Receptor‐Mimetic Stereo Olfaction for Simultaneous Odor Recognition and Spatial Localization

L Liyuan Zhang (State Key Laboratory of Natural Medicines and Jiangsu Key Laboratory of Drug Discovery for Metabolic Diseases, Center of Advanced Pharmaceuticals and Biomaterials) Y Yujie Wu Z Zhuocheng Gong (Guangzhou National Laboratory Guangzhou China) J Jiamu Yuan (Guangdong Provincial Key Laboratory of Advanced Biomaterials Department of Biomedical Engineering Southern University of Science and Technology Shenzhen China) W Wenhui Wang (Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering, Feringa Nobel Prize Scientist Joint Research Center, School of Chemistry and Molecular Engineering, Frontiers Center for Materiobiology and Dynamic Chemistry) Y Yanming Xia (Guangzhou National Laboratory Guangzhou China) Y Yunpeng Yang (Department of Medical Oncology, Sun Yat-sen University Cancer Center, State Key Laboratory of Oncology in South China, Collaborative Innovation Center for Cancer Medicine, Guangdong Provincial Clinical Research Center for Cancer, Guangzhou, China) Y Yuchun Lin (Guangzhou National Laboratory Guangzhou China) Z Zhi Luo X Xiaobao Cao

Abstract

ABSTRACT Odor plumes are chemophysical fields where molecular identity is coupled to transport phenomena including diffusion and turbulence. In animals, decoding this joint information underlies navigation and social behavior. However, artificial systems treat identity and location as independent problems, solved by distinct modalities. Here we present AROMA (Artificial Receptor‐Olfaction Mimetic Array), a stereo olfaction strategy in which receptor‐mimetic sensors capture plume dynamics, enabling concurrent decoding of mixture composition and 3D source location from analyte‐dependent kinetic patterns. AROMA is built on mixed‐ligand gold nanoparticles whose phase‐separated monolayers and non‐additive interfacial energetics emulate the promiscuous selectivity of olfactory GPCRs. Deployed in an antenna‐like, spatially separated configuration, these sensors convert evolving concentration fields into disparities in onset, rise, and amplitude that encode geometric information. Trained on 50 plume trials of six‐odorant mixtures sampled by a 30‐channel array in an 18 cm cubic chamber, a multi‐task Transformer achieves 86.7% mixture identification accuracy and a 3D localization error of 2.84 ± 0.87 cm. We demonstrate room‐scale source tracking with a mobile robot indoors under natural airflow. By translating plume dynamics into a unified latent representation, AROMA advances artificial olfaction from static molecular discrimination toward spatial intelligence, offering a general framework for environmental monitoring and autonomous navigation.

Article Details

Volume / Issue Vol. 38, Issue 17
Published March 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (10)

L

Liyuan Zhang

State Key Laboratory of Natural Medicines and Jiangsu Key Laboratory of Drug Discovery for Metabolic Diseases, Center of Advanced Pharmaceuticals and Biomaterials

Y

Yujie Wu

Z

Zhuocheng Gong

Guangzhou National Laboratory Guangzhou China

J

Jiamu Yuan

Guangdong Provincial Key Laboratory of Advanced Biomaterials Department of Biomedical Engineering Southern University of Science and Technology Shenzhen China

W

Wenhui Wang

Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering, Feringa Nobel Prize Scientist Joint Research Center, School of Chemistry and Molecular Engineering, Frontiers Center for Materiobiology and Dynamic Chemistry

Y

Yanming Xia

Guangzhou National Laboratory Guangzhou China

Y

Yunpeng Yang

Department of Medical Oncology, Sun Yat-sen University Cancer Center, State Key Laboratory of Oncology in South China, Collaborative Innovation Center for Cancer Medicine, Guangdong Provincial Clinical Research Center for Cancer, Guangzhou, China

Y

Yuchun Lin

Guangzhou National Laboratory Guangzhou China

Z

Zhi Luo

X

Xiaobao Cao