Chao Hong
Hanyang University · 工学
研究室紹介
Professor Chao Hong's research lab specializes in the design and application of purely organic phosphorescent materials, with a focus on leveraging heavy atom effects—particularly selenium—to enhance spin–orbit coupling and enable efficient room-temperature phosphorescence. The lab explores molecular engineering strategies, such as donor–acceptor architecture and alkyl substitution, to achieve high photoluminescence quantum yields and external quantum efficiencies in organic light-emitting diodes (OLEDs). A key research direction involves the development of dual-emissive molecules that exhibit both thermally activated delayed fluorescence (TADF) and phosphorescence, enabling voltage-tunable emission for advanced optoelectronic applications. The lab also investigates the photophysical mechanisms underlying these phenomena through combined experimental and theoretical approaches.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Room-temperature phosphorescence from metal-free purely organic molecules has recently gained much interest. We devised metal-free organic phosphors by incorporating selenium (Se) to promote spin–orbit coupling by its nonmetal heavy atom effect. The Se-based organic phosphors showed bright phosphorescent emission in organic light-emitting diodes (OLEDs) and photo-excited phosphorescence in an amorphous film state. Large orbital angular momentum change (ΔL) during the electron transition process
C-arm fluoroscopy is useful equipment in interventional pain management because it helps to guide correct needle targeting for the accurate injection and drug delivery. However, due to increased use of C-arm fluoroscopy in various pain procedures, the risk of radiation exposure is a significant concern for pain physicians. The harmful biological effects of ionizing radiation on the human body are well known. It is therefore necessary to strive to reduce radiation exposure. Lead aprons with thyro
This study focuses on the photophysics of a donor–acceptor molecule with 2,4,6-triphenyl-1,3,5-triazine and phenoselenazine acceptor and donor units.
Dual emission featuring both thermally activated delayed fluorescence (TADF) and phosphorescence was engineered into a single metal-free molecule, phenyl(10-phenyl-10<i>H</i>-phenoselenazin-3-yl)methanone. Selenium incorporated into the molecule increases the spin-orbit coupling to facilitate both TADF and phosphorescence, whereas donor-acceptor units promote TADF emission. The relative contribution of the green TADF and yellow phosphorescence can be controlled by the driving voltage of the devi
Purely organic phosphorescent emitters have been developed with the incorporation of alkyl substituents into the <italic>N</italic>-phenylphenoselenazine core.
The K-ANX is a reliable and valid measure to screen anxiety disorders in a Korean sample, with greater sensitivity and specificity than current measures of anxiety symptoms.
In this work, a design methodology to develop purely organic phosphorescent (POP) emitters was studied to improve the photoluminescence quantum yield (PLQY) and external quantum efficiency (EQE) of organic light-emitting diodes (OLEDs). The molecular design was directed to have a strong spin–orbit coupling through a phenoselenazine core for triggering phosphorescence and an expanded chromophore using an aromatic extended structure to enhance radiative transition probability. As a result, a 3-(9-
Perception of opioids among patients who take them was either neutral or positive. However, 39.0% patients who have not been prescribed opioids did not want an opioid prescription, citing fear of addiction and side effects as the primary reasons.
BACKGROUND: The present study aimed to evaluate the degree of radiation shielding effects according to lead equivalent thickness and distance during C-arm fluoroscopy-guided lumbar interventions. METHODS: The exposure time and air kerma were recorded using a fluoroscope. The effective dose (ED) was measured with and without the shielding material of the lead apron using 2 dosimeters at 2 positions. According to the lead equivalent thickness of the shielding material and distance from the side of
Utilization of a purely organic based room-temperature phosphorescent (RTPH) emitter as a sensitizer was studied by employing it in yellow fluorescent organic light-emitting diodes (OLEDs).
Abstract Background Proper mask ventilation is important to prevent air inflow into the stomach during induction of general anesthesia, and it is difficult to send airflow only through the trachea without gastric inflation. Changes in gastric insufflation according to mask ventilation during anesthesia induction were compared. Methods In this prospective, randomized, single-blind study, 230 patients were analyzed to a facemask-ventilated group (Ventilation group) or no-ventilation group (Apnea g
BACKGROUND: Laryngeal mask airway (LMA) has been increasingly used for airway management; however, LMA insertion can be difficult and cause adverse effects. Therefore, the rapid, safe, and effective insertion of LMA is necessary. This study aimed to compare the efficacy of the standard method with that of the 30° curved tongue depressor-aided technique for LMA insertion to determine the superior technique. METHODS: This study included 154 patients aged 18-70 years (American Society of Anesthesio