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1 iencies (around 13%) identical to those of a CdCl2-processed control group.
2 ign solvents, in air, and without additional CdCl2 treatment, we obtain a well-sintered CdTe absorber
3 lization domain in the stress response after CdCl2 or NaAsO2 exposure.
4  of this processing route over 25 years ago, CdCl2 has two severe disadvantages; it is both expensive
5                      On responds to heat and CdCl2 stress with a major increase in hsp70 transcripts.
6 was induced by other nephrotoxicants such as CdCl2 and bacitracin.
7 sion was induced by various stresses such as CdCl2, NaCl, NaHCO3, and H2O2 treatments.
8 y induced metal carbonate biomineralization, CdCl2 was contacted with supernatants of N. crassa obtai
9                  Excitations were blocked by CdCl2 (100 muM, n = 5) and omega-agatoxin-IVA (100 nM, n
10                       HO-1 mRNA induction by CdCl2 and heme was differentially affected by Bt2cAMP.
11 lls was significantly, and fully reversed by CdCl2 preexposure.
12       This effect was not mimicked by CaCl2, CdCl2, or CoCl2.
13 inistered a combination of cadmium chloride (CdCl2) and methylmercury (II) chloride (CH3HgCl) (0, 0.1
14 limitation and exposure to cadmium chloride (CdCl2) and sodium arsenite (NaAsO2).
15                     Contrary to expectation, CdCl2-processed and MgCl2-processed solar cells contain
16 ctra of several heavy-metal salts, including CdCl2, ZnSO4, NiCl2, HgSO4, HgCl2, PbI2, and Pb(Ac)2.
17 ntially expressed miRNAs under low (20 mug/L CdCl2) and high-exposure (40 mug/L CdCl2) concentrations
18 (20 mug/L CdCl2) and high-exposure (40 mug/L CdCl2) concentrations compared to controls, respectively
19 loride (MgCl2) with the rhombohedral layered CdCl2-type structure (alpha-MgCl2) has been studied expe
20  against the cytotoxicity of the heavy metal CdCl2, whereas nuclear expression protects against the c
21 he absence and in the presence of 200 microM CdCl2, a potent blocker of L-type VDCCs.
22     A. thaliana plants grown under 50 microM CdCl2 for a 24 h time course were also used for northern
23 00 or 500 microM CaCl2 or in the presence of CdCl2.
24 ls using metal halide (PbI2, PbCl2, CdI2, or CdCl2) salts dissolved in dimethylformamide to displace
25 in larvae exposed to weathered QDs or SeNP + CdCl2 suggesting the increased potency of products of QD
26                      Co-exposures to SeNPs + CdCl2 resulted in dramatic increase in mortality and rec
27                 Our results demonstrate that CdCl2 may simply be replaced directly with MgCl2 in the
28                             They reveal that CdCl2 treatment of CdTe solar cells suppresses nonradiat
29                               Preexposure to CdCl2 (1 microM) for 72, 96 or 120 h, prior to acute exp
30 sal was time-dependent, 120-h preexposure to CdCl2 producing the greatest reversibility.
31  and almost fully reversed by preexposure to CdCl2.
32 ping the polycrystalline thin-film CdTe with CdCl2.
33 cells in Ca2+-containing buffer treated with CdCl2.

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