Xiaodong Chen (@chenxd_ntu_sg) 's Twitter Profile
Xiaodong Chen

@chenxd_ntu_sg

Mechano-Materials Science; Soft Materials; Flexible Electronics; Nano-bio Interface

ID: 1260426556767440896

linkhttps://www.ntu.edu.sg/home/chenxd/index.html calendar_today13-05-2020 04:28:14

282 Tweet

2,2K Followers

343 Following

ACS Nano (@acsnano) 's Twitter Profile Photo

From the cover of ACS Nano: Joeson Wong, Paul Alivisatos and team demonstrate #SpinCoherence in isolated erbium ions embedded within an inorganic ceria core of a colloidal #nanocrystal. #QuantumTechnologies UChicago Chemistry Argonne National Lab The University of Chicago Read: go.acs.org/alY

From the cover of ACS Nano: <a href="/PKJoeson/">Joeson Wong</a>, <a href="/PaulAlivisatos/">Paul Alivisatos</a> and team demonstrate #SpinCoherence in isolated erbium ions embedded within an inorganic ceria core of a colloidal #nanocrystal. #QuantumTechnologies <a href="/UChiChemistry/">UChicago Chemistry</a> <a href="/argonne/">Argonne National Lab</a> <a href="/UChicago/">The University of Chicago</a>

Read: go.acs.org/alY
ACS Nano (@acsnano) 's Twitter Profile Photo

This Perspective by Humboldt Berlin Chemistry Humboldt-Universität zu Berlin discusses plasmon-enhanced spontaneous and coherent nonlinear #RamanScattering with the aim of identifying advantages that lead to an advanced vibrational characterization. #SERS #OpenAccess: go.acs.org/aqL

This Perspective by <a href="/HumboldtChem/">Humboldt Berlin Chemistry</a> <a href="/HumboldtUni/">Humboldt-Universität zu Berlin</a> discusses plasmon-enhanced spontaneous and coherent nonlinear #RamanScattering with the aim of identifying advantages that lead to an advanced vibrational characterization. #SERS 

#OpenAccess: go.acs.org/aqL
ACS Nano (@acsnano) 's Twitter Profile Photo

From the cover of ACS Nano: Scientists from Nagoya University ナノアーキテクトニクス材料研究センター(MANA) NIMS (物質・材料研究機構) Hokkaido University have observed, using #ScanningTunnelingMicroscopy, that Trip-Phz molecules form chiral and commensurate honeycomb #lattices on a Ag(111) surface. #chirality Read: go.acs.org/aqN

From the cover of ACS Nano: Scientists from <a href="/NagoyaUniv/">Nagoya University</a> <a href="/wpi_mana/">ナノアーキテクトニクス材料研究センター(MANA)</a> <a href="/NIMS_PR/">NIMS (物質・材料研究機構)</a> <a href="/HokkaidoUni/">Hokkaido University</a> have observed, using #ScanningTunnelingMicroscopy, that Trip-Phz molecules form chiral and commensurate honeycomb #lattices on a Ag(111) surface. #chirality

Read: go.acs.org/aqN
ACS Nano (@acsnano) 's Twitter Profile Photo

An Au nanoTriangle plate Array on Gel (AuTAG) acts as an actively gap-tunable #plasmonic substrate to enable ultrahigh sensitive protein detection by surface-enhanced Raman scattering (#SERS). Hokkaido University Team TAGEN Tohoku University #OpenAccess: go.acs.org/aqR

An Au nanoTriangle plate Array on Gel (AuTAG) acts as an actively gap-tunable #plasmonic substrate to enable ultrahigh sensitive protein detection by surface-enhanced Raman scattering (#SERS). <a href="/HokkaidoUni/">Hokkaido University</a> <a href="/team_tagen/">Team TAGEN</a> <a href="/TohokuUniPR/">Tohoku University</a>

#OpenAccess: go.acs.org/aqR
ACS Nano (@acsnano) 's Twitter Profile Photo

Researchers at Waterloo Engineering University of Waterloo developed a lithium (Li) imbued TiOx #iontronic memristor with programmable volatile and nonvolatile properties for applications in #NeuromorphicComputing. #OpenAccess: go.acs.org/av6

Researchers at <a href="/WaterlooENG/">Waterloo Engineering</a> <a href="/UWaterloo/">University of Waterloo</a> developed a lithium (Li) imbued TiOx #iontronic memristor with programmable volatile and nonvolatile properties for applications in #NeuromorphicComputing. 

#OpenAccess: go.acs.org/av6
ACS Nano (@acsnano) 's Twitter Profile Photo

Demonstration of a hybrid #MOCVD growth method for the efficient synthesis of 2D semiconducting transition-metal dichalcogenides (#TMDCs) with tunable morphologies. #2DSemiconductors Stanford Materials Science and Engineering Stanford University SLAC National Accelerator Laboratory Read: go.acs.org/aMI

Demonstration of a hybrid #MOCVD growth method for the efficient synthesis of 2D semiconducting transition-metal dichalcogenides (#TMDCs) with tunable morphologies. #2DSemiconductors <a href="/StanfordMSE/">Stanford Materials Science and Engineering</a> <a href="/Stanford/">Stanford University</a> <a href="/SLAClab/">SLAC National Accelerator Laboratory</a>

Read: go.acs.org/aMI
ACS Nano (@acsnano) 's Twitter Profile Photo

This review from University of Waterloo Chemical Engineering University of Waterloo جامعة خليفة للعلوم والتكنولوجيا discusses the interaction interface of advancements in #MolecularModeling, #MLAlgorithms, & atomic simulation methods to comprehend the creation of #MOFs for #CO2Capture. Hossein Mashhadimoslem Cover Story: go.acs.org/aNp

This review from <a href="/uwaterloo_che/">University of Waterloo Chemical Engineering</a> <a href="/UWaterloo/">University of Waterloo</a> <a href="/KhalifaUni/">جامعة خليفة للعلوم والتكنولوجيا</a> discusses the interaction interface of advancements in #MolecularModeling, #MLAlgorithms, &amp; atomic simulation methods to comprehend the creation of #MOFs for #CO2Capture. <a href="/mashhadimoslem/">Hossein Mashhadimoslem</a>

Cover Story: go.acs.org/aNp
ACS Nano (@acsnano) 's Twitter Profile Photo

Polyaptamer-driven crystallization of alendronate yields a tempting dual-medication nanoassembly for synergistic osteoporosis treatment through osteoclastic inhibition and osteogenic promotion. YongHu Lab Read it here 🔗 go.acs.org/aNJ

Polyaptamer-driven crystallization of alendronate yields a tempting dual-medication nanoassembly for synergistic osteoporosis treatment through osteoclastic inhibition and osteogenic promotion. <a href="/YongHu_TJ/">YongHu Lab</a>

Read it here 🔗 go.acs.org/aNJ
ACS Nano (@acsnano) 's Twitter Profile Photo

From the cover of ACS Nano: A trimetallic NiSnFe catalyst facilitates the near-single-#chirality synthesis of ultrahigh-pure (6,5) #CarbonNanotubes (CNTs). #nanoparticles Tohoku University #OpenAccess: go.acs.org/aNK

From the cover of ACS Nano: A trimetallic NiSnFe catalyst facilitates the near-single-#chirality synthesis of ultrahigh-pure (6,5) #CarbonNanotubes (CNTs). #nanoparticles <a href="/TohokuUniPR/">Tohoku University</a>

#OpenAccess: go.acs.org/aNK
ACS Nano (@acsnano) 's Twitter Profile Photo

An activity-based #nanotheranostic platform, developed by Ester J. Kwon and team at UC San Diego Bioengineering UC San Diego, acts as both a sensor and an inhibitor of #calpain activity during traumatic brain injury (TBI). Read this #OpenAccess: go.acs.org/aPc

An activity-based #nanotheranostic platform, developed by <a href="/esterjkwon/">Ester J. Kwon</a> and team at <a href="/ucsdbe/">UC San Diego Bioengineering</a> <a href="/UCSanDiego/">UC San Diego</a>, acts as both a sensor and an inhibitor of #calpain activity during traumatic brain injury (TBI). 

Read this #OpenAccess: go.acs.org/aPc
ACS Nano (@acsnano) 's Twitter Profile Photo

Scientists from USC Chemistry USC USC Mork ChE&MatSc USC BME USC Norris Comprehensive Cancer Center report on a #MachineLearning (ML)-based approach to analyze in-line UV–vis #Spectrophotometric data to determine platinum #nanoparticle product concentrations. @BrutcheyGroup #OpenAccess: go.acs.org/aQ8

Scientists from <a href="/USCChemistry/">USC Chemistry</a> <a href="/USC/">USC</a> <a href="/USCMork/">USC Mork ChE&MatSc</a> <a href="/uscbme/">USC BME</a> <a href="/uscnorris/">USC Norris Comprehensive Cancer Center</a> report on a #MachineLearning (ML)-based approach to analyze in-line UV–vis #Spectrophotometric data to determine platinum #nanoparticle product concentrations. @BrutcheyGroup

#OpenAccess: go.acs.org/aQ8
ACS Nano (@acsnano) 's Twitter Profile Photo

Demonstration of the local #chirality patterning of thin films made from magnetic polysaccharide #nanocrystals during the evaporation-induced assembly within patterned #magneticfields with narrow magnetic gaps. @GTMSE5 Georgia Tech #OpenAccess: go.acs.org/aQj

Demonstration of the local #chirality patterning of thin films made from magnetic polysaccharide #nanocrystals during the evaporation-induced assembly within patterned #magneticfields with narrow magnetic gaps. @GTMSE5 <a href="/GeorgiaTech/">Georgia Tech</a>

#OpenAccess: go.acs.org/aQj
Xiaodong Chen (@chenxd_ntu_sg) 's Twitter Profile Photo

I am deeply honored to be appointed as a Distinguished University Professor at NTU Singapore, effective December 1, 2024. This prestigious recognition reflects not only my own efforts, but also the invaluable contributions of my students, colleagues, collaborators, and friends.

Ady Suwardi, Ph.D., Cantab. (@polaris4dy) 's Twitter Profile Photo

Thermoelectrics traditionally harvest electricity from heat. In this work, we flipped the narrative and demonstrated their ability to turn cold energy from evaporation into electricity with zero energy input. Due to its distinctive mechanism compared to hydrovoltaics, we coined

Thermoelectrics traditionally harvest electricity from heat. In this work, we flipped the narrative and demonstrated their ability to turn cold energy from evaporation into electricity with zero energy input. Due to its distinctive mechanism compared to hydrovoltaics, we coined
International Institute for Nanotechnology (@iinanonu) 's Twitter Profile Photo

It’s here! 33 Unresolved Questions in Nanoscience and Nanotechnology is now live in ACS Nano. Explore the questions shaping the next chapter of the field. #Nano33 Read it here: pubs.acs.org/doi/10.1021/ac…