DANOISE; A 3D Printable Battery Cell for Laboratory Operando X‐Ray Diffraction and Absorption Spectroscopy**

Author:

Johansen Morten1,Verdelin Jannie Kirk1,Kallio Antti‐Jussi2,Kessler Tommy Ole1,Huotari Simo2,Ravnsbæk Dorthe Bomholdt1

Affiliation:

1. Centre for Integrated Materials Research Department of Chemistry Aarhus University Langelandsgade 140 DK-8000 Aarhus C Denmark

2. Department of Physics University of Helsinki P. O. Box 64 FI-00014 Helsinki Finland

Abstract

AbstractStudying structural and electronic processes in the materials inside a battery as they occur during battery operation is key for developing novel improved materials for future generations of batteries. Such studies often entail X‐ray diffraction and absorption spectroscopy, which have so far primarily been conducted at synchrotron facilities despite the widespread use of laboratory‐based X‐ray diffraction and absorption spectroscopy for day‐to‐day characterisation. With the “Developed in Aarhus: New Operando In‐house Scattering Electrochemical” (DANOISE) cell, these experiments are brought into the laboratories making in‐house operando X‐ray diffraction and absorption spectroscopy on‐demand additions to the existing facilities. The chic and facile design of the DANOISE cell provides high quality scattering and absorption data besides providing reliable electrochemical performance. In this work, we describe the design of the DANOISE cell and demonstrate the capabilities of the cell using different commercial technologies for Li‐ion batteries and from a new Na‐ion battery electrode material.

Funder

Novo Nordisk Fonden

Publisher

Wiley

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