Reported here are the design and
fluorescence characters of a Ni
II
/Tb
III
polymer,
[Tb
2
Ni
3
(HCAM)
6
(H
2
O)
12
]
n
(
1
) (H
3
CAM = chelidamic acid). Under physiological
conditions, the binding of biocompatible water soluble
1
to human serum albumin (HSA) was studied by spectroscopy techniques,
which revealed that
1
could inherent the fluorescent
light of HSA in a static quencher course and change the HSA second-level
structure. The marked enhancement in
1
and its fluorescence
intensity provide conclusive evidence that
1
can play
the role of a “turn-on” sensor for recognition and detection
of HSA in other biological interferents with a
K
sv
value of 7.68 × 10
4
M
–1
and a detection limit of 0.14 μM. Luminescence experiments
show that
1
has high selectivity and sensitivity to MnO
4
–
in other anions. Its quenching efficiency
(
K
sv
) is 5.54 × 10
3
M
–1
, and the detection limit is 0.29 μM.
Investigating the coordination chemistry of H2CDA (4‐oxo‐1,4‐dihydro‐2,6‐pyridinedicarboxylic acid) with rare earth salts Ln(NO3)3 under hydrothermal conditions, structure transformation phenomenon was observed. The ligand, H2CDA charged to its position isomer, enol type structure, H3CAM (4‐hydroxypyridine‐2,6‐dicarboxylic acid). Six new lanthanide(III) coordination polymers with the formulas [Ln(CAM)(H2O)3]n [Ln = La (1), Pr, (2)] and {[Ln(CAM)(H2O)3]·H2O}n [Ln = Nd, (3), Sm, (4), Eu, (5), Y, (6)] were synthesized and characterized. The X‐ray structure analyses show two kinds of coordination structures. The complexes 1 and 2 and 3–6 are isostructural. Complexes 1 and 2 crystallize in the monoclinic C2/c space group, whereas 3–6 crystallize in the monoclinic system with space group P21/n. In the two kinds of structures, H3CAM displays two different coordination modes. The SmIII and EuIII complexes exhibit the corresponding characteristic luminescence in the visible region at an excitation of 376 nm.
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