This report summarizes the accomplishments of a Laboratory-Directed Research and Development (LDRD) project focused on developing and applying new x-ray spectroscopies to understand and improve electric charge transfer in electrochemical devices. Our approach studies the device materials as they function at elevated temperature and in the presence of sufficient gas to generate meaningful currents through the device. We developed hardware and methods to allow x-ray photoelectron spectroscopy to be applied under these conditions. We then showed that the approach can measure the local electric potentials of the materials, identify the chemical nature of the electrochemical intermediate reaction species and determine the chemical state of the a...
The electrode/electrolyte interface is central to many electrochemical systems; however, gaining ins...
In this report, we briefly describe the general design principles and construction of a newly develo...
Graphene-like nanostructures, solely or in combination with redox active compounds, are an important...
We present a new technique for investigating complex model electrocatalysts by means of electrochemi...
In this account the application of synchrotron radiation based X-ray photoelectron spectroscopy (XPS...
We present a new technique for investigating complex model electrocatalysts by means of electrochemi...
ConspectusThe understanding of fundamental processes in the bulk and at the interfaces of electroche...
Ambient-pressure X-ray photoelectron spectroscopy (APXPS) has contributed greatly to a wide range of...
Electrode/electrolyte interfaces play a vital role in various electrochemical systems, but in situ c...
A method for performing X-ray absorption spectroscopy (XAS) in the soft X-ray region was developed t...
Many of the challenges faced in the development of lithium-ion batteries (LIBs) and next-generation ...
We report a new method to probe the solid-liquid interface through the use of a thin liquid layer on...
We report a methodology for a direct investigation of the solid/liquid interface using high pressure...
Semiconductor-electrolyte interfaces allow for the creation of photoactive semiconductor systems tha...
For an in-depth characterization of catalytic materials and their properties, spectroscopic in-situ ...
The electrode/electrolyte interface is central to many electrochemical systems; however, gaining ins...
In this report, we briefly describe the general design principles and construction of a newly develo...
Graphene-like nanostructures, solely or in combination with redox active compounds, are an important...
We present a new technique for investigating complex model electrocatalysts by means of electrochemi...
In this account the application of synchrotron radiation based X-ray photoelectron spectroscopy (XPS...
We present a new technique for investigating complex model electrocatalysts by means of electrochemi...
ConspectusThe understanding of fundamental processes in the bulk and at the interfaces of electroche...
Ambient-pressure X-ray photoelectron spectroscopy (APXPS) has contributed greatly to a wide range of...
Electrode/electrolyte interfaces play a vital role in various electrochemical systems, but in situ c...
A method for performing X-ray absorption spectroscopy (XAS) in the soft X-ray region was developed t...
Many of the challenges faced in the development of lithium-ion batteries (LIBs) and next-generation ...
We report a new method to probe the solid-liquid interface through the use of a thin liquid layer on...
We report a methodology for a direct investigation of the solid/liquid interface using high pressure...
Semiconductor-electrolyte interfaces allow for the creation of photoactive semiconductor systems tha...
For an in-depth characterization of catalytic materials and their properties, spectroscopic in-situ ...
The electrode/electrolyte interface is central to many electrochemical systems; however, gaining ins...
In this report, we briefly describe the general design principles and construction of a newly develo...
Graphene-like nanostructures, solely or in combination with redox active compounds, are an important...