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3D sol–gel printing and sol–gel bonding for fabrication of macro- and  micro/nano-structured photonic devices | SpringerLink
3D sol–gel printing and sol–gel bonding for fabrication of macro- and micro/nano-structured photonic devices | SpringerLink

3D Printed PEG-Based Hybrid Nanocomposites Obtained by Sol–Gel Technique |  ACS Applied Materials & Interfaces
3D Printed PEG-Based Hybrid Nanocomposites Obtained by Sol–Gel Technique | ACS Applied Materials & Interfaces

3D sol–gel printing and sol–gel bonding for fabrication of macro- and  micro/nano-structured photonic devices | SpringerLink
3D sol–gel printing and sol–gel bonding for fabrication of macro- and micro/nano-structured photonic devices | SpringerLink

In Situ 3D Printing: Opportunities with Silk Inks: Trends in Biotechnology
In Situ 3D Printing: Opportunities with Silk Inks: Trends in Biotechnology

Continuously 3D printed quantum dot-based electrodes for lithium storage  with ultrahigh capacities - Journal of Materials Chemistry A (RSC  Publishing) DOI:10.1039/C8TA08559E
Continuously 3D printed quantum dot-based electrodes for lithium storage with ultrahigh capacities - Journal of Materials Chemistry A (RSC Publishing) DOI:10.1039/C8TA08559E

China: 3D Printed Drug Delivery Scaffolds, Evaluated in Rat Femoral Bones -  3DPrint.com | The Voice of 3D Printing / Additive Manufacturing
China: 3D Printed Drug Delivery Scaffolds, Evaluated in Rat Femoral Bones - 3DPrint.com | The Voice of 3D Printing / Additive Manufacturing

Gels | Free Full-Text | Advances in 3D Gel Printing for Enzyme  Immobilization
Gels | Free Full-Text | Advances in 3D Gel Printing for Enzyme Immobilization

3-D and 4-D Printing | Prof. Shlomo Magdassi Research Group
3-D and 4-D Printing | Prof. Shlomo Magdassi Research Group

3D-printed silica with nanoscale resolution | Nature Materials
3D-printed silica with nanoscale resolution | Nature Materials

3D Printed PEG-Based Hybrid Nanocomposites Obtained by Sol–Gel Technique |  ACS Applied Materials & Interfaces
3D Printed PEG-Based Hybrid Nanocomposites Obtained by Sol–Gel Technique | ACS Applied Materials & Interfaces

Gels | Free Full-Text | Advances in 3D Gel Printing for Enzyme  Immobilization
Gels | Free Full-Text | Advances in 3D Gel Printing for Enzyme Immobilization

Direct printing of functional 3D objects using polymerization-induced phase  separation | Nature Communications
Direct printing of functional 3D objects using polymerization-induced phase separation | Nature Communications

Schematic depiction of the three main 3D-printing techniques employed... |  Download Scientific Diagram
Schematic depiction of the three main 3D-printing techniques employed... | Download Scientific Diagram

Recent advances in 3D printing with protein-based inks
Recent advances in 3D printing with protein-based inks

A novel and facile method for 3D printing using ceramic Inks
A novel and facile method for 3D printing using ceramic Inks

Sol-gel infiltration of complex cellular indirect 3D printed alumina -  ScienceDirect
Sol-gel infiltration of complex cellular indirect 3D printed alumina - ScienceDirect

3D‐Printed Organic–Ceramic Complex Hybrid Structures with High Silica  Content - Shukrun - 2018 - Advanced Science - Wiley Online Library
3D‐Printed Organic–Ceramic Complex Hybrid Structures with High Silica Content - Shukrun - 2018 - Advanced Science - Wiley Online Library

Catalysts | Free Full-Text | High-Complexity WO3-Based Catalyst with  Multi-Catalytic Species via 3D Printing
Catalysts | Free Full-Text | High-Complexity WO3-Based Catalyst with Multi-Catalytic Species via 3D Printing

Versatile Direct Writing of Aerogel-Based Sol–Gel Inks | Langmuir
Versatile Direct Writing of Aerogel-Based Sol–Gel Inks | Langmuir

PDF) 3D‐Printed Organic–Ceramic Complex Hybrid Structures with High Silica  Content
PDF) 3D‐Printed Organic–Ceramic Complex Hybrid Structures with High Silica Content

New 3-D printing technique for biomaterials
New 3-D printing technique for biomaterials

Modular bioink for 3D printing of biocompatible hydrogels: sol–gel  polymerization of hybrid peptides and polymers — IBMM Polymers for Health  and Biomaterials
Modular bioink for 3D printing of biocompatible hydrogels: sol–gel polymerization of hybrid peptides and polymers — IBMM Polymers for Health and Biomaterials

3-D and 4-D Printing | Prof. Shlomo Magdassi Research Group
3-D and 4-D Printing | Prof. Shlomo Magdassi Research Group

3D sol–gel printing and sol–gel bonding for fabrication of macro- and  micro/nano-structured photonic devices | SpringerLink
3D sol–gel printing and sol–gel bonding for fabrication of macro- and micro/nano-structured photonic devices | SpringerLink

Hybrid inks for 3D printing of tall BaTiO3-based ceramics - ScienceDirect
Hybrid inks for 3D printing of tall BaTiO3-based ceramics - ScienceDirect

3D Printed Optical Quality Silica and Silica–Titania Glasses from Sol–Gel  Feedstocks - Destino - 2018 - Advanced Materials Technologies - Wiley  Online Library
3D Printed Optical Quality Silica and Silica–Titania Glasses from Sol–Gel Feedstocks - Destino - 2018 - Advanced Materials Technologies - Wiley Online Library

3D Printed Optical Quality Silica and Silica–Titania Glasses from Sol–Gel  Feedstocks - Destino - 2018 - Advanced Materials Technologies - Wiley  Online Library
3D Printed Optical Quality Silica and Silica–Titania Glasses from Sol–Gel Feedstocks - Destino - 2018 - Advanced Materials Technologies - Wiley Online Library