ACS Nano(@acsnano) 's Twitter Profileg
ACS Nano

@acsnano

Xiaodong Chen and ACS Nano team on nanoscience & nanotechnology research at the interfaces of chemistry, biology, materials science, physics, & engineering.

ID:22986026

linkhttp://www.acsnano.org calendar_today05-03-2009 21:57:02

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This review from UTRGV documents the perspectives and opportunities of towards the development of tabletized .

Read the cover story here πŸ‘‰ go.acs.org/9me

This review from @utrgv documents the perspectives and opportunities of #nanoformulations towards the development of tabletized #nanomedicine. Read the cover story here πŸ‘‰ go.acs.org/9me
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Demonstration of highly reliable MRAM-based security devices, known as (PUFs), achieved by exploiting nanoscale perpendicular (MTJs). KAISTPR Hyundai Worldwide

Read this article here πŸ‘‰ go.acs.org/9lA

Demonstration of highly reliable MRAM-based security devices, known as #physicalunclonablefunctions (PUFs), achieved by exploiting nanoscale perpendicular #magnetictunneljunctions (MTJs). @kaistpr @Hyundai_Global Read this #OpenAccess article here πŸ‘‰ go.acs.org/9lA
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The Sooyeon Cho Lab @ SKKU demonstrates a sensor design for receptor-free virus recognition using 3D corona interfaces in nIR fluorescent SWCNTs functionalized with a PEG-phospholipid library.

Read it here πŸ”— go.acs.org/9lw

The @sycho_lab demonstrates a sensor design for receptor-free virus recognition using 3D corona interfaces in nIR fluorescent SWCNTs functionalized with a PEG-phospholipid library. Read it here πŸ”— go.acs.org/9lw
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From the cover page of ACS Nano: Polyester with slight topographical changes, such as an increase in linker chain length, enhances of . The University of Alabama

Read more here πŸ‘‰ go.acs.org/9lc

From the cover page of ACS Nano: Polyester #nanoparticles with slight topographical changes, such as an increase in linker chain length, enhances #bioavailability of #oralinsulin. @UofAlabama Read more here πŸ‘‰ go.acs.org/9lc
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Discover how nanoneedles are transforming medical devices! New research by Chiappini Lab, CongW at Centre for Craniofacial & Regenerative Biology explores embedding nanoneedles for precise drug delivery and biosensing.

Read it here πŸ”— go.acs.org/9kw

Discover how nanoneedles are transforming medical devices! New research by @ChiappiniLab, @CongW5 at @CCRB27 explores embedding nanoneedles for precise drug delivery and biosensing. Read it here πŸ”— go.acs.org/9kw
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ROCA, a triune nanomodulator, was shown to induce ICD, reprogram the and enhance the rejuvenation of cytotoxic T lymphocytes to potentiate cancer .

Read the full text here πŸ‘‰ go.acs.org/9kd

ROCA, a triune nanomodulator, was shown to induce ICD, reprogram the #tumormicroenvironment and enhance the rejuvenation of cytotoxic T lymphocytes to potentiate cancer #epigenetic #immunotherapy. Read the full text here πŸ‘‰ go.acs.org/9kd
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An investigation of the electronic properties of Si–In chains formed on a Si(553)–Au surface using the (STM) method, complemented by DFT and tight binding (TB) calculations.

Read this article here πŸ‘‰ go.acs.org/9jE

An investigation of the electronic properties of Si–In chains formed on a Si(553)–Au surface using the #scanningtunnelingmicroscopy (STM) method, complemented by DFT and tight binding (TB) calculations. Read this #OpenAccess article here πŸ‘‰ go.acs.org/9jE
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Demonstration of a scalable - compatible method for enhancing the carrier mobility of monolayer n-type molybdenum disulfide FETs with tensile strain. MechSE Illinois University of Illinois

Read the full text here πŸ‘‰ go.acs.org/9jl

Demonstration of a scalable #complementarymetaloxidesemiconductor - compatible method for enhancing the carrier mobility of monolayer n-type molybdenum disulfide FETs with tensile strain. @mechseILLINOIS @UofIllinois Read the full text here πŸ‘‰ go.acs.org/9jl
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This review by BioNanoPlasmonicsLab and Kotov Group πŸ‡ΊπŸ‡¦ summarizes the advancements in and surface-enhanced ROA, their distinction from and their potential application in detecting chiral biomolecules.

Read more: go.acs.org/9j7

This #openaccess review by @LizMarzan_Lab and @kotov_group summarizes the advancements in #RamanOpticalActivity and surface-enhanced ROA, their distinction from #SERS and their potential application in detecting chiral biomolecules. Read more: go.acs.org/9j7
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Scientists at UoY School of Physics, Engineering and Technology and University of York present room temperature lasing from a large-area tungsten disulfide (WS2) monolayer, grown by a wafer-scale (CVD) technique.

Read the article: go.acs.org/9iT

Scientists at @UoY_PET and @UniOfYork present room temperature lasing from a large-area tungsten disulfide (WS2) monolayer, grown by a wafer-scale #chemicalvapordeposition (CVD) technique. Read the #OpenAccess article: go.acs.org/9iT
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A team of researchers at Vilnius University used to investigate the pathways behind laser and thermal-induced degradation of Ti3C2Tx MXene.

Read this article here πŸ‘‰ go.acs.org/9iv

A team of researchers at @VU_LT used #ramanspectroscopy to investigate the pathways behind laser and thermal-induced degradation of Ti3C2Tx MXene. #nanoparticles Read this #OpenAccess article here πŸ‘‰ go.acs.org/9iv
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A combination of S1-NTD and S1-CTD self-assembled antigens targeting double receptor- binding domains enhances the efficacy of against (PEDV).

Read more here: go.acs.org/9ij

A combination of S1-NTD and S1-CTD self-assembled #nanoparticle antigens targeting double receptor- binding domains enhances the efficacy of #nanovaccine against #porcineepidemicdiarrheavirus (PEDV). Read more here: go.acs.org/9ij
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Development of a Janus nanofibrous patch (J-NFP) with asymmetric functions of and pro-healing via sequential combined with subsurface-initiated atom transfer radical polymerization technologies. Shanghai Jiao Tong University

Read more: go.acs.org/9hO

Development of a Janus nanofibrous patch (J-NFP) with asymmetric functions of #antiadhesion and pro-healing via sequential #electrospinning combined with subsurface-initiated atom transfer radical polymerization technologies. @sjtu1896 Read more: go.acs.org/9hO
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An electronic wireless, chip-less, biocompatible and immune-tolerant in vivo strain-sensing suture helps to monitor strain responses in a reconstructed throughout the healing process.

Read the full text here πŸ‘‰ go.acs.org/9hp

An electronic wireless, chip-less, biocompatible and immune-tolerant in vivo strain-sensing suture helps to monitor strain responses in a reconstructed #achillestendon throughout the healing process. #implantablesensors Read the full text here πŸ‘‰ go.acs.org/9hp
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Cu-THBQ/AX - an innovative strategy for in situ , which leverages specific antigens of the primary tumor to initiate a personalized, potent, and durable antitumor . Yanli Zhao @NTUChemistry NTU Singapore

Read more: go.acs.org/9gy

Cu-THBQ/AX - an innovative strategy for in situ #therapeuticvaccination, which leverages specific antigens of the primary tumor to initiate a personalized, potent, and durable antitumor #immuneresponse. @ntuzhaoyanli @NTUChemistry @NTUsg Read more: go.acs.org/9gy
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A genetically edited cell membrane-coated cascade (gCM@MnAu) developed by scientists at Wuhan University enhances by inducing immunogenic cell death and activating the STING pathway.

Read the full-text article here πŸ‘‰ go.acs.org/9fU

A genetically edited cell membrane-coated cascade #nanozyme (gCM@MnAu) developed by scientists at @WHU_1893 enhances #cancerimmunotherapy by inducing immunogenic cell death and activating the STING pathway. Read the full-text article here πŸ‘‰ go.acs.org/9fU
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A high-throughput computational screening workflow which integrated DFT calculations and algorithms for the screening of bimetallic alloy with peroxidase-like activity.

Read more: go.acs.org/9fC

A high-throughput computational screening workflow which integrated DFT calculations and #machinelearning algorithms for the screening of bimetallic alloy #nanoparticles with peroxidase-like activity. Read more: go.acs.org/9fC
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Reshef Tanne, Vojtech Kundrat, and a team at Weizmann Institute used in situ and ex-situ imaging to demonstrate the receding oxide core mechanism behind WS2 formation.

Read this article here πŸ‘‰ go.acs.org/9eX

Reshef Tanne, @VKundrat27296, and a team at @WeizmannScience used in situ and ex-situ imaging to demonstrate the receding oxide core mechanism behind WS2 #nanotube formation. #electronmicroscopy Read this #OpenAccess article here πŸ‘‰ go.acs.org/9eX
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