Synopsis of Social media discussions

Discussions demonstrate strong enthusiasm with phrases like 'great impact' and mention of 'subtle pore size/chemistry change,' indicating both technical appreciation and recognition of the research's significance. The tone reflects an understanding of how pore engineering can influence practical applications, marking high interest and engagement.

A
Agreement
Moderate agreement

Most posts acknowledge the significance of the research, highlighting the successful pore engineering and its positive implications for gas separation.

I
Interest
High level of interest

Discussions show strong engagement with advanced concepts like pore size, polymorphs, and gas sorption, indicating high curiosity and interest.

E
Engagement
Moderate level of engagement

Posts include specific references to the methodology and potential applications, demonstrating active engagement beyond surface-level appreciation.

I
Impact
High level of impact

The posts emphasize the transformative potential of this research for the field of gas separation and material design, suggesting high perceived impact.

Social Mentions

YouTube

2 Videos

Twitter

18 Posts

Metrics

Video Views

327

Total Likes

83

Extended Reach

941,633

Social Features

20

Timeline: Posts about article

Top Social Media Posts

Posts referencing the article

Understanding 3-Site Langmuir-Freundlich Isotherm Fitting

Understanding 3-Site Langmuir-Freundlich Isotherm Fitting

This video discusses isotherm fitting procedures to evaluate the separation capability of MOFs and zeolites, focusing on the 3-site Langmuir-Freundlich model and the determination of the isosteric heat of adsorption.

May 21, 2023

287 views


Advances in Alkene and Alkyne Separation Technologies

Advances in Alkene and Alkyne Separation Technologies

In steam cracking of ethane to produce ethene, one byproduct is ethyne, which can negatively impact polymer production. Effective separation techniques, including MOFs and advanced porous materials, are essential for removing impurities like ethyne and improving catalyst longevity.

June 15, 2023

41 views


  • Lunjie Liu
    @lunjie520 (Twitter)

    RT @ZGroupUL: Pore engineering by polymorphs; subtle pore size/chemistry change = great impact on C3 gas sorption, now in @acsJACS: https:/…
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    May 27, 2023

    7

  • J. Am. Chem. Soc.
    @J_A_C_S (Twitter)

    RT @isciverse: Highly Productive C3H4/C3H6 Trace Separation by a Packing Polymorph of a Layered Hybrid Ultramicroporous Material @J_A_C_S…
    view full post

    May 22, 2023

    4

  • Whole GLOBE is Watching
    @globe_watching (Twitter)

    RT @isciverse: Highly Productive C3H4/C3H6 Trace Separation by a Packing Polymorph of a Layered Hybrid Ultramicroporous Material @J_A_C_S…
    view full post

    May 22, 2023

    4

  • Alan Eaby
    @alan_eaby (Twitter)

    RT @ZGroupUL: Pore engineering by polymorphs; subtle pore size/chemistry change = great impact on C3 gas sorption, now in @acsJACS: https:/…
    view full post

    May 22, 2023

    7

  • Phenomics
    @Phenomics_J (Twitter)

    RT @isciverse: Highly Productive C3H4/C3H6 Trace Separation by a Packing Polymorph of a Layered Hybrid Ultramicroporous Material @J_A_C_S…
    view full post

    May 21, 2023

    4

  • Chemistry Education
    @ChemistryEd (Twitter)

    RT @isciverse: Highly Productive C3H4/C3H6 Trace Separation by a Packing Polymorph of a Layered Hybrid Ultramicroporous Material @J_A_C_S…
    view full post

    May 21, 2023

    4

  • Top Science
    @isciverse (Twitter)

    Highly Productive C3H4/C3H6 Trace Separation by a Packing Polymorph of a Layered Hybrid Ultramicroporous Material @J_A_C_S @isciverse #Chemistry #ChemTwitter #chemed #scicomm #news #Technology #Tech #NewsBreak #research #science #AcademicTwitter https://t.co/SzN6OB6BAR https://t.co/5ugkv8fbok
    view full post

    May 21, 2023

    9

    4

  • Jaroslav Novotný
    @novotnyjarosl (Twitter)

    RT @J_A_C_S: Highly Productive C3H4/C3H6 Trace Separation by a Packing Polymorph of a Layered Hybrid Ultramicroporous Material @BernalNews…
    view full post

    May 21, 2023

    4

  • Saptarshi Datta
    @saptarshi_sci (Twitter)

    RT @J_A_C_S: Highly Productive C3H4/C3H6 Trace Separation by a Packing Polymorph of a Layered Hybrid Ultramicroporous Material @BernalNews…
    view full post

    May 21, 2023

    4

  • womens-rights
    @medscicomms1920 (Twitter)

    RT @J_A_C_S: Highly Productive C3H4/C3H6 Trace Separation by a Packing Polymorph of a Layered Hybrid Ultramicroporous Material @BernalNews…
    view full post

    May 21, 2023

    4

  • Yi Hou
    @YiHou9195 (Twitter)

    RT @J_A_C_S: Highly Productive C3H4/C3H6 Trace Separation by a Packing Polymorph of a Layered Hybrid Ultramicroporous Material @BernalNews…
    view full post

    May 21, 2023

    4

  • J. Am. Chem. Soc.
    @J_A_C_S (Twitter)

    Highly Productive C3H4/C3H6 Trace Separation by a Packing Polymorph of a Layered Hybrid Ultramicroporous Material @BernalNews @UL @ZGroupUL #Propene #Propane #Separation #Hybrid #Ultramicroporous #Materials #Polymorph https://t.co/Pd5NgSSxB5
    view full post

    May 21, 2023

    8

    4

  • Benji Moore
    @Benji__Moore (Twitter)

    RT @ZGroupUL: Pore engineering by polymorphs; subtle pore size/chemistry change = great impact on C3 gas sorption, now in @acsJACS: https:/…
    view full post

    May 20, 2023

    7

  • Chemical Sciences UL
    @ChemicalSciUL (Twitter)

    RT @ZGroupUL: Pore engineering by polymorphs; subtle pore size/chemistry change = great impact on C3 gas sorption, now in @acsJACS: https:/…
    view full post

    May 20, 2023

    7

  • Chemistry News
    @ChemistryNews (Twitter)

    Just Published: Highly Productive C3H4/C3H6 Trace Separation by a Packing Polymorph of a Layered Hybrid Ultramicroporous Material https://t.co/uqRZEkiBeK
    view full post

    May 19, 2023

    11

  • Chia-Her Lin
    @beaman13t (Twitter)

    RT @ZGroupUL: Pore engineering by polymorphs; subtle pore size/chemistry change = great impact on C3 gas sorption, now in @acsJACS: https:/…
    view full post

    May 19, 2023

    7

  • Dazaet Galicia
    @dazaetgb (Twitter)

    RT @ZGroupUL: Pore engineering by polymorphs; subtle pore size/chemistry change = great impact on C3 gas sorption, now in @acsJACS: https:/…
    view full post

    May 19, 2023

    7

  • Mike Zaworotko group
    @ZGroupUL (Twitter)

    Pore engineering by polymorphs; subtle pore size/chemistry change = great impact on C3 gas sorption, now in @acsJACS: https://t.co/8yqXAIAg7X
    view full post

    May 19, 2023

    52

    7

Abstract Synopsis

  • * The two polymorphs, referred to as () and (), are characterized by different channel structures, with () having both intrinsic and extrinsic channels, leading to improved gas separation capabilities, particularly for CH/CH mixtures.
  • * Advanced techniques like gas sorption and X-ray diffraction reveal that the extrinsic pore structure enhances selectivity for separating CH, achieving a remarkable selectivity of 270 and productivity benchmark for polymer-grade CH, highlighting the importance of pore engineering in optimizing gas separation performance.