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ACS Materials Letters

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linkhttps://pubs.acs.org/materialslett calendar_today15-02-2019 15:27:26

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Exploring Energy-Density Relationships in Uranyl nun-Topology MOFs and Their Topological Isomers By @OmarFarha5 et al. Northwestern Read the paper 👉 go.acs.org/c2G

Exploring Energy-Density Relationships in Uranyl nun-Topology MOFs and Their Topological Isomers

By @OmarFarha5 et al. <a href="/NorthwesternU/">Northwestern</a>

Read the paper 👉 go.acs.org/c2G
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Manipulating Horizontal Zn Deposition with Indium Salt Additive for Anode-Free Zn Batteries By Erik J. Berg, Xu Hou et al. @UU_University Read the paper 👉 go.acs.org/c35

Manipulating Horizontal Zn Deposition with Indium Salt Additive for Anode-Free Zn Batteries

By Erik J. Berg, Xu Hou et al. @UU_University

Read the paper 👉 go.acs.org/c35
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Tailoring the Fueling Capability of Halide Solid Catholyte through Composition. Correlation with the Underlying Redox Mechanism By Philippe Moreau, Joel Gaubicher et al. Nantes Université Université Grenoble Alpes Read the paper 👉 go.acs.org/c3j

Tailoring the Fueling Capability of Halide Solid Catholyte through Composition. Correlation with the Underlying Redox Mechanism

By Philippe Moreau, Joel Gaubicher et al. <a href="/NantesUniv/">Nantes Université</a> <a href="/UGrenobleAlpes/">Université Grenoble Alpes</a> 

Read the paper 👉 go.acs.org/c3j
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New framework integrating constrained Density Functional Theory with Machine Learning Potential reveals atomic-scale mechanisms of photoplasticity in ZnS under photoexcitation. #MaterialsScience By Qi An et al. Iowa State University Read the paper 👉 go.acs.org/c46

New framework integrating constrained Density Functional Theory with Machine Learning Potential reveals atomic-scale mechanisms of photoplasticity in ZnS under photoexcitation. #MaterialsScience

By Qi An et al. <a href="/IowaStateU/">Iowa State University</a>

Read the paper 👉 go.acs.org/c46
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This new Collection highlights the versatility of Hydrogels, from environmental to biomedical applications, and demonstrates the advantages of integrating hydrogels with other materials to further expand their functionality. Read Now 👉 go.acs.org/c4z

This new Collection highlights the versatility of Hydrogels, from environmental to biomedical applications, and demonstrates the advantages of integrating hydrogels with other materials to further expand their functionality.
Read Now 👉 go.acs.org/c4z
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Suppressing Atmospheric Degradation of Sulfide-Based Solid Electrolytes via Ultrathin Metal Oxide Layers By Justin G. Connell et al. Argonne National Lab University of Illinois Chicago Read the paper 👉 go.acs.org/c54

Suppressing Atmospheric Degradation of Sulfide-Based Solid Electrolytes via Ultrathin Metal Oxide Layers

By Justin G. Connell et al. <a href="/argonne/">Argonne National Lab</a> <a href="/thisisUIC/">University of Illinois Chicago</a> 

Read the paper 👉 go.acs.org/c54
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pH-Responsive Polymer as a New Stable Solid Electrolyte Interphase for Water-in-Salt Battery By Daniel Crespy, Olivier Fontaine et al. VISTEC Université de Montpellier Read the paper 👉 go.acs.org/c5c

pH-Responsive Polymer as a New Stable Solid Electrolyte Interphase for Water-in-Salt Battery

By Daniel Crespy, Olivier Fontaine et al. <a href="/VISTEC_Thailand/">VISTEC</a> <a href="/umontpellier/">Université de Montpellier</a> 

Read the paper 👉 go.acs.org/c5c
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Achieving Ultralong Room-Temperature Phosphorescence Via Single-Bond Locking Planarization Strategy By Liangwei Ma, Xiang Ma et al. CIE_ECUST Read the paper 👉 go.acs.org/c5Z

Achieving Ultralong Room-Temperature Phosphorescence Via Single-Bond Locking Planarization Strategy

By Liangwei Ma, Xiang Ma et al. <a href="/CIE_ECUST/">CIE_ECUST</a>

Read the paper 👉 go.acs.org/c5Z
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Insights of the Proton Transport Efficiency of a Membrane Electrode Assembly by Operando Monitoring of the Local Proton Concentration during Water Oxidation By Wolfgang Schuhmann @SchuhmannLab et al. Ruhr-Universität Bochum Read the paper 👉 go.acs.org/c6d

Insights of the Proton Transport Efficiency of a Membrane Electrode Assembly by Operando Monitoring of the Local Proton Concentration during Water Oxidation

By <a href="/WolfgangSchuhm9/">Wolfgang Schuhmann</a> @SchuhmannLab et al. <a href="/ruhrunibochum/">Ruhr-Universität Bochum</a> 

Read the paper 👉 go.acs.org/c6d
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Recent Advances in Nickel-Based Perovskite Oxides for the Electrocatalytic Oxygen Evolution Reaction in Alkaline Electrolytes By Juliana Bruneli Falqueto, Emiliana Fabbri et al. PSI Paul Scherrer Institut Read the Perspective 👉 go.acs.org/c76

Recent Advances in Nickel-Based Perovskite Oxides for the Electrocatalytic Oxygen Evolution Reaction in Alkaline Electrolytes

By Juliana Bruneli Falqueto, Emiliana Fabbri et al. <a href="/psich_en/">PSI Paul Scherrer Institut</a>

Read the Perspective 👉 go.acs.org/c76
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Reduced-Symmetry Ligand Constructed Y-Based Metal–Organic Framework for Inverse Propane/Propylene Separation By @OmarFarha5 et al. Northwestern Read the paper 👉 go.acs.org/c7B

Reduced-Symmetry Ligand Constructed Y-Based Metal–Organic Framework for Inverse Propane/Propylene Separation

By @OmarFarha5 et al. <a href="/NorthwesternU/">Northwestern</a> 

Read the paper 👉 go.acs.org/c7B
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Operationally Robust Li–S Batteries at High Current Density Enabled by Metallic, Dual Sulfurphilic Nickel Boride By Feiyu Kang, Lele Peng et al. Tsinghua University Read the paper 👉 go.acs.org/c7I

Operationally Robust Li–S Batteries at High Current Density Enabled by Metallic, Dual Sulfurphilic Nickel Boride

By Feiyu Kang, Lele Peng et al. <a href="/Tsinghua_Uni/">Tsinghua University</a>

Read the paper 👉 go.acs.org/c7I
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Comparative Analysis of Reactivity of Al and Ga Doped Garnet Solid State Electrolyte at the Interface with Li Metal By Sanja Tepavcevic, Peter Zapol et al. Argonne National Lab UC Santa Barbara TU München Read the paper 👉 go.acs.org/c8h

Comparative Analysis of Reactivity of Al and Ga Doped Garnet Solid State Electrolyte at the Interface with Li Metal

By Sanja Tepavcevic, Peter Zapol et al. <a href="/argonne/">Argonne National Lab</a> <a href="/ucsantabarbara/">UC Santa Barbara</a> <a href="/TU_Muenchen/">TU München</a> 

Read the paper 👉 go.acs.org/c8h
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We are thrilled to welcome Prof. Hong-Cai (Joe) Zhou as the new Deputy Editor of ACS Materials Letters. Find out more about Prof. Zhou here: go.acs.org/cpF

We are thrilled to welcome Prof. Hong-Cai (Joe) Zhou as the new Deputy Editor of ACS Materials Letters. 

Find out more about Prof. Zhou here: go.acs.org/cpF