Pd8 Nanocluster with Nonmetal‐to‐Metal‐ Ring Coordination and Promising Photothermal Conversion Efficiency

Author:

You Qing12,Jiang Xue‐Lian3,Fan Wentao12,Cui Yun‐Shu3,Zhao Yan12,Zhuang Shengli12,Gu Wanmiao12,Liao Lingwen12,Xu Cong‐Qiao3,Li Jun34,Wu Zhikun12ORCID

Affiliation:

1. Key Laboratory of Materials Physics Anhui Key Laboratory of Nanomaterials and Nanotechnology CAS Center for Excellence in Nanoscience Institute of Solid State Physics HFIPS Chinese Academy of Sciences 230031 Hefei China

2. Institute of Physical Science and Information Technology Anhui University 230601 Hefei Anhui China

3. Department of Chemistry and Guangdong Provincial Key Laboratory of Catalytic Chemistry Southern University of Science and Technology 518055 Shenzhen China

4. Department of Chemistry and Engineering Research Center of Advanced Rare-Earth Materials of Ministry of Education Tsinghua University 100084 Beijing China

Abstract

AbstractConstructing ambient‐stable, single‐atom‐layered metal‐based materials with atomic precision and understanding their underlying stability mechanisms are challenging. Here, stable single‐atom‐layered nanoclusters of Pd were synthesized and precisely characterized through electrospray ionization mass spectrometry and single‐crystal X‐ray crystallography. A pseudo‐pentalene‐like Pd8 unit was found in the nanocluster, interacting with two syn PPh units through nonmetal‐to‐metal ‐ring coordination. The unexpected coordination, which is distinctly different from the typical organoring‐to‐metal coordination in half‐sandwich‐type organometallic compounds, contributes to the ambient stability of the as‐obtained single‐atom‐layered nanocluster as revealed through theoretical and experimental analyses. Furthermore, quantum chemical calculations revealed dominant electron transition along the horizontal x‐direction of the Pd8 plane, indicating high photothermal conversion efficiency (PCE) of the nanocluster, which was verified by the experimental PCE of 73.3 %. Therefore, this study unveils the birth of a novel type of compound and the finding of the unusual nonmetal‐to‐metal ‐ring coordination and has important implications for future syntheses, structures, properties, and structure–property correlations of single‐atom‐layered metal‐based materials.

Funder

National Natural Science Foundation of China

Guangdong Provincial Key Laboratory Of Catalysis

Innovative Program of Development Foundation of Hefei Center for Physical Science and Technology

Publisher

Wiley

Subject

General Chemistry,Catalysis

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