Ligand‐Tuned Perylene Diimide‐Based Versatile Coordination Polymers for Photoluminescent Sensing and Optoelectronics

Author:

Shang Xiaobo12ORCID,Song Inho23ORCID,Lee Jeong Hyeon4,Kim Jin Chul4,Ohtsu Hiroyoshi5,Choi Wanuk6,Ahn Jaeyong2ORCID,Gao Ke1,Zhang Mingming1,Kawano Masaki5,Kwak Sang Kyu7ORCID,Oh Joon Hak2ORCID

Affiliation:

1. State Key Laboratory for Mechanical Behavior of Materials Shaanxi International Research Center for Soft Matter School of Materials Science and Engineering Xi'an Jiaotong University Xi'an 710049 China

2. School of Chemical and Biological Engineering Institute of Chemical Processes Seoul National University 1 Gwanak‐ro, Gwanak‐gu Seoul 08826 Republic of Korea

3. Department of Chemistry Purdue University West Lafayette IN 47907 USA

4. School of Energy and Chemical and Engineering Ulsan National Institute of Science and Technology (UNIST) UNIST‐gil 50 Ulsan 44919 Republic of Korea

5. Department of Chemistry School of Science Tokyo Institute of Technology 2‐12‐1 Ookayama, Meguro‐ku Tokyo 152‐8550 Japan

6. Center for Ordered Nanoporous Materials Synthesis School of Environmental Science and Engineering POSTECH Pohang 37673 Republic of Korea

7. Department of Chemical and Biological Engineering Korea University 145 Anam‐ro, Seongbuk‐gu Seoul 02841 Republic of Korea

Abstract

AbstractChiral self‐sorting is essential for the establishment of structures in nature and chemistry. Owing to similarities among recognition sites of enantiomers and shared conformational labilities, high‐fidelity chiral self‐sorting constitutes a substantial challenge. Coordination polymers (CPs) with a high surface area and chemical tunability have potential applications in luminescent probes and optoelectronics. However, it is difficult to synthesize micro‐/nano‐scale CPs with high conductivity for optoelectronics. Here, a series of perylene diimide (PDI)‐based CPs with large π‐planes is synthesized by tuning ligands for use in various sensors. A cadmium (Cd)‐based coordination polymer with leucine (LeuPDI‐Cd) exhibits a unique chiral self‐recognition phenomenon when two enantiomeric ligands are mixed with the metal source because homochiral CPs are thermodynamically more stable than their heterochiral analogs. In addition, photoluminescent (PL) LeuPDI‐Cd CPs can detect ethylenediamine with high sensitivity and selectivity. Micro‐/nano‐sized CPs with methionine (MetPDI‐Cd) are used in photodetectors and chemiresistive sensors for the detection of toxic phenylhydrazine. Theoretical calculations reveal that the enhanced conductivity is related to the reduced energy gap, which occurs after adsorption of phenylhydrazine onto the CP surface. These results demonstrate the feasibility and versatility of PDI‐based CPs for applications in PL sensing and optoelectronics through the tuning of PDI ligands.

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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