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1 lex is low-spin with temperature-independent paramagnetism.
2 nd quantitatively characterized the acquired paramagnetism.
3  Compound 1 exhibits temperature independent paramagnetism.
4 t observable in the native ferredoxin due to paramagnetism.
5 nsistent with nearly temperature-independent paramagnetism.
6 Fe12O19 nanoparticles from ferromagnetism to paramagnetism.
7 tronic and geometric shells, leading to both paramagnetism (23 valence e(-)) and enhanced catalytic a
8  derivative 13, which should have observable paramagnetism according to the calculated paramagnetic s
9  coupling results in temperature-independent paramagnetism and accounts for the large dispersion in (
10 d E-fields can also induce switching between paramagnetism and antiferromagnetism.
11 xidase, HRP, despite the high-spin iron(III) paramagnetism, and a quantitative interpretive basis of
12              Compound 2 exhibits Curie-Weiss paramagnetism, and an antiferromagnetic ordering below 7
13 ata, the structure's temperature-independent paramagnetism, and computational studies support the sha
14 on of the enzyme's comparatively large size, paramagnetism, and limited thermal stability.
15 ole of spin-orbit coupling constants (zeta), paramagnetism, and steric effects in the development of
16 ate upon heating, while other dimers exhibit paramagnetism at all temperatures.
17 al 9 shows the temperature-independent Pauli paramagnetism characteristic of a metal with a magnetic
18 t displays the temperature-independent Pauli paramagnetism characteristic of a metal with a magnetic
19 etallic behavior and temperature-independent paramagnetism consistent with results from band structur
20 Notably, TiCl(2)(pyrazine)(2) exhibits Pauli paramagnetism consistent with the specific heat, support
21 pounds are also redox-active and a source of paramagnetism, emulating eumelanin's unique electronic p
22 y tested protein tagging as a way to exploit paramagnetism, enables to detect binding, even weak inte
23 to occur, as well as the appearance of Pauli paramagnetism in [Formula: see text] A unified and syste
24            We report reversible switching of paramagnetism in a well-defined gold nanoparticle system
25 e can be found in ferroelastic LaCoO(3) with paramagnetism in bulk.
26                      We report evidence that paramagnetism in CdSe QDs can be induced via manipulatio
27                     This unpredicted overall paramagnetism in the oxoammonium salt solutions is expla
28 ntermolecular spacing, the solid shows Curie paramagnetism in the temperature range 100-400 K, before
29 netic circular dichroism studies reveal that paramagnetism in these nanocrystals can be controlled an
30 ng time NOESY, steady-state NOE, and cluster paramagnetism-induced relaxation.
31                 The results suggest that the paramagnetism is induced via pi back-bonding between Cd
32                  In contrast to the expected paramagnetism, localized spins supported by enhanced exc
33  state of a metal site and thus modulate the paramagnetism of a system.
34                                              Paramagnetism of Fe2+ renders the active site of ARD' in
35                                        Using paramagnetism of free radicals as a driving mechanism, c
36 s the attractive near-infrared photonics and paramagnetism of gold quantum dots, and enhances the dru
37 gand histidines in oxidized TtRp, the strong paramagnetism of the [2Fe-2S] cluster prevented the assi
38                                 The observed paramagnetism of the complex by Evans method measurement
39 5)H(4)SiMe(3))(3)U-H(2) (complex 1), and the paramagnetism of the f(3) center facilitates the detecti
40    The suspension process is assisted by the paramagnetism of the MnCl(2) solution placed between the
41  within the Kagome arrangement dominates the paramagnetism of the MOF, leading to strong geometrical
42       By using paramagnetic NO to quench the paramagnetism of Y(.)(z), we are able to observe the ESE
43  magnet nanoparticles from ferromagnetism to paramagnetism provides an effective approach to finding
44 f temperatures to locate residues shifted by paramagnetism, relaxation analysis, and use of dipolar s
45 ith the transverse field, the crossover from paramagnetism to ferromagnetic order sharpens as the sys
46 nd attendant subtle perturbation of the Fe2+ paramagnetism upon loss of the proton with the pK of 8.5
47 significant peak broadening, indicating some paramagnetism verified by magnetic susceptibility data.
48 -), a specific type of symmetry-induced weak paramagnetism was found that is distinct from convention
49    Resonances strongly affected by heme iron paramagnetism were assigned with the aid of selective am
50 The complex displays temperature-independent paramagnetism with a magnetic moment of 1.36 mu(B) at ro