JACS Au(@JACS_Au) 's Twitter Profileg
JACS Au

@JACS_Au

JACS Au (pronounced "JACS Gold") is an #openaccess journal from @acspublications that publishes top quality research across all areas of the chemical sciences

ID:1217840606090874881

linkhttps://pubs.acs.org/journal/jaaucr calendar_today16-01-2020 16:06:57

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This work investigates the characteristic of layered In6Se7 with varying phosphorus (P) dopant concentrations (In6Se7:P) from P = 0, 0.5, 1, to P = 5%.

Find out more πŸ“ go.acs.org/9NP

This work investigates the characteristic of layered In6Se7 with varying phosphorus (P) dopant concentrations (In6Se7:P) from P = 0, 0.5, 1, to P = 5%. Find out more πŸ“ go.acs.org/9NP
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By utilizing NMR active nuclei present in glycans and derivatives thereof, including isotopically enriched compounds, highly detailed information can be obtained by experiments.

Learn more πŸ“ go.acs.org/9Mq

By utilizing NMR active nuclei present in glycans and derivatives thereof, including isotopically enriched compounds, highly detailed information can be obtained by experiments. Learn more πŸ“ go.acs.org/9Mq
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This Perspective explores the past, present, and future of DNA methylation tools. Genome-wide and site-specific manipulation of DNA methylation methods is discussed, with emphasis on principles, limitations, applications, and future directions.

πŸ“ go.acs.org/9L0

This Perspective explores the past, present, and future of DNA methylation tools. Genome-wide and site-specific manipulation of DNA methylation methods is discussed, with emphasis on principles, limitations, applications, and future directions. πŸ“ go.acs.org/9L0
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In this work, the authors paired cell surface glycoprotein capture with cysteine chemoproteomics to establish a two-stage enrichment method that enables chemoproteomic profiling of cell Surface Cysteinome.

Learn more πŸ“ go.acs.org/9HE

In this work, the authors paired cell surface glycoprotein capture with cysteine chemoproteomics to establish a two-stage enrichment method that enables chemoproteomic profiling of cell Surface Cysteinome. Learn more πŸ“ go.acs.org/9HE
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Correlation between electronic structure and reactivity of Fe-Porphyrin-Nitrene: How axial coordination modulates the Fe–N bonding and C–H amination reactivity

Learn more πŸ“ go.acs.org/9Gb

Bhaskar Mondal

Correlation between electronic structure and reactivity of Fe-Porphyrin-Nitrene: How axial coordination modulates the Fe–N bonding and C–H amination reactivity Learn more πŸ“ go.acs.org/9Gb @CompCatLab
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This work provides a new framework to explain how the E46K mutation and possibly other Alpha synuclein variants trigger early-onset PD.

Check out the article πŸ“ go.acs.org/9Fn

This work provides a new framework to explain how the E46K mutation and possibly other Alpha synuclein variants trigger early-onset PD. Check out the article πŸ“ go.acs.org/9Fn
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Isoreticular Metal–Organic Frameworks Confined Mononuclear Ru-Hydrides Enable Highly Efficient Shape-Selective Hydrogenolysis of Polyolefins

Kuntal Manna et al.

Read the article πŸ“ go.acs.org/9E8

Isoreticular Metal–Organic Frameworks Confined Mononuclear Ru-Hydrides Enable Highly Efficient Shape-Selective Hydrogenolysis of Polyolefins Kuntal Manna et al. Read the article πŸ“ go.acs.org/9E8
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The chemistry reported here broadens the scope of accessible sulfone-xanthone functionality and, facilitates the translation of biomedical research toward the clinical domain.

Find out more πŸ“ go.acs.org/9CY

The chemistry reported here broadens the scope of accessible sulfone-xanthone functionality and, facilitates the translation of biomedical research toward the clinical domain. Find out more πŸ“ go.acs.org/9CY
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Cyclopropanation Using Electrons Derived from Hydrogen: Reaction of Alkenes and Hydrogen without Hydrogenation

Explore the paper: go.acs.org/9AK

Cyclopropanation Using Electrons Derived from Hydrogen: Reaction of Alkenes and Hydrogen without Hydrogenation Explore the #ECABSelects paper: go.acs.org/9AK
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In this study, the authors addressed the challenges faced by a lack of unified and chemically inspired frameworks for improving multitask reaction predictions and propose a novel framework named SynCluster.

Learn more πŸ“ go.acs.org/9ze

In this study, the authors addressed the challenges faced by a lack of unified and chemically inspired frameworks for improving multitask reaction predictions and propose a novel framework named SynCluster. Learn more πŸ“ go.acs.org/9ze
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In this study, we propose differential interference contrast (DIC) microscopy-based focused orientation and position imaging (dFOPI) to break the angular degeneracy of single gold nanorods (AuNRs).

Learn more πŸ“ go.acs.org/9yr

In this study, we propose differential interference contrast (DIC) microscopy-based focused orientation and position imaging (dFOPI) to break the angular degeneracy of single gold nanorods (AuNRs). Learn more πŸ“ go.acs.org/9yr
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This work presents a scalable and facile strategy for breaking the bottleneck of making epoxy resins simultaneously with high inherent thermal conduction and low dielectric performance.

Check it out πŸ“ go.acs.org/9xq

This work presents a scalable and facile strategy for breaking the bottleneck of making epoxy resins simultaneously with high inherent thermal conduction and low dielectric performance. Check it out πŸ“ go.acs.org/9xq
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In this paper, the authors demonstrate the photoisomerization of keto–enamine linkages on covalent organic frameworks (COFs) induced by excited-state intramolecular proton transfer (ESIPT).

Find out more πŸ“ go.acs.org/9wr

In this paper, the authors demonstrate the photoisomerization of keto–enamine linkages on covalent organic frameworks (COFs) induced by excited-state intramolecular proton transfer (ESIPT). Find out more πŸ“ go.acs.org/9wr
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In this paper, the authors developed a relatively mide strategy to install two carbon-carbon bonds in cyanobenzene drivatives.

πŸ“ go.acs.org/9tZ

In this #ECABSelects paper, the authors developed a relatively mide strategy to install two carbon-carbon bonds in cyanobenzene drivatives. πŸ“ go.acs.org/9tZ
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This paper not only reveals the importance of local permittivity in tuning the electron spillover but also presents a viable theoretical approach to study solvent effects on electrochemical interfaces under operating conditions.

Check it out πŸ“ go.acs.org/9t3

This paper not only reveals the importance of local permittivity in tuning the electron spillover but also presents a viable theoretical approach to study solvent effects on electrochemical interfaces under operating conditions. Check it out πŸ“ go.acs.org/9t3
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Kinetics of HΒ· Transfer from CpCr(CO)3H to Various Enamides: Application to Construction of Pyrrolidines

Xin Hong et al.

Learn more πŸ“ go.acs.org/9rK

Kinetics of HΒ· Transfer from CpCr(CO)3H to Various Enamides: Application to Construction of Pyrrolidines Xin Hong et al. Learn more πŸ“ go.acs.org/9rK
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Regiodivergent functionalization of conjugated dienes using anilines in HFIP: 1,2-hydroarylation vs. 1,4-trifluromethylarylation.

Learn more πŸ“ go.acs.org/9qu

Colomer CSIC

Regiodivergent functionalization of conjugated dienes using anilines in HFIP: 1,2-hydroarylation vs. 1,4-trifluromethylarylation. Learn more πŸ“ go.acs.org/9qu @Ignacio_Colomer @CSIC
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In this study, a kinetic resolution of N-alkoxy amines through chemo- and enantioselective oxygenation has been described.

Check it out πŸ“ go.acs.org/9pw

In this study, a kinetic resolution of N-alkoxy amines through chemo- and enantioselective oxygenation has been described. Check it out πŸ“ go.acs.org/9pw #ECABSelects
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This article explores how the use of an amorphous backbone can change the morphology of the pendant groups to improve conductivity.

Read now πŸ“ go.acs.org/9nx

This #ECABSelects article explores how the use of an amorphous backbone can change the morphology of the pendant groups to improve conductivity. Read now πŸ“ go.acs.org/9nx
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There's still time to submit your work for our upcoming Virtual Special Issue exploring the crucial role of in enabling new technologies and applications for clean .

Find out more and submit your work: go.acs.org/9jC

There's still time to submit your work for our upcoming Virtual Special Issue exploring the crucial role of #polymers in enabling new technologies and applications for clean #energy. Find out more and submit your work: go.acs.org/9jC #CallforPapers
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