
51 ence of posterior capsular opacification and neodymium-doped yttrium-aluminum-garnet (YAG) laser caps
52 To report the negative effect of Nd: Yag (Neodymium-doped: Yttrium Aluminium Garnet) laser capsulo
53 its crust plus the mantle) has a samarium to neodymium elemental ratio (Sm/Nd) that is greater than t
54 hotonic quantum memory based on a mesoscopic neodymium ensemble coupled to a photonic crystal cavity.
56 ible pathway toward large-scale recycling of neodymium, even though HDDs do not represent the largest
57 a femtosecond laser using a 60-kHz infrared neodymium glass femtosecond laser at a wavelength of 105
58 anoplatelets, molybdenum(IV) sulfide flakes, neodymium(III) oxide nanoparticles, two sizes of zeolite
59 s single-stage, column-based separation of a neodymium(III)/dysprosium(III) mixture to >98% individua
60 f the diffusion coefficients of samarium and neodymium in almandine garnet and theoretical considerat
61 re reflects a higher proportion of s-process neodymium in the Earth, and not early differentiation pr
63 s and investigations on RENPs containing the neodymium ion (Nd(3+)) greatly increased in number as th
66 Computer hard disk drives (HDDs) containing neodymium-iron-boron (NdFeB) magnets were selected as th
68 ic hydrogels are facilely prepared by mixing neodymium-iron-boron particles with an aqueous poly(acry
75 t that has intermediate lead, strontium, and neodymium isotope ratios compared with the total databas
76 studies have found overlapping strontium and neodymium isotope ratios for Levantine and Egyptian glas
78 dian and Pacific cores recorded Pacific-type neodymium isotope ratios, revealing deep westward flow e
82 ed through the successful detection of seven neodymium isotopes ((142)Nd, (143)Nd, (144)Nd, (145)Nd,
84 study enhances the academic understanding of neodymium isotopes and underscores the potential of LA-S
88 t of the juxtaposition with East Antarctica: Neodymium isotopes of Neoproterozoic rift-margin strata
91 nd 30 million years ago, when Southern Ocean neodymium isotopes record a permanent shift to modern In
92 n spectroscopy (LA-SAS) for the detection of neodymium isotopes, crucial for the characterization pro
93 e retrieved in the BS, we combine the use of neodymium isotopes, high-resolution elemental analysis,
94 esent a high-resolution record of authigenic neodymium isotopes-a water mass tracer that is independe
99 e modified magnetic beads were captured by a neodymium magnet on the surface of screen-printed carbon
103 t visits for ingestions by children of small neodymium magnets between 2009 and 2019, before, during,
104 s designed, including two pieces of external neodymium magnets, providing a reciprocating magnetic fi
106 eport (i) designing of porous 3D flower-like neodymium molybdate nanosheets (pf-NdM NSs) and (ii) att
109 in two key rare earth elements (REEs), i.e., neodymium (Nd) and dysprosium (Dy), which are responsibl
111 recovery strategy focused on the recovery of neodymium (Nd) and lanthanum (La) from monazite ore that
112 ns to determine the timing of volcanism, and neodymium (Nd) and strontium (Sr) isotopes for sedimenta
114 ents (REEs), including praseodymium (Pr) and neodymium (Nd) from discarded LED (DLED) lamps using Aci
119 turbines rely heavily on dysprosium (Dy) and neodymium (Nd), in rare-earth magnets, future adoption o
120 bind with lanthanide fission products, e.g. neodymium (Nd), negating or mitigating the FCCI effect.
121 O) [(R is lanthanum (La), praseodymium (Pr), neodymium (Nd), samarium (Sm), or yttrium (Y)] into an e
124 (where R is lanthanum, cerium, praseodymium, neodymium, or europium; M is iron, ruthenium, or osmium;
125 zation of each derivative established the +3 neodymium oxidation state with redox chemistry occurring
132 nts (LREEs; lanthanum, cerium, praseodymium, neodymium, promethium, and samarium), cobalt, silver, tu
134 re we demonstrate coupling of an ensemble of neodymium rare-earth-ions to photonic nanocavities fabri
135 The calculated Lu/Hf and Sm/Nd (samarium/neodymium) ratios of the ALH parental magma source indic
136 we investigate the potential contribution of neodymium recycling to reducing scarcity in supply, with
138 s, Earth's precursor bodies were enriched in neodymium that was produced by the slow neutron capture
140 curium/uranium (that is, thorium/uranium and neodymium/uranium) provides strong evidence that the obs
146 uses a Q-switched, frequency-doubled Nd:YAG (neodymium, yttrium, aluminum, garnet) laser operating at
147 the view of the optic disc was obscured, or neodymium-yttrium-aluminum-garnet capsulotomy was perfor
148 in 11 eyes (57.9%), 9 eyes (47.4%) required neodymium-yttrium-aluminum-garnet capsulotomy, and 3 eye
149 nlinear, generating the second harmonic of a neodymium-yttrium-lithium-fluoride laser at a wavelength
150 e in endoscopic therapy, including formalin, neodymium/yttrium aluminum garnet, argon and potassium t
151 from cataract surgery to PCO treatment with Neodymium: Yttrium-Aluminium-Garnet (Nd: YAG) laser.
156 after surgery, 35.6% of patients underwent a neodymium:yttrium-aluminum-garnet capsulotomy in the iMi
157 tistically significant difference in PCO and neodymium:yttrium-aluminum-garnet capsulotomy rate 3 yea
160 ere is little evidence that using a diode or neodymium:yttrium-aluminum-garnet laser adds clinical va
161 With the introduction of the side-firing neodymium:yttrium-aluminum-garnet laser in the early 199
162 ities exist, including thermal ablation with neodymium:yttrium-aluminum-garnet laser, argon plasma co
163 e, sulcus IOL placement, piggyback IOLs, and neodymium:yttrium-aluminum-garnet nasal capsulectomy.
165 racheobronchial amyloidosis required Nd:YAG (neodymium:yttrium-aluminum-garnet) laser therapy for obs