Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

p-n Heterojunction-based Thermoelectric Generator for Highly Efficient Cancer Thermoelectric Therapy

View through CrossRef
Abstract Photothermal therapy (PTT) based on the light-heat conversion principle has attracted extensive attention in preclinical research, however, the hyperthermia resulted the treatment-related damage to surrounding tissues prevents further advanced clinical practice. Here, we developed a thermoelectric therapy (TET) based on p-n heterojunction (SrTiO3/Cu2Se nanoplates) on the principle of light-heat-electricity-chemical energy conversion, demonstrating great potential for cancer treatment. The principle of TET is based on light-heat-electricity-chemical energy conversion, regarded as an upgraded version of PTT. Upon laser irradiation and subsequently natural cooling-induced the mild temperature gradient (35-45 oC), a self-build-in electric field was constructed and thereby facilated electrons and holes separation in bulk SrTiO3 and Cu2Se. Importantly, the contact between SrTiO3 (n type) and Cu2Se (p type) constructed another interficial electric field, which further guided the seperated electrons and holes to transfer to re-locate onto the surfaces of SrTiO3 and Cu2Se, respectively. The formation of two electric fields in bulk and interface of SrTiO3/Cu2Se nanoplates minimized probability of charges recombination. Of note, high-performance superoxide radicals (·O2−) and hydroxyl radicals (·OH) generation from O2 and H2O under catalization by seperated electrons and holes, led to intracellular ROS burst and cancer cells apoptosis without apparent damage to surrounding tissues. As far as it is known, this is the first report on TET based a p-n heterojunction in biomedical field. Construction of bulk and interficial electric fields in heterojunction for improving charges separation and transfer is also expected to provide a robust and universal strategy for diverse applications including energy, environment, and biomedical engineering.
Title: p-n Heterojunction-based Thermoelectric Generator for Highly Efficient Cancer Thermoelectric Therapy
Description:
Abstract Photothermal therapy (PTT) based on the light-heat conversion principle has attracted extensive attention in preclinical research, however, the hyperthermia resulted the treatment-related damage to surrounding tissues prevents further advanced clinical practice.
Here, we developed a thermoelectric therapy (TET) based on p-n heterojunction (SrTiO3/Cu2Se nanoplates) on the principle of light-heat-electricity-chemical energy conversion, demonstrating great potential for cancer treatment.
The principle of TET is based on light-heat-electricity-chemical energy conversion, regarded as an upgraded version of PTT.
Upon laser irradiation and subsequently natural cooling-induced the mild temperature gradient (35-45 oC), a self-build-in electric field was constructed and thereby facilated electrons and holes separation in bulk SrTiO3 and Cu2Se.
Importantly, the contact between SrTiO3 (n type) and Cu2Se (p type) constructed another interficial electric field, which further guided the seperated electrons and holes to transfer to re-locate onto the surfaces of SrTiO3 and Cu2Se, respectively.
The formation of two electric fields in bulk and interface of SrTiO3/Cu2Se nanoplates minimized probability of charges recombination.
Of note, high-performance superoxide radicals (·O2−) and hydroxyl radicals (·OH) generation from O2 and H2O under catalization by seperated electrons and holes, led to intracellular ROS burst and cancer cells apoptosis without apparent damage to surrounding tissues.
As far as it is known, this is the first report on TET based a p-n heterojunction in biomedical field.
Construction of bulk and interficial electric fields in heterojunction for improving charges separation and transfer is also expected to provide a robust and universal strategy for diverse applications including energy, environment, and biomedical engineering.

Related Results

Kajian Eksperimental Kinerja Photovoltaic dengan Penambahan Thermoelectric Generator
Kajian Eksperimental Kinerja Photovoltaic dengan Penambahan Thermoelectric Generator
Abstrak Salah satu faktor yang mempengaruhi efisiensi sistem photovoltaic adalah temperatur permukaan sel. Pada penelitian ini digunakan thermoelectric untuk mengambil panas dari ...
Pendayagunaan Energi Matahari sebagai Sumber Energi Listrik Alternatif Menggunakan Generator Termoelektrik
Pendayagunaan Energi Matahari sebagai Sumber Energi Listrik Alternatif Menggunakan Generator Termoelektrik
Abstrak Energi surya adalah energi terbarukan yang potensinya besar untuk dimanfaatkan. Bentuk energi surya yang telah lama dimanfaatkan manusia adalah energi termalnya. Mulai dar...
RELATIONSHIP OF NON-EQUILIBRIUM THERMODYNAMICS IN THE HETEROGENEOUS PERMEABLE THERMOELEMENTS
RELATIONSHIP OF NON-EQUILIBRIUM THERMODYNAMICS IN THE HETEROGENEOUS PERMEABLE THERMOELEMENTS
A significant number of thermoelectric processes are described with fundamental law of thermodynamics. This paper describes thermoelectric processes in the permea...
Analisis Penyebab Pecahnya Cylinder Liner pada Generator Engine di Kapal MV. Kali Mas
Analisis Penyebab Pecahnya Cylinder Liner pada Generator Engine di Kapal MV. Kali Mas
Globalization has spurred the growth of the transportation sector. In this context, maintenance of generators on ship machinery is essential to ensure smooth ship operations. The g...
High Thermoelectric Cooling Performance of Junction Thermoelectric Transistors
High Thermoelectric Cooling Performance of Junction Thermoelectric Transistors
To achieve high performance thermoelectric materials and devices, thermoelectric transistors, which integrate thermoelectric effects with transistor technology, represent a promisi...
Design, Fabrication, and Performance Study of Solar Thermoelectric Generator
Design, Fabrication, and Performance Study of Solar Thermoelectric Generator
This project presents the design, fabrication, and performance study of a solar thermoelectric generator. Solar energy is considered one of the most effective types and sources of ...
Edoxaban and Cancer-Associated Venous Thromboembolism: A Meta-analysis of Clinical Trials
Edoxaban and Cancer-Associated Venous Thromboembolism: A Meta-analysis of Clinical Trials
Abstract Introduction Cancer patients face a venous thromboembolism (VTE) risk that is up to 50 times higher compared to individuals without cancer. In 2010, direct oral anticoagul...
High Thermoelectric Cooling Performance of Junction Thermoelectric Transistors
High Thermoelectric Cooling Performance of Junction Thermoelectric Transistors
To achieve high performance thermoelectric materials and devices, thermoelectric transistors, which integrate thermoelectric effects with transistor technology, represent a promisi...

Back to Top