Correction

The effect of TiO2 nanoparticles on water permeability and thermal and mechanical properties of high strength self compacting concrete

Paper Information

Record ID:
20828
Publication Date:
October 01, 2010
Retraction Date:
February 08, 2011 (14.8 years years ago)
Article Type:
Publisher:
Elsevier
Open Access:
Yes
PubMed ID:
Not indexed in PubMed
Retraction PubMed ID:
Not indexed in PubMed

Correction Details

Retraction Reason:

Error in Text

Nature of Retraction:

Correction

Retraction Notice:
10.1016/j.msea.2011.01.047

Citations (148)

148
Total Citations
141
Post-Retraction
(95.3%)
1
Pre-Retraction
0
Same Day
Post-Retraction Citation Analysis
0 Within 30 days
13 Within 1 year
123 After 2+ years
5082 Days since retraction (latest)
Paper citing The effect of TiO2 nanoparticles on water permeabi...
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5082 days after retraction
Application and characterization of concrete reinforced with TiO2 nanoparticles
Lana Roshen Tariq, Amine Jaafar
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Technical insights of clean and sustainable photocatalytic concrete: A scientometric analysis–aided review
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5044 days after retraction
A Comprehensive Review of Titanium Dioxide Nanoparticles in Cementitious Composites
J. Jenima, M. Dharshini, M. Ajin et al. (8 authors)
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Microstructural analysis and densification of ordinary Portland cement mortars incorporated with minimal nano-TiO2: intermixing and surface coating on both fresh and hardened surfaces
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Effect on concrete strength and durability with partial replacement of cement by Nano-titanium dioxide (nano-TiO2) and ground granulated blast furnace slag (GGBS): A Review Summary
Urvashi Vaid, Balwinder Lallotra
IOP Conference Series Earth and Environmental Science Open Access
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Effect of titanium dioxide as nanomaterials on mechanical and durability properties of rubberised concrete by applying RSM modelling and optimizations
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Evaluation of self-cleaning performance of TiO <sub>2</sub> -intermixed and TiO <sub>2</sub> -coated cement mortars under natural sunlight
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4833 days after retraction
Influence of TiO2 Nanoparticles on the Physical, Mechanical, and Structural Characteristics of Cementitious Composites with Recycled Aggregates
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Materials Open Access
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The Influence of TiO2 Nanoparticles on the Physico–Mechanical and Structural Characteristics of Cementitious Materials
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The performance and functionalization of modified cementitious materials via nano titanium-dioxide: A review
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A dual role on cleaning and healing of foreign agents for sustainable smart buildings using nano-TiO2
Arun Murugesan, Vijayan Venkatraman, Abdul Aleem Mohamed Ismail et al. (4 authors)
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4493 days after retraction
Study on the Possibilities of Developing Cementitious or Geopolymer Composite Materials with Specific Performances by Exploiting the Photocatalytic Properties of TiO2 Nanoparticles
Andreea Hegyi, Adrian-Victor Lăzărescu, Adrian Alexandru Ciobanu et al. (9 authors)
Materials Open Access
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Influencing mechanism of nano-Al2O3 on concrete performance based on multi-scale experiments
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Construction and Building Materials
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Prediction of the compressive strength of nano-titanium based concrete composites using machine learning
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Evaluating the effect of nanofillers on cement-based composites strength via artificial neural network and genetic algorithm
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Paper citing The effect of TiO2 nanoparticles on water permeabi...
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4399 days after retraction
Durability Aspects of Concrete Containing Nano- Titanium Dioxide
Garima Rawat, Sumit Gandhi, Yogesh Iyer Murthy
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New-Generation Cement-Based Nanocomposites with Nano SiO2-Coated TiO2
Siqi Ding, Xinyue Wang, Baoguo Han
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The fresh and hardened properties of 3D printing cement-base materials with self-cleaning nano-TiO2:An exploratory study
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Paper citing The effect of TiO2 nanoparticles on water permeabi...
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4190 days after retraction
Paper citing The effect of TiO2 nanoparticles on water permeabi...
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Insights on the influence of nano-Titanium dioxide and nano-Zinc oxide on mechanical properties and inhibiting of steel reinforcement
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4042 days after retraction
Quick Stats
Total Citations: 148
Years Since Retraction: 14.8 years
Open Access: Yes
Last Checked: Never